GRACE and GRACE-FO Related Publications (no abstracts, sorted by date)
This is a list of GRACE and GRACE-FO related papers (no abstracts) which may be incomplete.
In brackets the respective number of references is given.
If you are missing a reference please contact Frank Flechtner or Volker Klemann.
Remark to authors
The following acknowledgement shall be added to any new GRACE related publication (paper, poster etc.):
"Acknowledgement:
We would like to thank the German Space Operations Center (GSOC) of the German Aerospace Center (DLR) for providing continuously
and nearly 100% of the raw telemetry data of the twin GRACE satellites."
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Sorted by Date •
Sorted by Last Name of First Author •
Sorted by Date
(3315)
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2025 (1)
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2024 (201)
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2023 (269)
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2022 (235)
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2021 (250)
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2020 (224)
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2019 (210)
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2018 (146)
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2017 (161)
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2016 (175)
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2015 (137)
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2014 (144)
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2013 (141)
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2012 (161)
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2011 (115)
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2010 (129)
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2009 (110)
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2008 (90)
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2007 (95)
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2006 (104)
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2005 (74)
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2004 (48)
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2003 (40)
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2002 (27)
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2001 (14)
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2000 (5)
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1999 (8)
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1998 (1)
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- Yang, Zhixin, Liu, Hui, Tang, Feifei, Cai, Xiaoyu, Lin, Jie, Ben, Liyan, and Xu, Feng, 2025. Integrated precise orbit determination
of GPS, BDS, and partial satellites selected from LEO constellation. Measurement, 240:115521, doi:10.1016/j.measurement.2024.115521.
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- Acciarini, Giacomo, Brown, Edward, Berger, Tom, Guhathakurta, Madhulika, Parr, James, Bridges, Christopher, and Baydin, Atılım.
Güne\cs, 2024. Improving Thermospheric Density Predictions in Low-Earth Orbit With Machine Learning. Space Weather,
22(2):e2023SW003652, doi:10.1029/2023SW003652.
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- Ahmed, Mohamed, Abdelrehim, Ramadan, Elshalkany, Muhamed, and Abdrabou, Mohamed, 2024. Impacts of the Grand Ethiopian Renaissance
Dam on the Nile River's downstream reservoirs. Journal of Hydrology, 633:130952, doi:10.1016/j.jhydrol.2024.130952.
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- Akl, Mohamed and Thomas, Brian F., 2024. Challenges in applying water budget framework for estimating groundwater storage
changes from GRACE observations. Journal of Hydrology, 639:131600, doi:10.1016/j.jhydrol.2024.131600.
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- Al-Abadi, Alaa M., Hassan, Ayat Ali, Al-Moosawi, Noor M., Handhal, Amna M., Alzahrani, Hassan, Jabbar, Fadhil K., and Anderson,
Neil L., 2024. Drought susceptibility mapping in Iraq using GRACE/GRACE-FO, GLDAS, and machine learning algorithms. Physics
and Chemistry of the Earth, 134:103583, doi:10.1016/j.pce.2024.103583.
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- Alattar, Mustafa H., 2024. Mapping groundwater dynamics in Iraq: integrating multi-data sources for comprehensive analysis.
Modeling Earth Systems and Environment, 10(3):4375–4385, doi:10.1007/s40808-024-02029-9.
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- Ali, Shoaib, Ran, Jiangjun, Luan, Yi, Khorrami, Behnam, Xiao, Yun, and Tangdamrongsub, Natthachet, 2024. The GWR model-based
regional downscaling of GRACE/GRACE-FO derived groundwater storage to investigate local-scale variations in the North China
Plain. Science of the Total Environment, 908:168239, doi:10.1016/j.scitotenv.2023.168239.
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- Aon, Suvro, Nandi, Subimal, Sen, Shoubhik, and Biswas, Sujata, 2024. GRACE based groundwater drought evaluation of Ganga Basin
and analysis of drought propagation using wavelet based quantitative approach. Science of the Total Environment, 951:175666,
doi:10.1016/j.scitotenv.2024.175666.
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- Arega, Kassahun Aweke, Birhanu, Behailu, Ali, Shoaib, Hailu, Binyam Tesfaw, Tariq, Muhammad Atiq Ur Rehman, Adane, Zablon,
and Nedaw, Dessie, 2024. Analysis of spatio-temporal variability of groundwater storage in Ethiopia using Gravity Recovery
and Climate Experiment (GRACE) data. Environmental Earth Sciences, 83(7):206, doi:10.1007/s12665-024-11508-2.
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- Arshad, Arfan, Mirchi, Ali, Vilcaez, Javier, Umar Akbar, Muhammad, and Madani, Kaveh, 2024. Reconstructing high-resolution
groundwater level data using a hybrid random forest model to quantify distributed groundwater changes in the Indus Basin.
Journal of Hydrology, 628:130535, doi:10.1016/j.jhydrol.2023.130535.
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- Arshad, Arfan, Mirchi, Ali, Taghvaeian, Saleh, and AghaKouchak, Amir, 2024. Downscaled-GRACE Data Reveal Anthropogenic and
Climate-Induced Water Storage Decline Across the Indus Basin. Water Resources Research, 60(7):e2023WR035882, doi:10.1029/2023WR035882.
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- Atayi, Julia, Anornu, Geophrey K., Awotwi, Alfred, Andam-Akorful, Samuel A., Kabo-bah, Amos T., Twumasi, Yaw A., Adu-Afari,
Emmanuel, and Anim-Gyampo, Maxwell, 2024. Terrestrial water storage and climate variability study of the Volta River Basin,
West Africa. Theoretical and Applied Climatology, 155(1):309–325, doi:10.1007/s00704-023-04636-5.
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- Bai, Yinglun, Chen, Qiujie, Shen, Yunzhong, Xiao, Yun, and Zhang, Xingfu, 2024. Impacts of temporal resolution of atmospheric
de-aliasing products on gravity field estimation. Geophysical Journal International, 237(3):1442–1458, doi:10.1093/gji/ggae125.
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- Bai, Bing, Yue, Ping, Ren, Xueyuan, Zhang, Qiang, Zhang, Jinyu, Yang, Jinhu, and Jiang, Youyan, 2024. Estimating Evapotranspiration
in the Qilian Mountains Using GRACE/GRACE-FO Satellite Data. Remote Sensing, 16(11):1877, doi:10.3390/rs16111877.
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- Barletta, Valentina R., Bordoni, Andrea, and Khan, Shfaqat Abbas, 2024. GNET Derived Mass Balance and Glacial Isostatic Adjustment
Constraints for Greenland. Geophysical Research Letters, 51(9):e2023GL106891, doi:10.1029/2023GL106891.
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- Bibi, Sadia, Zhu, Tingju, Rateb, Ashraf, Scanlon, Bridget R., Aqeel Kamran, Muhammad, Elnashar, Abdelrazek, Bennour, Ali,
and Li, Ci, 2024. Benchmarking Multimodel Terrestrial Water Storage Seasonal Cycle Against Gravity Recovery And Climate Experiment
(Grace) Observations Over Major Global River Basins. Hydrology and Earth System Sciences, 28:1725–1750, doi:10.5194/hess-28-1725-2024.
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- Billett, D. D., Sartipzadeh, K., Ivarsen, M. F., Iorfida, E., Doornbos, E., Kalafatoglu Eyiguler, E. C., Pandey,
K., and McWilliams, K. A., 2024. The 2022 Starlink Geomagnetic Storms: Global Thermospheric Response to a High-Latitude
Ionospheric Driver. Space Weather, 22(2):e2023SW003748, doi:10.1029/2023SW003748.
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- Braitenberg, Carla and Pastorutti, Alberto, 2024. Detectability of Seamount Eruptions Through a Quantum Technology Gravity
Mission MOCAST+: Hunga Tonga, Fani Maoré and Other Smaller Eruptions. Surveys in Geophysics, 45(4):1331–1361,
doi:10.1007/s10712-024-09839-7.
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- Bringeland, Stephanie and Fotopoulos, Georgia, 2024. Analysis of gap filling techniques for GRACE/GRACE-FO terrestrial water
storage anomalies in Canada. Journal of Hydrology, 630:130644, doi:10.1016/j.jhydrol.2024.130644.
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- Cai, L., Aikio, A., Oyama, S., Ivchenko, N., Vanhamäki, H., Virtanen, I., Buchert, S., Mekuriaw, M. L., and Zhang,
Y., 2024. Effect of Polar Cap Patches on the High-Latitude Upper Thermospheric Winds. Journal of Geophysical Research (Space
Physics), 129(8):e2024JA032819, doi:10.1029/2024JA032819.
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- Camilo, Björn Krause, Andrade, Pedro Lage, Eleutério, Julian Cardoso, and Rodrigues, André Ferreira, 2024.
The importance of local observation wells, reanalysis, and satellite data on gravity anomaly, climate, and land use to improve
groundwater management in the Urucuia aquifer system. Journal of South American Earth Sciences, 143:105018, doi:10.1016/j.jsames.2024.105018.
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- Chen, Wei, Forootan, Ehsan, Shum, C. K., Zhong, Min, Feng, Wei, Xiong, Yuhao, and Li, Wenhao, 2024. A novel dynamic scale
factor designed for recovering global TWS changes. Journal of Hydrology, 637:131364, doi:10.1016/j.jhydrol.2024.131364.
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- Chen, Ajiao, Xiong, Jinghua, Wu, Shixue, and Yang, Yuting, 2024. Changes in terrestrial water storage in the Three-North region
of China over 2003–2021: Assessing the roles of climate and vegetation restoration. Journal of Hydrology, 637:131303,
doi:10.1016/j.jhydrol.2024.131303.
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- Chen, Tao, Pan, Yuanjin, Ding, Hao, Jiao, Jiashuang, and He, Meilin, 2024. Investigating terrestrial water storage variation
and its response to climate in southeastern Tibetan Plateau inferred through space geodetic observations. Journal of Hydrology,
640:131742, doi:10.1016/j.jhydrol.2024.131742.
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- Chi, Haewon, Seo, Hocheol, and Kim, Yeonjoo, 2024. Hydrological trends captured by assimilating GRACE total water storage
data into the CLM5-BGC model. Journal of Hydrology, 629:130527, doi:10.1016/j.jhydrol.2023.130527.
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- Cui, Aihong, Li, Jianfeng, Zhou, Qiming, Zhu, Honglin, Liu, Huizeng, Yang, Chao, Wu, Guofeng, and Li, Qingquan, 2024. Propagation
Dynamics from Meteorological Drought to GRACE-Based Hydrological Drought and Its Influencing Factors. Remote Sensing,
16(6):976, doi:10.3390/rs16060976.
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- Cui, Lilu, Meng, Jiacheng, Li, Yu, An, Jiachun, Zou, Zhengbo, Zhong, Linhao, Mao, Yiru, and Wu, Guiju, 2024. Spatiotemporal
Evolution Characteristics of 2022 Pakistan Severe Flood Event Based on Multi-Source Satellite Gravity Observations. Remote
Sensing, 16(9):1601, doi:10.3390/rs16091601.
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- Cui, Lilu, Zhong, Linhao, Meng, Jiacheng, An, Jiachun, Zhang, Cheng, and Li, Yu, 2024. Spatiotemporal Evolution Features of
the 2022 Compound Hot and Drought Event over the Yangtze River Basin. Remote Sensing, 16(8):1367, doi:10.3390/rs16081367.
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- Dai, Min, Zhou, Hao, Ma, Wenjing, Tang, Lu, Xu, Siyou, and Luo, Zhicai, 2024. Tracking shallow and deep groundwater storage
changes in North China Plain with improved fusion method and hybrid spectral analysis approach. Journal of Hydrology,
633:131001, doi:10.1016/j.jhydrol.2024.131001.
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- Daras, I., March, G., Pail, R., Hughes, C. W., Braitenberg, C., Güntner, A., Eicker, A., Wouters, B., Heller-Kaikov,
B., Pivetta, T., and Pastorutti, A., 2024. Mass-change And Geosciences International Constellation (MAGIC) expected impact
on science and applications. Geophysical Journal International, 236(3):1288–1308, doi:10.1093/gji/ggad472.
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- Darbeheshti, Neda, Lasser, Martin, Meyer, Ulrich, Arnold, Daniel, and Jäggi, Adrian, 2024. Aiub-Grace Gravity Field Solutions
For G3P: Processing Strategies And Instrument Parameterization. Earth System Science Data, 16:1589–1599, doi:10.5194/essd-16-1589-2024.
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- Dastjerdi, Pouria Asgari, Ghomlaghi, Arash, and Nasseri, Mohsen, 2024. A new approach to ensemble precipitation Estimation:
Coupling satellite hydrological products with backward water balance models in Large-Scale. Journal of Hydrology, 629:130564,
doi:10.1016/j.jhydrol.2023.130564.
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- Davtalab, Rahman, Ghotbi, Saba, Koushki, Raana, and Reynolds, Caroline L., 2024. Assessing the resilience of stormwater ponds
under climate change: A case study on Grace Lake, Florida, unveiling flood control and water quality implications. Journal
of Hydrology, 633:130987, doi:10.1016/j.jhydrol.2024.130987.
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- Deng, Haijun, Li, Yang, Zhang, Yuqing, and Chen, Xingwei, 2024. Monitoring spatio-temporal variations of terrestrial water
storage changes and their potential influencing factors in a humid subtropical climate region of Southeast China. Journal
of Hydrology, 634:131095, doi:10.1016/j.jhydrol.2024.131095.
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- Duan, Li, Chen, Xi, Bu, Lingjie, Chen, Chaoliang, and Song, Shiran, 2024. Temporal and Spatial Variation Analysis of Groundwater
Stocks in Xinjiang Based on GRACE Data. Remote Sensing, 16(5):813, doi:10.3390/rs16050813.
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- Duan, Ao, Zhong, Yulong, Xu, Guodong, Yang, Kaijun, Tian, Baoming, Wu, Yunlong, Bai, Hongbing, and Hu, E., 2024. Quantifying
the 2022 extreme drought in the Yangtze River Basin using GRACE-FO. Journal of Hydrology, 630:130680, doi:10.1016/j.jhydrol.2024.130680.
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- Duwe, Mathias, Koch, Igor, and Flury, Jakob, 2024. Residual Patterns in GRACE Follow-On Laser Ranging Interferometry Post-Fit
Range Rate Residuals. Advances in Space Research, 73(12):5769–5782, doi:10.1016/j.asr.2024.03.035.
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- Eicker, Annette, Schawohl, Lennart, Middendorf, Klara, Bagge, Meike, Jensen, Laura, and Dobslaw, Henryk, 2024. Influence of
GIA Uncertainty on Climate Model Evaluation With GRACE/GRACE-FO Satellite Gravimetry Data. Journal of Geophysical Research
(Solid Earth), 129(5):e2023JB027769, doi:10.1029/2023JB027769.
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- Forootan, Ehsan, Mehrnegar, Nooshin, Schumacher, Maike, Schiettekatte, Leire Anne Retegui, Jagdhuber, Thomas, Farzaneh, Saeed,
van Dijk, Albert I. J. M., Shamsudduha, Mohammad, and Shum, C. K., 2024. Global groundwater droughts are more
severe than they appear in hydrological models: An investigation through a Bayesian merging of GRACE and GRACE-FO data with
a water balance model. Science of the Total Environment, 912:169476, doi:10.1016/j.scitotenv.2023.169476.
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- Fuentes, Ignacio, Vervoort, R. Willem, and McPhee, James, 2024. Global evapotranspiration models and their performance at
different spatial scales: Contrasting a latitudinal gradient against global catchments. Journal of Hydrology, 628:130477,
doi:10.1016/j.jhydrol.2023.130477.
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- Galdyn, Filip and Sosnica, Krzysztof, 2024. Impact of the combination and replacement of SLR-based low-degree gravity field
coefficients in GRACE solutions. Progress in Earth and Planetary Science, 11(1):7, doi:10.1186/s40645-024-00608-z.
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- Gao, Nan, Liang, Wei, Gou, Fen, Liu, Yan, Fu, Bojie, and Lü, Yihe, 2024. Assessing the impact of agriculture, coal mining,
and ecological restoration on water sustainability in the Mu Us Sandyland. Science of the Total Environment, 929:172513,
doi:10.1016/j.scitotenv.2024.172513.
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- Gao, Chunchun, Chao, Benjamin F., Tan, Bing, and Wu, Xudong, 2024. Significance testing for cross correlation: A critical
examination of correlations between ENSO and GRACE-derived terrestrial water storage variabilities. Global and Planetary
Change, 241:104549, doi:10.1016/j.gloplacha.2024.10454910.22541/essoar.170365369.90713705/v1.
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- Giuliani, Simone, Tapley, Byron D., and Ries, John C., 2024. Determination of the time-variable geopotential by means of orbiting
clocks. Journal of Geodesy, 98(6):50, doi:10.1007/s00190-024-01868-9.
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- Goswami, Shubham, Rajendra Ternikar, Chirag, Kandala, Rajsekhar, Pillai, Netra S., Kumar Yadav, Vivek, Abhishek, Joseph, Jisha,
Ghosh, Subimal, and Dutt Vishwakarma, Bramha, 2024. Water budget-based evapotranspiration product captures natural and human-caused
variability. Environmental Research Letters, 19(9):094034, doi:10.1088/1748-9326/ad63bd.
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- Gu, Yanchao, Huang, Feilong, Huang, Jun, Yuan, Hongbo, Yu, Bing, and Gao, Chongqin, 2024. Filling the gap between GRACE and
GRACE follow-on observations based on principal component analysis. Geophysical Journal International, 236(3):1216–1233,
doi:10.1093/gji/ggad484.
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- Gu, Songwei, Zhou, Yun, Zhao, Long, Ma, Mingguo, She, Xiaojun, Zhang, Lifu, and Li, Yao, 2024. A Fast Generative Adversarial
Network Combined With Transformer for Downscaling GRACE Terrestrial Water Storage Data in Southwestern China. IEEE Transactions
on Geoscience and Remote Sensing, 62:3349548, doi:10.1109/TGRS.2024.3349548.
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- Gu, Yanchao, Huang, Jun, Xiong, Lingyan, Huang, Feilong, Su, Yong, Lei, Yu, and Yuan, Hongbo, 2024. An investigation of ocean
mass budget in the East China Sea during the GRACE era. Journal of Geodynamics, 161:102043, doi:10.1016/j.jog.2024.102043.
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- Gu, Ziye, Gu, Lei, Yin, Jiabo, Fang, Wei, Xiong, Lihua, Guo, Jun, Zeng, Ziyue, and Xia, Jun, 2024. Impact of atmospheric circulations
on droughts and drought propagation over China. Science China Earth Sciences, 67(8):2633–2648, doi:10.1007/s11430-023-1329-x.
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- Güne\cs, Özge and Aydin, Cüneyt, 2024. GRACE zaman serilerinin gürültü karakteri analizi. Geomatik,
9(1):45–53, doi:10.29128/geomatik.1307208.
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- Gunes, Ozge and Aydin, Cuneyt, 2024. Colored noise in GRACE total water storage time series: Its impact on trend significance
in the Türkiye region and major world river basins. Advances in Space Research, 74(4):1633–1647, doi:10.1016/j.asr.2024.05.051.
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- Guo, Xiang, Lian, Yidu, Sun, Yu, Zhou, Hao, and Luo, Zhicai, 2024. Assessment of the Added Value of the GOCE GPS Data on the
GRACE Monthly Gravity Field Solutions. Remote Sensing, 16(9):1586, doi:10.3390/rs16091586.
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- Guo, Jinyun, Shi, Tong, Jin, Xin, Liu, Xin, Zhao, Bin, and Qiao, Xuejun, 2024. Geodetic Analysis of Orthometric Height Variations
in Mainland China Using GRACE, Hydrological Models, and GPS Data. IEEE Transactions on Geoscience and Remote Sensing,
62:3386879, doi:10.1109/TGRS.2024.3386879.
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- Guo, Yu, Zhang, Xiaohong, Guo, Fei, and Yang, Yan, 2024. Performance analysis of NRLMSIS 2.1 thermospheric mass density model
using GRACE-A and SWARM-C observations. Advances in Space Research, 74(5):2475–2491, doi:10.1016/j.asr.2024.05.063.
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- Hladczuk, N. A., van den IJssel, J., Kodikara, T., Siemes, C., and Visser, P., 2024. GRACE-FO radiation pressure modelling
for accurate density and crosswind retrieval. Advances in Space Research, 73(5):2355–2373, doi:10.1016/j.asr.2023.12.059.
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- Hadavi, Delara, Mousavi, Seyed Morteza, and Rahimzadegan, Majid, 2024. An intercomparison of the groundwater level estimations
by GRACE and GRACE-FO satellites and groundwater modeling in Iran. Acta Geophysica, 72(5):3609–3629, doi:10.1007/s11600-024-01308-4.
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- Hall, Dorothy K., Loomis, Bryant D., DiGirolamo, Nicolo E., and Forman, Barton A., 2024. Snowfall Replenishes Groundwater
Loss in the Great Basin of the Western United States, but Cannot Compensate for Increasing Aridification. Geophysical Research
Letters, 51(6):e2023GL107913, doi:10.1029/2023GL107913.
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- Han, Jiancheng, Chen, Shi, Lu, Hongyan, Jia, Lulu, Wang, Linhai, Xu, Weimin, Zhang, Huai, and Sun, Heping, 2024. A high-resolution
time-variable terrestrial gravity field model of continental North China. Communications Earth and Environment, 5(1):44,
doi:10.1038/s43247-024-01209-w.
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- Han, Shin-Chan, Sauber, Jeanne, Broerse, Taco, Pollitz, Fred, Okal, Emile, Jeon, Taehwan, Seo, Ki-Weon, and Stanaway, Richard,
2024. GRACE and GRACE Follow-On Gravity Observations of Intermediate-Depth Earthquakes Contrasted With Those of Shallow Events.
Journal of Geophysical Research (Solid Earth), 129(2):e2023JB028362, doi:10.1029/2023JB028362.
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- Harvey, Nate, Bertiger, Willy, McCullough, Christopher M., Miller, Mark, Save, Himanshu, and Yuan, Dah-Ning, 2024. Recovering
Differential Forces From the GRACE-D Accelerometer. Earth and Space Science, 11(4):e2023EA003200, doi:10.1029/2023EA003200.
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- He, Changyong, Li, Wang, Hu, Andong, Zheng, Dunyong, Cai, Han, and Xiong, Zhaohui, 2024. Thermospheric Mass Density Modelling
during Geomagnetic Quiet and Weakly Disturbed Time. Atmosphere, 15(1):72, doi:10.3390/atmos15010072.
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- Helm, Veit, Dehghanpour, Alireza, Hänsch, Ronny, Loebel, Erik, Horwath, Martin, and Humbert, Angelika, 2024. Awi-Icenet1:
A Convolutional Neural Network Retracker For Ice Altimetry. The Cryosphere, 18:3933–3970, doi:10.5194/tc-18-3933-2024.
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- Hu, Ziming, Tang, Shinan, Mo, Shaoxing, Shi, Xiaoqing, Yin, Xin, Sun, Yuanyuan, Liu, Xiaomin, Duan, Limin, Miao, Ping, Liu,
Tingxi, and Wu, Jichun, 2024. Water storage changes (2003–2020) in the Ordos Basin, China, explained by GRACE data and
interpretable deep learning. Hydrogeology Journal, 32(1):307–320, doi:10.1007/s10040-023-02713-7.
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- Huang, Liangke, Wang, Zhuohao, Zhang, Tengxu, Yao, Chaolong, Li, Haojun, and Liu, Lilong, 2024. Temporal and spatial variations
of terrestrial water storage in the northeastern Tibetan Plateau retrieved by GNSS observations. Science of the Total Environment,
933:173189, doi:10.1016/j.scitotenv.2024.173189.
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- Huckfeldt, Moritz, Wöske, Florian, Rievers, Benny, and List, Meike, 2024. GRACE Follow-On accelerometer data recovery
by high-precision environment modelling. Advances in Space Research, 73(12):5783–5805, doi:10.1016/j.asr.2024.03.068.
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- Irie, Yoshiya, Okuno, Jun'ichi, Doi, Koichiro, Ishiwa, Takeshige, and Fukuda, Yoichi, 2024. Limited sensitivity of Antarctic
GIA mass change estimates to lateral viscosity variations. Journal of Geodynamics, 162:102047, doi:10.1016/j.jog.2024.102047.
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- Jawadi, Hussain Ali, Farahmand, Asadullah, Fensham, Roderick, and Patel, Nilanchal, 2024. Evaluating groundwater storage variations
in Afghanistan using GRACE, GLDAS, and in-situ measurements. Modeling Earth Systems and Environment, 10(4):5669–5685,
doi:10.1007/s40808-024-02084-2.
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- Jian, Guangyu, Zou, Fang, Xu, Chuang, and Yan, Zhengwen, 2024. Multivariate variational mode decomposition to extract the
stripe noise in GRACE harmonic coefficients. Geophysical Journal International, 238(3):1742–1754, doi:10.1093/gji/ggae241.
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- Jiang, Zhongshan, Tang, Miao, Yang, Xinghai, Wen, Haiping, Yuan, Linguo, Shen, Yingchun, Feng, Wei, and Zhong, Min, 2024.
Characterizing multifarious hydroclimatic patterns using geodetic measurements in the Australian mainland. Journal of Hydrology,
642:131792, doi:10.1016/j.jhydrol.2024.131792.
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- Jiao, Jiashuang, Pan, Yuanjin, Ren, Ding, and Zhang, Xiaohong, 2024. Present-Day Three-Dimensional Crustal Deformation Velocity
of the Tibetan Plateau Due to Multi-Component Land Water Loading. Geophysical Research Letters, 51(13):e2024GL108684,
doi:10.1029/2024GL108684.
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- Kalu, Ikechukwu, Ndehedehe, Christopher E., Ferreira, Vagner G., and Kennard, Mark J., 2024. Machine learning assessment of
hydrological model performance under localized water storage changes through downscaling. Journal of Hydrology, 628:130597,
doi:10.1016/j.jhydrol.2023.130597.
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- Kang, Zhigui, Bettadpur, Srinivas, Save, Himanshu, and Nagel, Peter, 2024. GPS-Based Precise Orbit Determination of LEO Satellites
Using Space-Based Double-Differenced Observations. Journal of the Astronautical Sciences, 71(3):25, doi:10.1007/s40295-024-00444-9.
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- Karunakalage, Anuradha, Lee, Jin-Yong, Daqiq, Mohammad Taqi, Cha, Jihye, Jang, Jiwook, and Kannaujiya, Suresh, 2024. Characterization
of groundwater drought and understanding of climatic impact on groundwater resources in Korea. Journal of Hydrology,
634:131014, doi:10.1016/j.jhydrol.2024.131014.
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- Kermarrec, Gaël, Klos, Anna, Lenczuk, Artur, and Bogusz, Janusz, 2024. Long-Term Temporal Scales of Hydrosphere Changes
Observed by GPS Over Europe: A Comparison With GRACE and ENSO. IEEE Geoscience and Remote Sensing Letters, 21:3345540,
doi:10.1109/LGRS.2023.3345540.
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- Khanal, Prajwal, Hoek Van Dijke, Anne J., Schaffhauser, Timo, Li, Wantong, Paulus, Sinikka J., Zhan, Chunhui, and Orth, René,
2024. Relevance Of Near-Surface Soil Moisture Vs. Terrestrial Water Storage For Global Vegetation Functioning. Biogeosciences,
21:1533–1547, doi:10.5194/bg-21-1533-2024.
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- Kim, Jae-Seung, Seo, Ki-Weon, Kim, Byeong-Hoon, Ryu, Dongryeol, Chen, Jianli, and Wilson, Clark, 2024. High-Resolution Terrestrial
Water Storage Estimates From GRACE and Land Surface Models. Water Resources Research, 60(2):e2023WR035483, doi:10.1029/2023WR035483.
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- King, Matt A. and Christoffersen, Poul, 2024. Major Modes of Climate Variability Dominate Nonlinear Antarctic Ice-Sheet Elevation
Changes 2002-2020. Geophysical Research Letters, 51(12):e2024GL108844, doi:10.1029/2024GL108844.
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- Klemme, Alexandra, Warneke, Thorsten, Bovensmann, Heinrich, Weigelt, Matthias, Müller, Jürgen, Rixen, Tim, Notholt,
Justus, and Lämmerzahl, Claus, 2024. Sediment Transport In South Asian Rivers High Enough To Impact Satellite Gravimetry.
Hydrology and Earth System Sciences, 28:1527–1538, doi:10.5194/hess-28-1527-2024.
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- Koch, Igor, Duwe, Mathias, and Flury, Jakob, 2024. Residual and Unmodeled Ocean Tide Signal From 20+ Years of GRACE and GRACE-FO
Global Gravity Field Models. Journal of Geophysical Research (Solid Earth), 129(9):e2024JB029345, doi:10.1029/2024JB029345.
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- Kosary, Mona, Farzaneh, Saeed, Schumacher, Maike, and Forootan, Ehsan, 2024. Assimilating Space-Based Thermospheric Neutral
Density (TND) Data Into the TIE-GCM Coupled Model During Periods With Low and High Solar Activity. Space Weather, 22(4):e2023SW003811,
doi:10.1029/2023SW003811.
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- Krauss, Sandro, Drescher, Lukas, Temmer, Manuela, Suesser-Rechberger, Barbara, Strasser, Andreas, and Kroisz, Sophia, 2024.
SODA – A tool to predict storm-induced orbit decays for low Earth-orbiting satellites. Journal of Space Weather and
Space Climate, 14:23, doi:10.1051/swsc/2024022.
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- Kumar, Ranveer, Gaur, Shishir, Soni, Pramod, Maurya, Puneet, and Ohri, Anurag, 2024. HRU-based Downscaling of GRACE-TWS to
Quantify the Hydrogeological Fluxes and Specific Yield in the Lower Middle Ganga Basin. Journal of Hydrology, 639:131591,
doi:10.1016/j.jhydrol.2024.131591.
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- Kupriyanov, Alexey, Reis, Arthur, Schilling, Manuel, Müller, Vitali, and Müller, Jürgen, 2024. Benefit of enhanced
electrostatic and optical accelerometry for future gravimetry missions. Advances in Space Research, 73(6):3345–3362,
doi:10.1016/j.asr.2023.12.067.
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- Kvas, A., Boergens, E., Dobslaw, H., Eicker, A., Mayer-Guerr, T., and Güntner, A., 2024. Evaluating long-term water storage
trends in small catchments and aquifers from a joint inversion of 20 years of GRACE/GRACE-FO mission data. Geophysical
Journal International, 236(2):1002–1012, doi:10.1093/gji/ggad468.
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- Lele, Ratnaksha and Purkey, Sarah G., 2024. Understanding Full-Depth Steric Sea Level Change in the Southwest Pacific Basin
Using Deep Argo. Geophysical Research Letters, 51(12):e2023GL107844, doi:10.1029/2023GL107844.
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- Li, Xianpao, Zhong, Bo, Chen, Jianli, Li, Jiancheng, and Wang, Haihong, 2024. Investigation of 2020-2022 extreme floods and
droughts in Sichuan Province of China based on joint inversion of GNSS and GRACE/GFO data. Journal of Hydrology, 632:130868,
doi:10.1016/j.jhydrol.2024.130868.
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- Li, Bailing and Rodell, Matthew, 2024. Terrestrial water storage in 2023. Nature Reviews Earth and Environment, 5(4):247–249,
doi:10.1038/s43017-024-00545-x.
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- Li, Hongwei, He, Youquan, Gu, Yuanyuan, and Qiao, Gang, 2024. A Comparative Study Of Mass Balance In The Lambert Glacier And
Amery Ice Shelf Along The Chinese Inland Traverse During 2019–2023 Using Altimetry, Gravity, And In-Situ Observations.
ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 481:323–328,
doi:10.5194/isprs-archives-XLVIII-1-2024-323-2024.
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- Li, Hao-si, Yi, Shuang, Luo, Zi-ren, and Xu, Peng, 2024. Revealing High-Temporal-Resolution Flood Evolution With Low Latency
Using GRACE Follow-On Ranging Data. Water Resources Research, 60(6):e2023WR036332, doi:10.1029/2023WR036332.
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- Li, Kai, Tang, Chengpan, Zhou, Shanshi, Hu, Xiaogong, and Zhou, Xuhua, 2024. High-precision GPS orbit determination by integrating
the measurements from regional ground stations and LEO onboard receivers. Satellite Navigation, 5(1):27, doi:10.1186/s43020-024-00147-4.
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- Li, Fupeng, Kusche, Jürgen, Sneeuw, Nico, Siebert, Stefan, Gerdener, Helena, Wang, Zhengtao, Chao, Nengfang, Chen, Gang,
and Tian, Kunjun, 2024. Forecasting Next Year's Global Land Water Storage Using GRACE Data. Geophysical Research Letters,
51(17):e2024GL109101, doi:10.1029/2024GL109101.
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- Li, Jiahao, Jin, Guowang, Xiong, Xin, Zhou, Lv, Ye, Hao, Shi, Quanjie, and Yang, He, 2024. Surface Time Series Response and
Deformation Cause Analysis in 2021 Zhengzhou Extreme Weather, China. Earth and Space Science, 11(8):e2024EA003643,
doi:10.1029/2024EA003643.
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- Liu, Bailu, Zhou, Yan, Cui, Yaoping, Dong, Jinwei, Wang, Xinxin, Zhang, Qinghua, Zou, Zhenhua, and Xiao, Xiangming, 2024.
Exacerbating water shortage induced by continuous expansion of surface artificial water bodies in the Yellow River Basin.
Journal of Hydrology, 633:130979, doi:10.1016/j.jhydrol.2024.130979.
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- Ludwigsen, Carsten Bjerre, Andersen, Ole Baltazar, Marzeion, Ben, Malles, Jan-Hendrik, Müller Schmied, Hannes, Döll,
Petra, Watson, Christopher, and King, Matt A., 2024. Global and regional ocean mass budget closure since 2003. Nature Communications,
15:1416, doi:10.1038/s41467-024-45726-w.
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- Ma, Yalin, Pan, Yun, Zhang, Chong, Yeh, Pat J. -F., Xu, Li, Huang, Zhiyong, and Gong, Huili, 2024. Improved Estimates of Sub-Regional
Groundwater Storage Anomaly Using Coordinated Forward Modeling. Water Resources Research, 60(7):e2023WR036105, doi:10.1029/2023WR036105.
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- Maitland, Deron O., Richter, Kristin, Raj, Roshin P., Bonaduce, Antonio, Nisancioglu, Kerim H., Taylor, Michael A., and Stephenson,
Tannecia S., 2024. Determining sea-level rise in the Caribbean: A shift from temperature to mass control. Scientific Reports,
14:10387, doi:10.1038/s41598-024-60201-8.
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- McGirr, Rebecca, Tregoning, Paul, Purcell, Anthony, and McQueen, Herb, 2024. Significant Local Sea Level Variations Caused
by Continental Hydrology Signals. Geophysical Research Letters, 51(10):e2024GL108394, doi:10.1029/2024GL108394.
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- Medvedev, A. I., Stepanenko, V. M., and Bogomolov, V. Yu., 2024. Influence of External Parameters on Evapotranspiration
in the INM RAS–MSU Land Surface Model. Russian Metallurgy, 49(5):420–429, doi:10.3103/S1068373924050054.
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- Misfeldt, Malte, Bekal, Pallavi, Müller, Vitali, and Heinzel, Gerhard, 2024. Corrigendum to ``Disturbances from single
event upsets in the GRACE follow-on laser ranging interferometer'' [Adv. Space Res. 72(6) (2023) 2259-2269]. Advances in
Space Research, 73(6):3363–3363, doi:10.1016/j.asr.2023.12.035.
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- Mishra, Vimal, Dangar, Swarup, Tiwari, Virendra M., Lall, Upmanu, and Wada, Yoshihide, 2024. Summer Monsoon Drying Accelerates
India's Groundwater Depletion Under Climate Change. Earth's Future, 12(8):e2024EF004516, doi:10.1029/2024EF004516.
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- Mohasseb, Hussein A., Shen, Wenbin, and Jiao, Jiashuang, 2024. Monsoon-Based Linear Regression Analysis for Filling Data Gaps
in Gravity Recovery and Climate Experiment Satellite Observations. Remote Sensing, 16(8):1424, doi:10.3390/rs16081424.
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- Mohasseb, Hussein A., Shen, Wenbin, Abd-Elmotaal, Hussein A., and Jiao, Jiashuang, 2024. Assessing Groundwater Sustainability
in the Arabian Peninsula and Its Impact on Gravity Fields through Gravity Recovery and Climate Experiment Measurements. Remote
Sensing, 16(8):1381, doi:10.3390/rs16081381.
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- Mohasseb, Hussein A., Shen, Wenbin, Jiao, Jiashuang, and Hassan, Ayman A., 2024. Estimation of groundwater storage variations
in African river basins: Response to global climate change using GRACE and GRACE-FO among past two decades. Advances in
Space Research, 74(3):1164–1182, doi:10.1016/j.asr.2024.05.003.
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- Motlaghzadeh, S., Vasiuta, M., Bister, M., Navarro Trastoy, A., Tuppi, L., Mayer-Gürr, T., and Järvinen, H., 2024.
Weather-Induced Satellite Orbit Perturbations. Journal of Geophysical Research (Atmospheres), 129(8):e2023JD040009,
doi:10.1029/2023JD040009.
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- Mu, Dapeng, Church, John A., King, Matt, Ludwigsen, Carsten Bjerre, and Xu, Tianhe, 2024. Contrasting Discrepancy in the Sea
Level Budget Between the North and South Atlantic Ocean Since 2016. Earth and Space Science, 11(8):e2023EA003133, doi:10.1029/2023EA003133.
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- Nandi, Subimal and Biswas, Sujata, 2024. Spatiotemporal distribution of groundwater drought using GRACE-based satellite estimates:
a case study of Lower Gangetic Basin, India. Environmental Monitoring and Assessment, 196(2):151, doi:10.1007/s10661-024-12309-7.
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- Nastula, Jolanta, Sliwinska-Bronowicz, Justyna, Winska, Malgorzata, and Kur, Tomasz, 2024. Analysis of combined series of
hydrological angular momentum developed based on climate models. Frontiers in Earth Science, 12:1369106, doi:10.3389/feart.2024.1369106.
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- Nie, Yufeng, Shen, Yunzhong, Chen, Jianli, and Chen, Qiujie, 2024. Improved GRACE-FO Gravity Field Solution by Combining Different
Accelerometer Transplant Products. Journal of Geophysical Research (Solid Earth), 129(5):e2023JB028013, doi:10.1029/2023JB028013.
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- Nie, Yufeng, Chen, Jianli, and Peng, Dongju, 2024. Global Ocean Mass Change Estimation Using Low-Degree Gravity Field From
Satellite Laser Ranging. Geophysical Research Letters, 51(11):e2024GL109717, doi:10.1029/2024GL109717.
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- Nigatu, Zemede M., You, Wei, and Melesse, Assefa M., 2024. Drought Dynamics in the Nile River Basin: Meteorological, Agricultural,
and Groundwater Drought Propagation. Remote Sensing, 16(5):919, doi:10.3390/rs16050919.
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- Nikraftar, Zahir, Parizi, Esmaeel, Saber, Mohsen, Hosseini, Seiyed Mossa, Ataie-Ashtiani, Behzad, and Simmons, Craig T., 2024.
Groundwater sustainability assessment in the Middle East using GRACE/GRACE-FO data. Hydrogeology Journal, 32(1):321–337,
doi:10.1007/s10040-023-02717-3.
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- Nourani, Vahid, Paknezhad, Nardin Jabbarian, Mohammadisepasi, Sepideh, and Zhang, Yongqiang, 2024. Regionalization of GRACE
data in shorelines by ensemble of artificial intelligence methods. Journal of Hydrology, 636:131268, doi:10.1016/j.jhydrol.2024.131268.
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- Oakes, Gregory, Hardy, Andy, Bunting, Pete, and Rosenqvist, Ake, 2024. RadWet-L: A Novel Approach for Mapping of Inundation
Dynamics of Forested Wetlands Using ALOS-2 PALSAR-2 L-Band Radar Imagery. Remote Sensing, 16(12):2078, doi:10.3390/rs16122078.
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- Ozcelik, Ceyhun, Yilmaz, Mustafa Utku, and Benli, Kader, 2024. Assessing drought in Turkish basins through satellite observations.
International Journal of Climatology, 44(10):3613–3640, doi:10.1002/joc.8541.
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- Pan, Zongpeng and Xiao, Yun, 2024. Data Quality Assessment of Gravity Recovery and Climate Experiment Follow-On Accelerometer.
Sensors, 24(13):4286, doi:10.3390/s24134286.
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- Panday, Durga Prasad, Kumar, Manish, Agarwal, Vivek, Torres-Mart\'ınez, Juan Antonio, and Mahlknecht, Jürgen, 2024.
Corroboration of arsenic variation over the Indian Peninsula through standardized precipitation evapotranspiration indices
and groundwater level fluctuations: Water quantity indicators for water quality prediction. Science of the Total Environment,
954:176339, doi:10.1016/j.scitotenv.2024.176339.
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- Pascolini-Campbell, Madeleine and Reager, John T., 2024. An Investigation of the Spatial and Temporal Characteristics of Extreme
Dry and Wet Events across NLDAS-2 Models. Journal of Hydrometeorology, 25(1):239–255, doi:10.1175/JHM-D-23-0038.1.
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- Peidou, Athina, Argus, Donald F., Landerer, Felix W., Wiese, David N., and Ellmer, Matthias, 2024. Gps Displacement Dataset
For The Study Of Elastic Surface Mass Variations. Earth System Science Data, 16:1317–1332, doi:10.5194/essd-16-1317-2024.
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- Pellet, Victor, Aires, Filipe, Alfieri, Lorenzo, and Bruno, Giulia, 2024. A physical/statistical data-fusion for the dynamical
downscaling of GRACE data at daily and 1 km resolution. Journal of Hydrology, 628:130565, doi:10.1016/j.jhydrol.2023.130565.
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- Peng, Bo, Wu, Kailan, Wu, Jingui, Guo, Zhongkai, Wang, Yun, Li, Ming, Zheng, Yongchao, Li, Xu, Xia, Chenhui, Bai, Shaojun,
Wang, Yiqun, and Lin, Xuling, 2024. Laboratory demonstration of an off-axis optical bench design for future gravity missions.
Review of Scientific Instruments, 95(9):094501, doi:10.1063/5.0215690.
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- Pezzopane, Michael, Pignalberi, Alessio, Pietrella, Marco, Haralambous, Haris, Prol, Fabricio, Nava, Bruno, Smirnov, Artem,
and Xiong, Chao, 2024. An Update of the NeQuick-Corr Topside Ionosphere Modeling Based on New Datasets. Atmosphere,
15(4):498, doi:10.3390/atmos15040498.
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- Pintori, F. and Serpelloni, E., 2024. Drought-Induced Vertical Displacements and Water Loss in the Po River Basin (Northern
Italy) From GNSS Measurements. Earth and Space Science, 11(3):e2023EA003326, doi:10.1029/2023EA00332610.22541/essoar.168606938.84604867/v1.
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- Pirooznia, Mahmoud, Voosoghi, Behzad, Poreh, Davod, and Amini, Arash, 2024. Integrating Hydrography Observations and Geodetic
Data for Enhanced Dynamic Topography Estimation. Remote Sensing, 16(3):527, doi:10.3390/rs16030527.
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- Ponte, R. M., Zhao, M., and Schindelegger, M., 2024. How Well Do We Know the Seasonal Cycle in Ocean Bottom Pressure?.
Earth and Space Science, 11(7):e2024EA003661, doi:10.1029/2024EA003661.
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- Pudasaini, Shiva P., 2024. Extended landslide velocity and analytical drag. European Physical Journal Plus, 139(2):131,
doi:10.1140/epjp/s13360-024-04908-7.
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- Qiao, Baojin, Li, Na, Cui, Jiangpeng, Li, Dongfeng, Li, Mengyao, Xiang, Longwei, Borrelli, Pasquale, and Famiglietti, Jay,
2024. Substantial Overestimation of Terrestrial Water Storage Loss in Headwater Basins on Earth's Third Pole. Geophysical
Research Letters, 51(15):e2023GL107553, doi:10.1029/2023GL107553.
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- Qiu, Keshan, You, Wei, Jiang, Zhongshan, and Tang, Miao, 2024. Tracking the water storage and runoff variations in the Paraná
basin via GNSS measurements. Science of the Total Environment, 912:168831, doi:10.1016/j.scitotenv.2023.168831.
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- Qu, Wei, Zhang, Pufang, Chen, Peinan, Li, Jiuyuan, and Gao, Yuan, 2024. Spatiotemporal Variations and Sustainability Characteristics
of Groundwater Storage in North China from 2002 to 2022 Revealed by GRACE/GRACE Follow-On and Multiple Hydrologic Data. Remote
Sensing, 16(7):1176, doi:10.3390/rs16071176.
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- Raju, Ashwani, Singh, Ramesh P., Kannojiya, Praveen Kumar, Patel, Abhinav, Singh, Saurabh, and Sinha, Mitali, 2024. Declining
groundwater and its impacts along Ganga riverfronts using combined Sentinel-1, GRACE, water levels, and rainfall data. Science
of the Total Environment, 920:170932, doi:10.1016/j.scitotenv.2024.170932.
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- Ramah, Mohamed, Heggy, Essam, Nasr, Ahmed, Toni, Mostafa, Gomaa, Mohamed M., Hanert, Emmanuel, and Kotb, Adel, 2024. Nubian
aquifer linkage to the High Aswan Dam Reservoir: Initial assessments of processes and challenges. Journal of Hydrology,
644:131999, doi:10.1016/j.jhydrol.2024.131999.
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- Ray, Vishal, Thayer, Jeffrey, Sutton, Eric K., and Waldron, Zachary, 2024. Error Assessment of Thermospheric Mass Density
Retrieval With POD Products Using Different Strategies During Solar Minimum. Space Weather, 22(9):e2023SW003585, doi:10.1029/2023SW003585.
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- Rzepecka, Zofia, Birylo, Monika, Jarsjö, Jerker, Cao, Feifei, and Pietron, Jan, 2024. Groundwater Storage Variations
across Climate Zones from Southern Poland to Arctic Sweden: Comparing GRACE-GLDAS Models with Well Data. Remote Sensing,
16(12):2104, doi:10.3390/rs16122104.
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- Sadat Soltani, Samira, Ataie-Ashtiani, Behzad, Al Bitar, Ahmad, Simmons, Craig. T., Younes, Anis, and Fahs, Marwan, 2024.
Assimilating multivariate remote sensing data into a fully coupled subsurface-land surface hydrological model. Journal
of Hydrology, 641:131812, doi:10.1016/j.jhydrol.2024.131812.
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- Saemian, Peyman, Tourian, Mohammad J., Elmi, Omid, Sneeuw, Nico, and AghaKouchak, Amir, 2024. A Probabilistic Approach to
Characterizing Drought Using Satellite Gravimetry. Water Resources Research, 60(8):e2023WR036873, doi:10.1029/2023WR036873.
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- Salehie, Obaidullah, Jamal, Mohamad Hidayat bin, Ismail, Tarmizi bin, Harun, Sobri Bin, and Shahid, Shamsuddin, 2024. Projection
of future water availability in the Amu Darya Basin. International Journal of Climatology, 44(9):2948–2961, doi:10.1002/joc.8490.
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- Sasgen, Ingo, Steinhoefel, Grit, Kasprzyk, Caroline, Matthes, Heidrun, Westermann, Sebastian, Boike, Julia, and Grosse, Guido,
2024. Atmosphere circulation patterns synchronize pan-Arctic glacier melt and permafrost thaw. Communications Earth and
Environment, 5(1):375, doi:10.1038/s43247-024-01548-8.
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- Satizábal-Alarcón, Diego Alejandro, Suhogusoff, Alexandra, and Ferrari, Luiz Carlos, 2024. Characterization
of groundwater storage changes in the Amazon River Basin based on downscaling of GRACE/GRACE-FO data with machine learning
models. Science of the Total Environment, 912:168958, doi:10.1016/j.scitotenv.2023.168958.
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- Schrama, E. J. O. and Visser, P. N. A. M., 2024. Choices for temporal gravity field modeling for
precision orbit determination of CryoSat-2. Advances in Space Research, 73(1):31–41, doi:10.1016/j.asr.2023.11.034.
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- Shahbazi, Maryam, Zarei, Heidar, and Solgi, Abazar, 2024. A new approach in using the GRACE satellite data and artificial
intelligence models for modeling and predicting the groundwater level (case study: Aspas aquifer in Southern Iran). Environmental
Earth Sciences, 83(8):240, doi:10.1007/s12665-024-11538-w.
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- Shayeghi, Afshin, Ziveh, Akbar Rahmati, Bakhtar, Aydin, Teymoori, Javad, Hanel, Martin, Vargas Godoy, Mijael Rodrigo, Markonis,
Yannis, and AghaKouchak, Amir, 2024. Assessing drought impacts on groundwater and agriculture in Iran using high-resolution
precipitation and evapotranspiration products. Journal of Hydrology, 631:130828, doi:10.1016/j.jhydrol.2024.130828.
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- Sheikh, Zahra, Nia, Alireza Moghaddam, and Ganjali, Mojtaba, 2024. Climate change and anthropogenic effects on the drying
of a saline lake in an arid region (Namak Lake, Iran). Theoretical and Applied Climatology, 155(1):715–734, doi:10.1007/s00704-023-04622-x.
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- Shi, Zhuoya, Wang, Zemin, Zhang, Baojun, Geng, Hong, An, Jiachun, Wu, Shuang, Liu, Mingliang, Wu, Yunsi, and Wu, Haojian,
2024. Bridging the spatiotemporal ice sheet mass change data gap between GRACE and GRACE-FO in Greenland using machine learning
method. Journal of Hydrology, 629:130622, doi:10.1016/j.jhydrol.2024.130622.
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- Shi, Xiaoying, Wang, Yaoping, Mao, Jiafu, Thornton, Peter E., Riccuito, Daniel M., Hoffman, Forrest M., and Hao, Yuefeng,
2024. Quantifying the long-term changes of terrestrial water storage and their driving factors. Journal of Hydrology,
635:131096, doi:10.1016/j.jhydrol.2024.131096.
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- Siemes, Christian, van den IJssel, Jose, and Visser, Pieter, 2024. Uncertainty of thermosphere mass density observations derived
from accelerometer and GNSS tracking data. Advances in Space Research, 73(10):5043–5063, doi:10.1016/j.asr.2024.02.057.
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- Song, Xuanhua, Chen, Hao, Chen, Tan, Qin, Zhihao, Chen, Sheng, Yang, Ni, and Deng, Shulin, 2024. GRACE-based groundwater drought
in the Indochina Peninsula during 1979–2020: Changing properties and possible teleconnection mechanisms. Science
of the Total Environment, 908:168423, doi:10.1016/j.scitotenv.2023.168423.
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- Sosnica, Krzysztof, 2024. Orbit design for a future geodetic satellite and gravity field recovery. Journal of Geodesy,
98(8):77, doi:10.1007/s00190-024-01884-9.
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- Springer, Anne, Mielke, Christian A., Liu, Ziyu, Dixit, Shashi, Friederichs, Petra, and Kusche, Jürgen, 2024. A Regionally
Refined and Mass-Consistent Atmospheric and Hydrological De-Aliasing Product for GRACE, GRACE-FO and Future Gravity Missions.
Journal of Geophysical Research (Solid Earth), 129(5):e2023JB027883, doi:10.1029/2023JB027883.
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- Su, Yong, Yang, Yi-Fei, and Yang, Yi-Yu, 2024. Learning-based Reconstruction of GRACE Data Based on Changes in Total Water
Storage and Its Accuracy Assessment. Applied Geophysics, .
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- Sun, Jianchong, Hu, Litang, Zhang, Junchao, and Yin, Wenjie, 2024. Providing Enhanced Insights into Groundwater Exchange Patterns
through Downscaled GRACE Data. Remote Sensing, 16(5):812, doi:10.3390/rs16050812.
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- Sun, Pengchao, Li, Mengyu, Guo, Changsheng, and Wei, Dongping, 2024. The relationship between GRACE gravity and the seismic
b-value: a case study of the Northern Chile Triple Junction (25° S-40° S). Geophysical Journal International,
237(3):1575–1608, doi:10.1093/gji/ggae116.
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- Sun, Alexander Y., Save, Himanshu, Rateb, Ashraf, Jiang, Peishi, and Scanlon, Bridget R., 2024. Deciphering the Role of Total
Water Storage Anomalies in Mediating Regional Flooding. Geophysical Research Letters, 51(16):e2023GL108126, doi:10.1029/2023GL108126.
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- Tan, Xuli, Fan, Diao, Feng, Jinkai, Wan, Hongfa, Xu, Zhenbang, and Li, Shanshan, 2024. An Improved Average Acceleration Approach
of Modelling Earth Gravity Field Based on K-Band Range-Rate Observations. Remote Sensing, 16(17):3172, doi:10.3390/rs16173172.
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- Tang, Miao, Yuan, Linguo, Yang, Xinghai, Jiang, Zhongshan, Han, Shin-Chan, and You, Wei, 2024. Insights into water mass change
in the Yangtze River Basin from the spectral integration of GNSS and GRACE observations. Earth and Planetary Science Letters,
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- Tao, Tingye, Dai, Ju, Song, Zichen, Li, Shuiping, Qu, Xiaochuan, Zhu, Yongchao, Li, Zhenxuan, and Zhu, Mingming, 2024. Spatial-Temporal
Dynamic Evolution of Land Deformation Driven by Hydrological Signals around Chaohu Lake. Sensors, 24(4):1198, doi:10.3390/s24041198.
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- Toledo, Naomi, Moulatlet, Gabriel, Gaona, Gabriel, Valencia, Bryan, Hirata, Ricardo, and Conicelli, Bruno, 2024. Dynamics
of meteorological and hydrological drought: The impact of groundwater and El Niño events on forest fires in the Amazon.
Science of the Total Environment, 954:176612, doi:10.1016/j.scitotenv.2024.176612.
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- Tong, Jinwei, Shi, Zhen, Jiao, Jiashuang, Yang, Bing, and Tian, Zhen, 2024. Glacier Mass Balance and Its Impact on Land Water
Storage in the Southeastern Tibetan Plateau Revealed by ICESat-2 and GRACE-FO. Remote Sensing, 16(6):1048, doi:10.3390/rs16061048.
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- Tseng, Tzu-Pang, Yeh, Wen-Hao, Tsai, Yung-Fu, Hsiao, Tung-Yuan, Tsai, Yi-Hsuan, Kuo, Pei-Jung, Chen, Kun-Lin, and Hsiao, Yu-Shen,
2024. Satellite orbit determination and time synchronization using GPS single-frequency observables in low and high solar
activities. Earth, Planets and Space, 76(1):90, doi:10.1186/s40623-024-02033-4.
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- Upadhyay, Surabhi, Shrestha, Sangam, Loc, Ho Huu, Mohanasundaram, S., Dhungana, Santosh, Lim, Sokneth, and Tangdamrongsub,
Natthachet, 2024. Satellite-based estimates of declining groundwater storage in the transboundary Cambodia-Mekong River Delta
Aquifer of the Lower Mekong region, Southeast Asia. Hydrogeology Journal, 32(2):601–619, doi:10.1007/s10040-023-02746-y.
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- Verkaik, Jarno, Sutanudjaja, Edwin H., Oude Essink, Gualbert H. P., Lin, Hai Xiang, and Bierkens, Marc F. P., 2024.
GLOBGM v1.0: a parallel implementation of a 30 arcsec PCR-GLOBWB-MODFLOW global-scale groundwater model. Geoscientific
Model Development, 17(1):275–300, doi:10.5194/gmd-17-275-2024.
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- Vincent, Asha and Müller, Jürgen, 2024. Detection of time variable gravity signals using terrestrial clock networks.
Advances in Space Research, 73(6):3312–3320, doi:10.1016/j.asr.2023.07.058.
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- Wang, Wei, Shen, Yunzhong, Chen, Qiujie, and Wang, Fengwei, 2024. High-resolution mascon solutions reveal glacier-scale mass
changes over the Greenland Ice Sheet from 2002 to 2022. Geophysical Journal International, 236(1):494–515, doi:10.1093/gji/ggad439.
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- Wang, Jielong, Yang, Ling, Shen, Yunzhong, and Chen, Qiujie, 2024. Total water storage anomalies reconstruction using noise-augmented
u-shaped network: A case study in the Yangtze River Basin. Computers and Geosciences, 183:105498, doi:10.1016/j.cageo.2023.105498.
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- Wang, Bowen, Meng, Xiangguang, Sun, Yueqiang, Männel, Benjamin, Wickert, Jens, Bai, Weihua, and Tang, Longjiang, 2024.
Impact of solar activity on thermospheric mass density response: Observations from GRACE-FO. Advances in Space Research,
73(9):4546–4560, doi:10.1016/j.asr.2024.02.012.
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- Wang, Zhizhao, Yang, Shuju, Jia, Fuling, Wu, Kaihang, Liao, Fangjie, Duan, Huizong, and Yeh, Hsien-Chi, 2024. Alternative
Approach to Tilt-to-Length Coupling Estimation for Laser Ranging Interferometers in Future Gravity Missions. Remote Sensing,
16(5):862, doi:10.3390/rs16050862.
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- Wang, H. B., Zhang, M. J., and Xiong, J. N., 2024. The Feature Analysis and Modeling of Upper Atmospheric Midnight
Density Maximum. Acta Astronomica Sinica, 65(1):9, doi:10.15940/j.cnki.0001-5245.2024.01.009.
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- Wang, Aoming, Gu, Defeng, Huang, Zhiyong, Liu, Chaoqun, Shao, Kai, and Tong, Lisheng, 2024. GRACE-FO attitude determination:
Star camera installation matrix calibration and incremental quaternion integrator. Acta Astronautica, 219:774–784,
doi:10.1016/j.actaastro.2024.03.073.
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- Wang, Yu, Han, Tian, Yang, Yuze, Hai, Yue, Wen, Zhi, Li, Ruonan, and Zheng, Hua, 2024. Revealing the Hidden Consequences of
Increased Soil Moisture Storage in Greening Drylands. Remote Sensing, 16(10):1819, doi:10.3390/rs16101819.
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- Wang, Mengran, Yao, Jiaqi, Mo, Fan, and Xu, Nan, 2024. Spatiotemporal Coupling Analysis Of Surface Water And Groundwater In
Tibet Based On Multi-Source Sensors. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information
Sciences, 481:663–669, doi:10.5194/isprs-archives-XLVIII-1-2024-663-2024.
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- Wang, Chao, Jiang, Shijie, Zheng, Yi, Han, Feng, Kumar, Rohini, Rakovec, Oldrich, and Li, Siqi, 2024. Distributed Hydrological
Modeling With Physics-Encoded Deep Learning: A General Framework and Its Application in the Amazon. Water Resources Research,
60(4):e2023WR036170, doi:10.1029/2023WR036170.
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- Wang, Yiming, Li, Chen, Cui, Yingjie, Cui, Yanhong, Xu, Yuancheng, Hora, Tejasvi, Zaveri, Esha, Rodella, Aude-Sophie, Bai,
Liangliang, and Long, Di, 2024. Spatial downscaling of GRACE-derived groundwater storage changes across diverse climates and
human interventions with Random Forests. Journal of Hydrology, 640:131708, doi:10.1016/j.jhydrol.2024.131708.
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- Wang, Jian, Gu, Defeng, Yin, Heng, Yang, Xuerong, Wei, Chunbo, and An, Zicong, 2024. Research on Inter-Satellite Laser Ranging
Scale Factor Estimation Methods for Next-Generation Gravity Satellites. Remote Sensing, 16(14):2523, doi:10.3390/rs16142523.
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- Wang, Fengwei, Zhou, Qing, Gao, Haipeng, Wen, Yanlin, and Zhou, Shijian, 2024. Dynamic Monitoring of Poyang Lake Water Area
and Storage Changes from 2002 to 2022 via Remote Sensing and Satellite Gravimetry Techniques. Remote Sensing, 16(13):2408,
doi:10.3390/rs16132408.
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- Wang, Peng-fei, Wang, Song-yun, Li, Jin, and Qi, Zhao-xiang, 2024. Analysis of the Impact of Bedrock Thermal Expansion on
Three-Dimensional Surficial Annual Deformation in Southwest China. Progress in Astronomy, 42:315–334, doi:10.3969/j.issn.1000-8349.2024.02.09.
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- Wang, Yifan, Zhan, Jingang, Shi, Hongling, and Chen, Jianli, 2024. Interannual Glacial Mass Changes in High Mountain Asia
and Connections to Climate Variability. Remote Sensing, 16(18):3426, doi:10.3390/rs16183426.
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- Weigelt, Matthias, Jäggi, Adrian, Meyer, Ulrich, Arnold, Daniel, Mayer-Gürr, Torsten, Öhlinger, Felix, Sosnica,
Krzysztof, Ebadi, Sahar, Schön, Steffen, and Steffen, Holger, 2024. Bridging the gap between GRACE and GRACE Follow-On
by combining high–low satellite-to-satellite tracking data and satellite laser ranging. Journal of Geodesy, 98(9):84,
doi:10.1007/s00190-024-01888-5.
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- Willen, Matthias O., Horwath, Martin, Buchta, Eric, Scheinert, Mirko, Helm, Veit, Uebbing, Bernd, and Kusche, Jürgen,
2024. Globally Consistent Estimates Of High-Resolution Antarctic Ice Mass Balance And Spatially Resolved Glacial Isostatic
Adjustment. The Cryosphere, 18:775–790, doi:10.5194/tc-18-775-2024.
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- Wu, Tingtao, Xu, Lei, and Chen, Nengcheng, 2024. Spatial pattern and attribution of ecosystem drought recovery in China. Journal
of Hydrology, 638:131578, doi:10.1016/j.jhydrol.2024.131578.
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- Xu, CanCan, Chen, Fang, Huang, ChengLi, Zhou, YongHong, Shi, QiQi, Duan, PengShuo, and Xu, XueQing, 2024. Cryospheric Excitation
on the Earth's Chandler Wobble and Implications From a Warming World. Geophysical Research Letters, 51(12):e2024GL108992,
doi:10.1029/2024GL108992.
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- Xue, Dongping, Gui, Dongwei, Ci, Mengtao, Liu, Qi, Wei, Guanghui, and Liu, Yunfei, 2024. Spatial and temporal downscaling
schemes to reconstruct high-resolution GRACE data: A case study in the Tarim River Basin, Northwest China. Science of the
Total Environment, 907:167908, doi:10.1016/j.scitotenv.2023.167908.
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- Yang, Xu, Weng, Libin, Lei, Jiuhou, Zhu, Xiaoqian, Ruan, Haibing, Ren, Dexin, Li, Zhongli, Li, Ruoxi, and Chen, Liangjie,
2024. Evaluation of the Exospheric Temperature Modeling From Different Empirical Orthogonal Functions. Space Weather,
22(1):e2023SW003549, doi:10.1029/2023SW003549.
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- Yang, Jiawen, Pan, Yun, Zhang, Chong, Gong, Huili, Xu, Li, Huang, Zhiyong, and Lu, Shanlong, 2024. Comparison of groundwater
storage changes over losing and gaining aquifers of China using GRACE satellites, modeling and in-situ observations. Science
of the Total Environment, 938:173514, doi:10.1016/j.scitotenv.2024.173514.
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- Yang, Fan, Liu, Shuhao, and Forootan, Ehsan, 2024. A spatial-varying non-isotropic Gaussian-based convolution filter for smoothing
GRACE-like temporal gravity fields. Journal of Geodesy, 98(7):66, doi:10.1007/s00190-024-01875-w.
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- Yang, Fan, Forootan, Ehsan, Liu, Shuhao, and Schumacher, Maike, 2024. A Monte Carlo Propagation of the Full Variance-Covariance
of GRACE-Like Level-2 Data With Applications in Hydrological Data Assimilation and Sea-Level Budget Studies. Water Resources
Research, 60(9):e2023WR036764, doi:10.1029/2023WR036764.
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- Yidana, Sandow Mark, Dzikunoo, Elikplim Abla, Mejida, Richard Adams, Ackom, Edward Kofi, Chegbeleh, Larry Pax, Loh, Yvonne
Sena Akosua, Banoeng-Yakubo, Bruce Kofi, and Akabzaa, Thomas Mba, 2024. Evaluating groundwater resources trends through multiple
conceptual models and GRACE satellite data. Environmental Monitoring and Assessment, 196(3):290, doi:10.1007/s10661-024-12457-w.
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- Youssef, Youssef M., Gemail, Khaled S., Atia, Hafsa M., and Mahdy, Mohamed, 2024. Insight into land cover dynamics and water
challenges under anthropogenic and climatic changes in the eastern Nile Delta: Inference from remote sensing and GIS data.
Science of the Total Environment, 913:169690, doi:10.1016/j.scitotenv.2023.169690.
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- Yu, Biao, You, Wei, Kusche, Jürgen, Fan, Dongming, Su, Yong, and Zhang, Jiahui, 2024. A detailed analysis of stochastic
models applied to temporal gravity field recovery with GRACE observations. Geophysical Journal International, 236(1):516–536,
doi:10.1093/gji/ggad441.
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- Yu, Miao, Pavlova, Nadezhda, Zhao, Jing, and Dai, Changlei, 2024. Dynamic Changes and Influencing Factors Analysis of Groundwater
Icings in the Permafrost Region in Central Sakha (Yakutia) Republic under Modern Climatic Conditions. Atmosphere, 15(9):1022,
doi:10.3390/atmos15091022.
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- Zhamkov, A. S., Ayukov, S. V., Filetkin, A. I., Milyukov, V. K., Vlasov, I. Yu., Sementsov, V. N.,
Gusev, I. V., and Zharov, V. E., 2024. National Software for Processing Information of the Satellite–Satellite
Space Geodetic System. Astronomy Reports, 68(3):320–330, doi:10.1134/S1063772924700288.
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- Zhang, H., Cai, H. T., Wan, X., Hu, K., Xiong, C., Gao, S. Z., and Yang, L. B., 2024. The Altitudinal Dependences
of the Inter-Hemispheric Asymmetry in the Mid-Latitude Ionospheric Post-Midnight Enhancement During Equinox. Journal of
Geophysical Research (Space Physics), 129(1):e2023JA032260, doi:10.1029/2023JA032260.
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- Zhang, Xiao, Wu, Xiong, Mu, Wenping, Zhao, Rong, Ye, Baoying, and Bai, Zhongke, 2024. Understanding the shift in drivers of
terrestrial water storage decline in the central Inner Mongolian steppe over the past two decades. Journal of Hydrology,
636:131312, doi:10.1016/j.jhydrol.2024.131312.
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- Zhang, Jiahui, You, Wei, Yu, Biao, and Fan, Dongming, 2024. Improved GRACE-FO kinematic orbit determination with epoch-difference
KBR during the GPS flex power period. Advances in Space Research, 74(5):2011–2024, doi:10.1016/j.asr.2024.05.061.
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- Zhang, Hongyue, 2024. Tracking the spatial patterns and thematic dynamics of GRACE satellite application over the last 20
years (2002–2022). Frontiers in Earth Science, 12:1392359, doi:10.3389/feart.2024.1392359.
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- Zhang, Tao, Bian, Shaofeng, Ji, Bing, Li, Wanqiu, Zong, Jingwen, and Yuan, Jiajia, 2024. The Extraction of Terrestrial Water
Storage Anomaly from GRACE in the Region with Medium Scale and Adjacent Weak Signal Area: A Case for the Dnieper River Basin.
Remote Sensing, 16(12):2124, doi:10.3390/rs16122124.
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- Zhang, Lin, Shen, Yunzhong, Chen, Qiujie, and Ji, Kunpu, 2024. An improved parameter filtering approach for processing GRACE
gravity field models using first-order Gauss-Markov process. Journal of Geodesy, 98(6):56, doi:10.1007/s00190-024-01871-0.
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- Zhang, Chengyuan, Han, Zhiming, Wang, Shuo, Wang, Jiankun, Cui, Chenfeng, and Liu, Junrong, 2024. Accelerated Atmospheric
to Hydrological Spread of Drought in the Yangtze River Basin under Climate. Remote Sensing, 16(16):3033, doi:10.3390/rs16163033.
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- Zhang, Jinliang, Lu, Zhong, Li, Chaoqun, Lei, Guoping, Yu, Ziyang, and Li, Kuo, 2024. Estimation of groundwater-level changes
based on GRACE satellite and GLDAS assimilation data in the Songnen Plain, China. Hydrogeology Journal, 32(5):1495–1509,
doi:10.1007/s10040-024-02815-w.
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- Zhao, Juan, Li, Geng, Zhu, Ziyue, Hao, Yonghong, Hao, Huiqing, Yao, Jiaqi, Bao, Teligeer, Liu, Qi, and Yeh, Tian-Chyi Jim,
2024. Analysis of the spatiotemporal variation of groundwater storage in Ordos Basin based on GRACE gravity satellite data.
Journal of Hydrology, 632:130931, doi:10.1016/j.jhydrol.2024.130931.
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- Zheng, Shuo, Zhang, Zizhan, Scanlon, Bridget R., Yan, Haoming, Sun, Alexander Y., Rateb, Ashraf, and Li, Yan, 2024. High Spatial
Resolution in Total Water Storage Variations Inferred From GPS: Case Study in the Great Lakes Watershed, US. Water Resources
Research, 60(7):e2023WR035213, doi:10.1029/2023WR035213.
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- Zhou, Hao, Zheng, Lijun, Li, Yaozong, Guo, Xiang, Zhou, Zebing, and Luo, Zhicai, 2024. Hust-Grace2024: A New Grace-Only Gravity
Field Time Series Based On More Than 20 Years Of Satellite Geodesy Data And A Hybrid Processing Chain. Earth System Science
Data, 16:3261–3281, doi:10.5194/essd-16-3261-2024.
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- Zhu, Fengshun, Guo, Jinyun, Zhang, Huiying, Huang, Lingyong, Sun, Heping, and Liu, Xin, 2024. Sdust2020Mgcr: A Global Marine
Gravity Change Rate Model Determined From Multi-Satellite Altimeter Data. Earth System Science Data, 16:2281–2296,
doi:10.5194/essd-16-2281-2024.
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- Zingerle, P., Gruber, T., Pail, R., and Daras, I., 2024. Constellation design and performance of future quantum satellite
gravity missions. Earth, Planets and Space, 76(1):101, doi:10.1186/s40623-024-02034-3.
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- Zingerle, P., Romeshkani, M., Haas, J., Gruber, T., Güntner, A., Müller, J., and Pail, R., 2024. The Benefits of
Future Quantum Accelerometers for Satellite Gravimetry. Earth and Space Science, 11(9):e2024EA003630, doi:10.1029/2024EA003630.
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- Abrykosov, Petro, Murböck, Michael, Hauk, Markus, Pail, Roland, and Flechtner, Frank, 2023. Data-driven multi-step self-de-aliasing
approach for GRACE and GRACE-FO data processing. Geophysical Journal International, 232(2):1006–1030, doi:10.1093/gji/ggac340.
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- Agarwal, Vibhor, Akyilmaz, Orhan, Shum, C. K., Feng, Wei, Yang, Ting-Yi, Forootan, Ehsan, Syed, Tajdarul Hassan, Haritashya,
Umesh K., and Uz, Metehan, 2023. Machine learning based downscaling of GRACE-estimated groundwater in Central Valley, California.
Science of the Total Environment, 865:161138, doi:10.1016/j.scitotenv.2022.161138.
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- Alghafli, Khaled, Shi, Xiaogang, Sloan, William, Shamsudduha, Mohammad, Tang, Qiuhong, Sefelnasr, Ahmed, and Ebraheem, Abdel
Azim, 2023. Groundwater recharge estimation using in-situ and GRACE observations in the eastern region of the United Arab
Emirates. Science of the Total Environment, 867:161489, doi:10.1016/j.scitotenv.2023.161489.
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- Ali, Shoaib, Khorrami, Behnam, Jehanzaib, Muhammad, Tariq, Aqil, Ajmal, Muhammad, Arshad, Arfan, Shafeeque, Muhammad, Dilawar,
Adil, Basit, Iqra, Zhang, Liangliang, Sadri, Samira, Niaz, Muhammad Ahmad, Jamil, Ahsan, and Khan, Shahid Nawaz, 2023. Spatial
Downscaling of GRACE Data Based on XGBoost Model for Improved Understanding of Hydrological Droughts in the Indus Basin Irrigation
System (IBIS). Remote Sensing, 15(4):873, doi:10.3390/rs15040873.
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- Alshehri, Fahad and Mohamed, Ahmed, 2023. Investigation of groundwater potential using gravity data in Wadi Fatimah and its
surroundings, Western Saudi Arabia. Frontiers in Earth Science, 11:1225992, doi:10.3389/feart.2023.1225992.
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- Amiri, Vahab, Ali, Shoaib, and Sohrabi, Nassim, 2023. Estimating the spatio-temporal assessment of GRACE/GRACE-FO derived
groundwater storage depletion and validation with in-situ water quality data (Yazd province, central Iran). Journal of
Hydrology, 620:129416, doi:10.1016/j.jhydrol.2023.129416.
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- Arungwa, I. D., Okeke, F. I., Moka, E. C., Kalu, I., and Okolie, C. J., 2023. Diagnosing the Terrestrial
Water Storage Variation Over the Nigerian Space: the GRACE Perspective. ISPRS - International Archives of the Photogrammetry,
Remote Sensing and Spatial Information Sciences, 48W6:33–39, doi:10.5194/isprs-archives-XLVIII-4-W6-2022-33-2023.
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- Awasthi, S., Jain, K., Sur, K., and Goswami, A., 2023. Predicting the Impact of Rapid Urbanisation on Urban Groundwater Level
Variations and Analyzing Climate Dynamics in PUNJAB'S Cities, India: AN Approach Towards Sustainable Cities. ISPRS - International
Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 48W2:1319–1324, doi:10.5194/isprs-archives-XLVIII-1-W2-2023-1319-2023.
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- Bag, Tikemani, Rout, Diptiranjan, Ogawa, Y., and Singh, Vir, 2023. Distinctive response of thermospheric cooling to ICME and
CIR-driven geomagnetic storms. Frontiers in Astronomy and Space Sciences, 10:1107605, doi:10.3389/fspas.2023.1107605.
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- Barbosa, Sergio A., Pulla, Sarva T., Williams, Gustavious P., Jones, Norman L., Mamane, Bako, and Sanchez, Jorge L., 2023.
Correction: Barbosa et al. Evaluating Groundwater Storage Change and Recharge Using GRACE Data: A Case Study of Aquifers in
Niger, West Africa. Remote Sens. 2022, 14, 1532. Remote Sensing, 15(5):1435, doi:10.3390/rs15051435.
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- Barbosa, Sergio A., Jones, Norman L., Williams, Gustavious P., Mamane, Bako, Begou, Jamila, Nelson, E. James, and Ames, Daniel
P., 2023. Exploiting Earth Observations to Enable Groundwater Modeling in the Data-Sparse Region of Goulbi Maradi, Niger.
Remote Sensing, 15(21):5199, doi:10.3390/rs15215199.
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- Barnoud, Anne, Pfeffer, Julia, Cazenave, Anny, Fraudeau, Robin, Rousseau, Victor, and Ablain, Michaël, 2023. Revisiting
the global mean ocean mass budget over 2005-2020. Ocean Science, 19(2):321–334, doi:10.5194/os-19-321-2023.
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- Bessenbacher, V., Schumacher, D. L., Hirschi, M., Seneviratne, S. I., and Gudmundsson, L., 2023. Gap-Filled Multivariate
Observations of Global Land-Climate Interactions. Journal of Geophysical Research (Atmospheres), 128(24):e2023JD039099,
doi:10.1029/2023JD039099.
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- Bian, Yankai, Li, Zhen, Huang, Zhiquan, He, Bing, Shi, Liangliang, and Miao, Song, 2023. Combined GRACE and GPS to Analyze
the Seasonal Variation of Surface Vertical Deformation in Greenland and Its Influence. Remote Sensing, 15(2):511, doi:10.3390/rs15020511.
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- Birylo, Monika and Rzepecka, Zofia, 2023. Remote Sensing-Based Hydro-Extremes Assessment Techniques for Small Area Case Study
(The Case Study of Poland). Remote Sensing, 15(21):5226, doi:10.3390/rs15215226.
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- Blank, Daniel, Eicker, Annette, Jensen, Laura, and Güntner, Andreas, 2023. A global analysis of water storage variations
from remotely sensed soil moisture and daily satellite gravimetry. Hydrology and Earth System Sciences, 27(13):2413–2435,
doi:10.5194/hess-27-2413-2023.
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- Bruinsma, Sean, Siemes, Christian, Emmert, John T., and Mlynczak, Martin G., 2023. Description and comparison of 21st century
thermosphere data. Advances in Space Research, 72(12):5476–5489, doi:10.1016/j.asr.2022.09.038.
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- Chang, Guobin, Qian, Nijia, and Bian, Shaofeng, 2023. Statistically optimal estimation of surface mass anomalies by directly
using GRACE level-2 spherical harmonic coefficients as measurements. Geophysical Journal International, 233(3):1786–1799,
doi:10.1093/gji/ggad024.
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- Chao, Benjamin F., 2023. Gravitational inversion for arbitrary surface mass distribution-application to earth's time-variable
gravity with topography. Geophysical Journal International, 234(3):2459–2465, doi:10.1093/gji/ggad261.
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- Chao, Nengfang, Wan, Xuewen, Zhong, Yulong, Yin, Wenjie, Yue, Lianzhe, Li, Fupeng, Hu, Ying, Wang, Jiangyuan, Chen, Gang,
Wang, Zhengtao, Yu, Nan, and Ouyang, Guichong, 2023. Reconstructing a new terrestrial water storage deficit index to detect
and quantify drought in the Yangtze River Basin. Journal of Hydrology, 625:129972, doi:10.1016/j.jhydrol.2023.129972.
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- Chen, Lei, Yang, Jiayan, and Wu, Lixin, 2023. Topography Effects on the Seasonal Variability of Ocean Bottom Pressure in the
North Pacific Ocean. Journal of Physical Oceanography, 53(3):929–941, doi:10.1175/JPO-D-22-0140.1.
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- Chen, Zhiwei, Zheng, Wei, Yin, Wenjie, Li, Xiaoping, and Ma, Meihong, 2023. Improving Spatial Resolution of GRACE-Derived
Water Storage Changes Based on Geographically Weighted Regression Downscaled Model. IEEE Journal of Selected Topics in
Applied Earth Observations and Remote Sensing, 16:4261–4275, doi:10.1109/JSTARS.2023.3272916.
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- Chen, Wei, Xiong, Yuhao, Zhong, Min, Yang, Zihan, Shum, C. K., Li, Wenhao, Liang, Lei, and Li, Quanguo, 2023. Twenty-Year
Spatiotemporal Variations of TWS over Mainland China Observed by GRACE and GRACE Follow-On Satellites. Atmosphere,
14(12):1717, doi:10.3390/atmos14121717.
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- Cheng, Minkang and Ries, John, 2023. C$_20$ and C$_30$ Variations From SLR for GRACE/GRACE-FO Science Applications. Journal
of Geophysical Research (Solid Earth), 128(2):e2022JB025459, doi:10.1029/2022JB025459.
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- Chu, Jiangdong, Su, Xiaoling, Jiang, Tianliang, Qi, Jixia, Zhang, Gengxi, and Wu, Haijiang, 2023. Filling the gap between
GRACE and GRACE-FO data using a model integrating variational mode decomposition and long short-term memory: a case study
of Northwest China. Environmental Earth Sciences, 82(1):38, doi:10.1007/s12665-022-10716-y.
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- Cooper, M. G., Zhou, T., Bennett, K. E., Bolton, W. R., Coon, E. T., Fleming, S. W., Rowland, J. C.,
and Schwenk, J., 2023. Detecting Permafrost Active Layer Thickness Change From Nonlinear Baseflow Recession. Water Resources
Research, 59(1):e2022WR033154, doi:10.1029/2022WR033154.
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- Coss, Stephen, Durand, Michael T., Shum, C. K., Yi, Yuchan, Yang, Xiao, Pavelsky, Tamlin, Getirana, Augusto, and Yamazaki,
Dai, 2023. Channel Water Storage Anomaly: A New Remotely Sensed Quantity for Global River Analysis. Geophysical Research
Letters, 50(1):e2022GL100185, doi:10.1029/2022GL100185.
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- Cui, Lilu, Yin, Maoqiao, Zou, Zhengbo, Yao, Chaolong, Xu, Chuang, Li, Yu, and Mao, Yiru, 2023. Spatiotemporal Change in Evapotranspiration
across the Indus River Basin Detected by Combining GRACE/GRACE-FO and Swarm Observations. Remote Sensing, 15(18):4469,
doi:10.3390/rs15184469.
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- Dauteuil, Olivier, Jolivet, Marc, Gaudaré, Louis, and Pastier, Anne-Morwenn, 2023. Rainfall-induced ground deformation
in southern Africa. Terra Nova, 35(4):260–266, doi:10.1111/ter.12650.
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- Deng, Shanshan, Liu, Yuxin, and Zhang, Wenxi, 2023. A Comprehensive Evaluation of GRACE-Like Terrestrial Water Storage (TWS)
Reconstruction Products at an Interannual Scale During 1981-2019. Water Resources Research, 59(3):e2022WR034381, doi:10.1029/2022WR034381.
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- Deng, Shanshan, Jian, Zhenlong, Liu, Yuxin, Yi, Chushun, Chen, Yi, and Zhang, Wenxi, 2023. Tracking Low-Frequency Variations
in Land-Sea Water Mass Redistribution during the GRACE/GRACE-FO Era. Remote Sensing, 15(17):4248, doi:10.3390/rs15174248.
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- Dilalos, Spyridon and Alexopoulos, John D., 2023. Regional Gravity Model of Greece Based on Satellite, Marine and Terrestrial
Data. Pure and Applied Geophysics, 180(7):2807–2826, doi:10.1007/s00024-023-03285-z.
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- Döhne, Thorben, Horwath, Martin, Groh, Andreas, and Buchta, Eric, 2023. The sensitivity kernel perspective on GRACE mass
change estimates. Journal of Geodesy, 97(1):11, doi:10.1007/s00190-022-01697-8.
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- Dong, Jianzhi, Chen, Xi, Li, Yuxi, Gao, Man, Wei, Lingna, Tangdamrongsu, Natthachet, and Crow, Wade T., 2023. Inter-Basin
Water Transfer Effectively Compensates for Regional Unsustainable Water Use. Water Resources Research, 59(12):e2023WR035129,
doi:10.1029/2023WR035129.
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- Dube, Timothy, Seaton, Dylan, Shoko, Cletah, and Mbow, Cheikh, 2023. Advancements in earth observation for water resources
monitoring and management in Africa: A comprehensive review. Journal of Hydrology, 623:129738, doi:10.1016/j.jhydrol.2023.129738.
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- Duvvuri, Bhavya and Beighley, Edward, 2023. Estimating Monthly River Discharges from GRACE/GRACE-FO Terrestrial Water Storage
Anomalies. Remote Sensing, 15(18):4516, doi:10.3390/rs15184516.
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- Eshagh, Mehdi, Fatolazadeh, Farzam, and Go\"ıta, Kalifa, 2023. Impact of Uncertainty Estimation of Hydrological Models
on Spectral Downscaling of GRACE-Based Terrestrial and Groundwater Storage Variation Estimations. Remote Sensing, 15(16):3967,
doi:10.3390/rs15163967.
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- Fan, Linfeng, Kuang, Xingxing, Or, Dani, and Zheng, Chunmiao, 2023. Streamflow Composition and Water ``Imbalance'' in the
Northern Himalayas. Water Resources Research, 59(10):e2022WR034243, doi:10.1029/2022WR034243.
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- Feizi, Mohsen, Raoofian Naeeni, Mehdi, and Flury, Jakob, 2023. Antarctic Time-Variable Regional Gravity Field Model Derived
from Satellite Line-of-Sight Gravity Differences and Spherical Cap Harmonic Analysis. Remote Sensing, 15(11):2815,
doi:10.3390/rs15112815.
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- Feng, Tengfei, Shen, Yunzhong, Chen, Qiujie, Wang, Fengwei, and Ji, Kunpu, 2023. Evaluation of Terrestrial Water Storage and
Flux in North China by Using GRACE Combined Gravity Field Solutions and Hydrometeorological Models. Remote Sensing,
15(10):2536, doi:10.3390/rs15102536.
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- Ferraris, Stefano, Meo, Rosa, Pinardi, Stefano, Salis, Matteo, and Sartor, Gabriele, 2023. Machine Learning as a Strategic
Tool for Helping Cocoa Farmers in Côte D'Ivoire. Sensors, 23(17):7632, doi:10.3390/s23177632.
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- Foroumandi, Ehsan, Nourani, Vahid, Jeanne Huang, Jinhui, and Moradkhani, Hamid, 2023. Drought monitoring by downscaling GRACE-derived
terrestrial water storage anomalies: A deep learning approach. Journal of Hydrology, 616:128838, doi:10.1016/j.jhydrol.2022.128838.
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- Galodha, A., Kayithi, N. S., Sharma, D., and Jain, P., 2023. Monitoring Groundwater Storage Basins and Hydrological Changes
Using the GRACE Satellite and SENTINEL-1 for the Ganga River Basin. ISPRS - International Archives of the Photogrammetry,
Remote Sensing and Spatial Information Sciences, 48M3:95–100, doi:10.5194/isprs-archives-XLVIII-M-3-2023-95-2023.
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- Gao, Geng, Zou, Xiancai, Zhang, Shoujian, Wei, Hui, Kuang, Kaifa, and Zhu, Kemin, 2023. Improved real-time cycle-slip detection
for Low Earth Orbit satellites based on the dynamic force model. Advances in Space Research, 72(6):1983–1993,
doi:10.1016/j.asr.2023.05.044.
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- Gao, Geng, Zhang, Shoujian, Zou, Xiancai, Kuang, Kaifa, and Yu, Nan, 2023. Improved undifferenced ambiguity resolution for
LEO precise orbit determination. Advances in Space Research, 72(5):1518–1527, doi:10.1016/j.asr.2023.04.035.
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- Gao, Shengjun, Hao, Weifeng, Fan, Yi, Li, Fei, and Wang, Jing, 2023. A Multi-Source GRACE Fusion Solution via Uncertainty
Quantification of GRACE-Derived Terrestrial Water Storage (TWS) Change. Journal of Geophysical Research (Solid Earth),
128(11):e2023JB026908, doi:10.1029/2023JB026908.
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- Gardiya Weligamage, Hansini, Fowler, Keirnan, Peterson, Tim J., Saft, Margarita, Peel, Murray C., and Ryu, Dongryeol, 2023.
Partitioning of Precipitation Into Terrestrial Water Balance Components Under a Drying Climate. Water Resources Research,
59(5):e2022WR033538, doi:10.1029/2022WR033538.
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- Gauer, Louis-Marie, Chanard, Kristel, and Fleitout, Luce, 2023. Data-Driven Gap Filling and Spatio-Temporal Filtering of the
GRACE and GRACE-FO Records. Journal of Geophysical Research (Solid Earth), 128(5):e2022JB025561, doi:10.1029/2022JB025561.
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- Gerdener, Helena, Kusche, Jürgen, Schulze, Kerstin, Döll, Petra, and Klos, Anna, 2023. The global land water storage
data set release 2 (GLWS2.0) derived via assimilating GRACE and GRACE-FO data into a global hydrological model. Journal
of Geodesy, 97(7):73, doi:10.1007/s00190-023-01763-9.
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- Ghaffari, Zahra, Easson, Greg, Yarbrough, Lance D., Awawdeh, Abdel Rahman, Jahan, Md Nasrat, and Ellepola, Anupiya, 2023.
Using Downscaled GRACE Mascon Data to Assess Total Water Storage in Mississippi Alluvial Plain Aquifer. Sensors, 23(14):6428,
doi:10.3390/s23146428.
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- Ghobadi-Far, Khosro, Werth, Susanna, Shirzaei, Manoochehr, Loomis, Bryant D., Döhne, Thorben, Willen, Matthias O., and
Horwath, Martin, 2023. The Impact of New Accelerometer Transplant Data (ACH) on GRACE Follow-On Along-Orbit Inter-Satellite
Laser Ranging Observations and Monthly Time-Variable Gravity and Mascon Solutions. Journal of Geophysical Research (Solid
Earth), 128(6):e2023JB026740, doi:10.1029/2023JB026740.
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- Ghobadi-Far, Khosro, Werth, Susanna, and Shirzaei, Manoochehr, 2023. A shrinkage-free approach for fusing GRACE-based total
water storage changes with models using wavelet multiresolution analysis. Journal of Hydrology, 626:130217, doi:10.1016/j.jhydrol.2023.130217.
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- Goux, O., Pfeffer, J., Blazquez, A., Weaver, A. T., and Ablain, M., 2023. A mass conserving filter based on diffusion
for gravity recovery and climate experiment (GRACE) spherical harmonics solutions. Geophysical Journal International,
234(1):56–72, doi:10.1093/gji/ggad016.
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- Graf, M. and Pail, R., 2023. Combination of geometric and gravimetric data sets for the estimation of high-resolution mass
balances of the Greenland ice sheet. Geophysical Journal International, 235(3):2149–2167, doi:10.1093/gji/ggad356.
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- Guo, Yi, Xing, Naichen, Gan, Fuping, Yan, Baikun, and Bai, Juan, 2023. Evaluating the Hydrological Components Contributions
to Terrestrial Water Storage Changes in Inner Mongolia with Multiple Datasets. Sensors, 23(14):6452, doi:10.3390/s23146452.
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- Hakim, Wahyu Luqmanul, Fadhillah, Muhammad Fulki, Lee, Kwang-Jae, Lee, Seung-Jae, Chae, Sung-Ho, and Lee, Chang-Wook, 2023.
Land Subsidence and Groundwater Storage Assessment Using ICOPS, GRACE, and Susceptibility Mapping in Pekalongan, Indonesia.
IEEE Transactions on Geoscience and Remote Sensing, 61:3324043, doi:10.1109/TGRS.2023.3324043.
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- Hao, Ruonan, Yan, Huaxiang, and Chiang, Yen-Ming, 2023. Forecasting the Propagation from Meteorological to Hydrological and
Agricultural Drought in the Huaihe River Basin with Machine Learning Methods. Remote Sensing, 15(23):5524, doi:10.3390/rs15235524.
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- Hauk, Markus, Wilms, Josefine, Sulzbach, Roman, Panafidina, Natalia, Hart-Davis, Michael, Dahle, Christoph, Müller, Vitali,
Murböck, Michael, and Flechtner, Frank, 2023. Satellite Gravity Field Recovery Using Variance-Covariance Information
From Ocean Tide Models. Earth and Space Science, 10(10):e2023EA003098, doi:10.1029/2023EA003098.
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- He, Meilin, Li, Zhao, Jiang, Weiping, Pan, Yuanjin, Jiao, Jiashuang, and Xiao, Yixin, 2023. Seasonal and Interannual Fluctuations
of Glacier Mass Balance and Climate Response Processes on the Tibetan Plateau Based on GRACE/GRACE-FO. IEEE Transactions
on Geoscience and Remote Sensing, 61:3280714, doi:10.1109/TGRS.2023.3280714.
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- He, Jianhui, Astafyeva, Elvira, Yue, Xinan, Pedatella, Nicholas M., Lin, Dong, Fuller-Rowell, Timothy J., Fedrizzi, Mariangel,
Codrescu, Mihail, Doornbos, Eelco, Siemes, Christian, Bruinsma, Sean, Pitout, Frederic, and Kubaryk, Adam, 2023. Comparison
of Empirical and Theoretical Models of the Thermospheric Density Enhancement During the 3-4 February 2022 Geomagnetic Storm.
Space Weather, 21(9):e2023SW003521, doi:10.1029/2023SW003521.
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- Heki, Kosuke and Jin, Shuanggen, 2023. Geodetic study on earth surface loading with GNSS and GRACE. Satellite Navigation,
4(1):24, doi:10.1186/s43020-023-00113-6.
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- Hu, Ying, Chao, Nengfang, Yang, Yong, Wang, Jiangyuan, Yin, Wenjie, Xie, Jingkai, Duan, Guangyao, Zhang, Menglin, Wan, Xuewen,
Li, Fupeng, Wang, Zhengtao, and Ouyang, Guichong, 2023. Integrating GRACE/GRACE Follow-On and Wells Data to Detect Groundwater
Storage Recovery at a Small-Scale in Beijing Using Deep Learning. Remote Sensing, 15(24):5692, doi:10.3390/rs15245692.
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- Huan, Changmin, Wang, Fengwei, Zhou, Shijian, and Qiu, Xiaomeng, 2023. Filtering GRACE temporal gravity field solutions using
ensemble empirical mode decomposition approach. Frontiers in Earth Science, 11:1132862, doi:10.3389/feart.2023.1132862.
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- Huang, Zhiyong, Yeh, Pat J. -F., Jiao, Jiu Jimmy, Luo, Xin, Pan, Yun, Long, Yuannan, Zhang, Chong, and Zheng, Longqun, 2023.
A New Approach for Assessing Groundwater Recharge by Combining GRACE and Baseflow With Case Studies in Karst Areas of Southwest
China. Water Resources Research, 59(2):e2022WR032091, doi:10.1029/2022WR032091.
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- Huang, Jia, Cao, Lianhai, Wang, Lei, Liu, Liwei, Yu, Baobao, and Han, Long, 2023. Identification and Spatiotemporal Migration
Analysis of Groundwater Drought Events in the North China Plain. Atmosphere, 14(6):961, doi:10.3390/atmos14060961.
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- Huang, Haijun, Feng, Guanbin, Cao, Yeer, Feng, Guanning, Dai, Zhikai, Tian, Peizhi, Wei, Juncheng, and Cai, Xitian, 2023.
Simulation and Driving Factor Analysis of Satellite-Observed Terrestrial Water Storage Anomaly in the Pearl River Basin Using
Deep Learning. Remote Sensing, 15(16):3983, doi:10.3390/rs15163983.
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- Huarcaya, Victor, Dovale Álvarez, Miguel, Yamamoto, Kohei, Yang, Yichao, Gozzo, Stefano, Mart\'ınez Cano, Pablo,
Mehmet, Moritz, Esteban Delgado, Juan José, Jia, Jianjun, and Heinzel, Gerhard, 2023. Single-Element Dual-Interferometer
for Precision Inertial Sensing: Sub-Picometer Structural Stability and Performance as a Reference for Laser Frequency Stabilization.
Sensors, 23(24):9758, doi:10.3390/s23249758.
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- Humphrey, Vincent, Rodell, Matthew, and Eicker, Annette, 2023. Using Satellite-Based Terrestrial Water Storage Data: A Review.
Surveys in Geophysics, 44(5):1489–1517, doi:10.1007/s10712-022-09754-9.
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- Iorfida, Elisabetta, Daras, Ilias, Haagmans, Roger, and Strømme, Anja, 2023. Swarm A and C Accelerometers: Data Validation
and Scientific Interpretation. Earth and Space Science, 10(2):e2022EA002458, doi:10.1029/2022EA002458.
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- Jäggi, Adria, Meyer, Ulrich, Lasser, Martin, Jenny, Barbara, Lopez, Teodolina, Flechtner, Frank, Dahle, Christoph, Förste,
Christoph, Mayer-Gürr, Torsten, Kvas, Andreas, Lemoine, Jean-Michel, Bourgogne, Stéphane, Weigelt, Matthias, and
Groh, Andreas, 2023. International Combination Service for Time-Variable Gravity Fields (COST-G). In Freymueller, Jeffrey
T. and Sánchez, Laura (editors), Beyond 100: The Next Century in Geodesy, pp. 57–65, Springer International
Publishing, Cham.
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- Jeon, Taehwan, Seo, Ki-Weon, and Han, Shin-Chan, 2023. Impact of the solid Earth mass adjustment by the 2011 Tohoku-Oki earthquake
on the regional sea level and hydrological mass change recovery from GRACE. Geophysical Journal International, 235(2):1373–1383,
doi:10.1093/gji/ggad307.
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- Jia, Guodong, Luo, Weihua, Yu, Xiao, Zhu, Zhengping, and Chang, Shanshan, 2023. Determining the Day-to-Day Occurrence of Low-Latitude
Scintillation in Equinoxes at Sanya during High Solar Activities (2012-2013). Atmosphere, 14(8):1242, doi:10.3390/atmos14081242.
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- Jian, Guangyu, Wang, Nan, Xu, Chuang, Lin, Jiayi, and Li, Meng, 2023. A GRACE/GFO Empirical Low-Pass Filter to Extract the
Mass Changes in Nicaragua. Remote Sensing, 15(11):2805, doi:10.3390/rs15112805.
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- Jian, Guangyu, Xu, Chuang, Zou, Fang, and Huang, Bo, 2023. A novel GRACE reconstructive filter to extract the mass changes
in Madagascar. Geophysical Journal International, 235(2):1493–1503, doi:10.1093/gji/ggad316.
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- Jian, Guangyu, Xu, Chuang, and Yao, Chaolong, 2023. Improving mass change estimation in Panama with the GRACE/GFO gravity
field using the variational mode decomposition. Frontiers in Earth Science, 11:1199945, doi:10.3389/feart.2023.1199945.
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- Jiang, Wei, Ji, Xuan, Li, Yungang, Luo, Xian, Yang, Luyi, Ming, Wenting, Liu, Chang, Yan, Siyi, Yang, Chuanjian, and Sun,
Cezong, 2023. Modified flood potential index (MFPI) for flood monitoring in terrestrial water storage depletion basin using
GRACE estimates. Journal of Hydrology, 616:128765, doi:10.1016/j.jhydrol.2022.128765.
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- Jiao, Jiashuang, Pan, Yuanjin, Zhang, Xiaohong, Shum, C. K., Zhang, Yu, and Ding, Hao, 2023. Spatially heterogeneous
nonlinear signal in Antarctic ice-sheet mass loss revealed by GRACE and GPS. Geophysical Journal International, 233(2):826–838,
doi:10.1093/gji/ggac485.
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- Ju, Jiali, Wu, Chuanhao, Li, Jiayun, J. -F. Yeh, Pat, and Hu, Bill X., 2023. Global evaluation of model agreement and uncertainty
in terrestrial water storage simulations from ISIMIP 2b framework. Journal of Hydrology, 617:129137, doi:10.1016/j.jhydrol.2023.129137.
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- Karimi, Hamed, Iran-Pour, Siavash, Amiri-Simkooei, Alireza, and Babadi, Masoud, 2023. A gap-filling algorithm selection strategy
for GRACE and GRACE Follow-On time series based on hydrological signal characteristics of the individual river basins. Journal
of Geodetic Science, 13(1), doi:10.1515/jogs-2022-0129.
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- Khaki, Mehdi, 2023. Land Surface Model Calibration Using Satellite Remote Sensing Data. Sensors, 23(4):1848, doi:10.3390/s23041848.
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- Khaki, Mehdi, Han, Shin-Chan, Ghobadi-Far, Khosro, Yeo, In-Young, and Tangdamrongsub, Natthachet, 2023. Assimilation of GRACE
Follow-On Inter-Satellite Laser Ranging Measurements Into Land Surface Models. Water Resources Research, 59(3):e2022WR032432,
doi:10.1029/2022WR032432.
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- Khorrami, Behnam, Gorjifard, Shahram, Ali, Shoaib, and Feizizadeh, Bakhtiar, 2023. Correction to: Local-scale monitoring of
evapotranspiration based on downscaled GRACE observations and remotely sensed data: An application of terrestrial water balance
approach. Earth Science Informatics, 16(2):1947–1947, doi:10.1007/s12145-023-00989-7.
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- Khorrami, Behnam, Gorjifard, Shahram, Ali, Shoaib, and Feizizadeh, Bakhtiar, 2023. Local-scale monitoring of evapotranspiration
based on downscaled GRACE observations and remotely sensed data: An application of terrestrial water balance approach. Earth
Science Informatics, 16(2):1329–1345, doi:10.1007/s12145-023-00964-2.
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- Khorrami, Mohammad, Shirzaei, Manoochehr, Ghobadi-Far, Khosro, Werth, Susanna, Carlson, Grace, and Zhai, Guang, 2023. Groundwater
Volume Loss in Mexico City Constrained by InSAR and GRACE Observations and Mechanical Models. Geophysical Research Letters,
50(5):e2022GL101962, doi:10.1029/2022GL101962.
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- Khorrami, Behnam, Ali, Shoaib, Abadi, Leila Hossein, and Jehanzaib, Muhammad, 2023. Spatio-temporal variations in characteristics
of terrestrial water storage and associated drought over different geographic regions of Türkiye. Earth Science Informatics,
16(1):717–731, doi:10.1007/s12145-022-00907-3.
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- Khorrami, Behnam, Pirasteh, Saied, Ali, Shoaib, Sahin, Onur Gungor, and Vaheddoost, Babak, 2023. Statistical downscaling of
GRACE TWSA estimates to a 1-km spatial resolution for a local-scale surveillance of flooding potential. Journal of Hydrology,
624:129929, doi:10.1016/j.jhydrol.2023.129929.
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- Khorrami, Behnam, Ali, Shoaib, Sahin, Onur Gungor, and Gunduz, Orhan, 2023. Model-coupled GRACE-based analysis of hydrological
dynamics of drying Lake Urmia and its basin. Hydrological Processes, 37(5):e14893, doi:10.1002/hyp.14893.
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- Kinzie, Ryan, Bevilacqua, Riccardo, Seo, Dongeun, Conklin, John W., and Wass, Peter J., 2023. Dual quaternion-based dynamics
and control for gravity recovery missions. Acta Astronautica, 213:764–776, doi:10.1016/j.actaastro.2023.10.007.
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- Klos, A., Kusche, J., Leszczuk, G., Gerdener, H., Schulze, K., Lenczuk, A., and Bogusz, J., 2023. Introducing the Idea of
Classifying Sets of Permanent GNSS Stations as Benchmarks for Hydrogeodesy. Journal of Geophysical Research (Solid Earth),
128(9):e2023JB026988, doi:10.1029/2023JB026988.
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- Koch, Igor, Flury, Jakob, Naeimi, Majid, and Shabanloui, Akbar, 2023. LUH-GRACE2018: A New Time Series of Monthly Gravity
Field Solutions from GRACE. In Freymueller, Jeffrey T. and Sánchez, Laura (editors), Beyond 100: The Next Century
in Geodesy, pp. 67–75, Springer International Publishing, Cham.
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- Kornfeld, Richard P., Arnold, Bradford W., Gross, Michael A., Dahya, Neil T., Klipstein, William M., Gath, Peter F., and Bettadpur,
Srinivas, 2023. Correction: GRACE-FO: The Gravity Recovery and Climate Experiment Follow-On Mission. Journal of Spacecraft
and Rockets, 60(1):1–1, doi:10.2514/1.A34326.c1.
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- Kumari, Shomya, Kumar, Deepak, Kumar, Manish, and Pande, Chaitanya B., 2023. Modeling of standardized groundwater index of
Bihar using machine learning techniques. Physics and Chemistry of the Earth, 130:103395, doi:10.1016/j.pce.2023.103395.
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- Lecomte, Hugo, Rosat, Séverine, Mandea, Mioara, Boy, Jean-Paul, and Pfeffer, Julia, 2023. Uncertainty of Low-Degree
Space Gravimetry Observations: Surface Processes Versus Earth's Core Signal. Journal of Geophysical Research (Solid Earth),
128(7):e2023JB026503, doi:10.1029/2023JB026503.
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- Lecomte, Hugo, Rosat, Séverine, Mandea, Mioara, and Dumberry, Mathieu, 2023. Gravitational Constraints on the Earth's
Inner Core Differential Rotation. Geophysical Research Letters, 50(23):e2023GL104790, doi:10.1029/2023GL104790.
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- Lee, Kwonhee A. and Gunter, Brian C., 2023. Designing Satellite Constellations to Observe Earth's Time-Varying Gravity from
Clock Frequency Comparisons. Journal of Spacecraft and Rockets, 60(3):848–858, doi:10.2514/1.A35515.
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- Lee, Hoontaek, Jung, Martin, Carvalhais, Nuno, Trautmann, Tina, Kraft, Basil, Reichstein, Markus, Forkel, Matthias, and Koirala,
Sujan, 2023. Diagnosing modeling errors in global terrestrial water storage interannual variability. Hydrology and Earth
System Sciences, 27(7):1531–1563, doi:10.5194/hess-27-1531-2023.
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- Lei, Yonghui, Li, Rui, Letu, Husi, and Shi, Jiancheng, 2023. Seasonal Variations of Recharge–Storage–Runoff Process
over the Tibetan Plateau. Journal of Hydrometeorology, 24(10):1619–1633, doi:10.1175/JHM-D-23-0045.1.
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- Li, Xianpao, Zhong, Bo, Li, Jiancheng, and Liu, Renli, 2023. Joint inversion of GNSS and GRACE/GFO data for terrestrial water
storage changes in the Yangtze River Basin. Geophysical Journal International, 233(3):1596–1616, doi:10.1093/gji/ggad014.
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- Li, Duo, Chang, Xin, Yu, Jianbo, Bai, Yanzheng, Wang, Chengrui, and Zhou, Zebing, 2023. A method and its validation for measuring
the absolute time-delay of the read-out system of a space electrostatic accelerometer. Review of Scientific Instruments,
94(3):034703, doi:10.1063/5.0130286.
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- Li, Xianpao, Zhong, Bo, Li, Jiancheng, and Liu, Renli, 2023. Inversion of terrestrial water storage changes from GNSS vertical
displacements using a priori constraint: A case study of the Yunnan Province, China. Journal of Hydrology, 617:129126,
doi:10.1016/j.jhydrol.2023.129126.
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- Li, Ruoxi, Lei, Jiuhou, Kusche, Jürgen, Dang, Tong, Huang, Fuqing, Luan, Xiaoli, Zhang, Shun-Rong, Yan, Maodong, Yang,
Ziyi, Liu, Feifan, and Dou, Xiankang, 2023. Large-Scale Disturbances in the Upper Thermosphere Induced by the 2022 Tonga Volcanic
Eruption. Geophysical Research Letters, 50(3):e2022GL102265, doi:10.1029/2022GL102265.
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- Li, Xianpao, Zhong, Bo, Li, Jiancheng, and Liu, Renli, 2023. Inversion of GNSS Vertical Displacements for Terrestrial Water
Storage Changes Using Slepian Basis Functions. Earth and Space Science, 10(2):e2022EA002608, doi:10.1029/2022EA002608.
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- Li, Wanqiu, Zhang, Chuanyin, Wang, Wei, Guo, Jinyun, Shen, Yingchun, Wang, Zhiwei, Bi, Jingxue, Guo, Qiuying, Zhong, Yulong,
Li, Wei, Zhu, Chengcheng, and Xu, Pengfei, 2023. Inversion of Regional Groundwater Storage Changes Based on the Fusion of
GNSS and GRACE Data: A Case Study of Shaanxi–Gansu–Ningxia. Remote Sensing, 15(2):520, doi:10.3390/rs15020520.
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- Li, Quanzhou, Pan, Yun, Zhang, Chong, and Gong, Huili, 2023. Quantifying Multi-Source Uncertainties in GRACE-Based Estimates
of Groundwater Storage Changes in Mainland China. Remote Sensing, 15(11):2744, doi:10.3390/rs15112744.
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- Li, Duoduo, Zhou, Xuhua, and Li, Kai, 2023. Centimeter-Level Orbit Determination of GRACE-C Using IGS-RTS Data. Remote
Sensing, 15(7):1832, doi:10.3390/rs15071832.
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- Li, Wenbo, Liu, Libo, Chen, Yiding, Xiao, Zhuowei, Le, Huijun, and Zhang, Ruilong, 2023. Improving the Extraction Ability
of Thermospheric Mass Density Variations From Observational Data by Deep Learning. Space Weather, 21(7):e2022SW003376,
doi:10.1029/2022SW003376.
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- Li, Pengao, Yu, Haiyang, Zhou, Peng, Zhang, Ping, and Wang, Ruili, 2023. Downscaling inversion of GRACE-derived groundwater
storage changes based on ensemble learning. International Journal of Digital Earth, 16(1):2998–3022, doi:10.1080/17538947.2023.2242316.
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- Li, Qin, Liu, Xiuguo, Zhong, Yulong, Wang, Mengmeng, Bai, Hongbing, and Xiao, Cuiyu, 2023. Assessing the interannual and subseasonal
variabilities in water storage using multi-source soil moisture products and GRACE/GRACE-FO satellites and its applications.
Journal of Hydrology, 627:130439, doi:10.1016/j.jhydrol.2023.130439.
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- Li, Xiaolong, Jin, Taoyong, Liu, Bingshi, Chao, Nengfang, Li, Fupeng, and Cai, Zuansi, 2023. The Influence of ENSO on the
Long-Term Water Storage Anomalies in the Middle-Lower Reaches of the Yangtze River Basin: Evaluation and Analysis. Earth
and Space Science, 10(10):e2023EA003007, doi:10.1029/2023EA003007.
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- Li, Congcong, Yu, Qiang, Zhang, Yongqiang, Ma, Ning, Tian, Jing, and Zhang, Xuanze, 2023. Dominant Drivers for Terrestrial
Water Storage Changes Are Different in Northern and Southern China. Journal of Geophysical Research (Atmospheres),
128(23):e2022JD038074, doi:10.1029/2022JD038074.
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- Li, Bailing and Rodell, Matthew, 2023. How Have Hydrological Extremes Changed over the Past 20 Years?. Journal of Climate,
36(24):8581–8599, doi:10.1175/JCLI-D-23-0199.1.
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- Liu, Kai, Li, Xueke, Wang, Shudong, and Zhang, Xiaoyuan, 2023. Unrevealing past and future vegetation restoration on the Loess
Plateau and its impact on terrestrial water storage. Journal of Hydrology, 617:129021, doi:10.1016/j.jhydrol.2022.129021.
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- Liu, Huiyuan, Xin, Xiaozhou, Su, Zhongbo, Zeng, Yijian, Lian, Ting, Li, Li, Yu, Shanshan, and Zhang, Hailong, 2023. Intercomparison
and evaluation of ten global ET products at site and basin scales. Journal of Hydrology, 617:128887, doi:10.1016/j.jhydrol.2022.128887.
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- Liu, Cao and Sun, WenKe, 2023. GRACE time-variable gravity and its application to geoscience: Quantitative analysis of relevant
literature. Earth and Planetary Physics, 7(2):295–309, doi:10.26464/epp2023022.
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- Liu, Qing, Xu, Yuyue, Chen, Jianli, and Cheng, Xing, 2023. Multi-source satellite reveals the heterogeneity in water storage
change over northwestern China in recent decades. Journal of Hydrology, 624:129953, doi:10.1016/j.jhydrol.2023.129953.
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- Liu, Yilin, Zhang, Yi, Zhao, Faqiang, Ding, Renwei, Zhao, Lihong, Niu, Yufen, Qu, Feifei, and Ling, Zilong, 2023. Multi-Source
SAR-Based Surface Deformation Monitoring and Groundwater Relationship Analysis in the Yellow River Delta, China. Remote
Sensing, 15(13):3290, doi:10.3390/rs15133290.
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- Liu, Sulan, Wu, Yunlong, Xu, Guodong, Cheng, Siyu, Zhong, Yulong, and Zhang, Yi, 2023. Characterizing the 2022 Extreme Drought
Event over the Poyang Lake Basin Using Multiple Satellite Remote Sensing Observations and In Situ Data. Remote Sensing,
15(21):5125, doi:10.3390/rs15215125.
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- Llovel, William, Balem, Kevin, Tajouri, Soumaia, and Hochet, Antoine, 2023. Cause of Substantial Global Mean Sea Level Rise
Over 2014-2016. Geophysical Research Letters, 50(19):e2023GL104709, doi:10.1029/2023GL104709.
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- Mardian, Jacob, Champagne, Catherine, Bonsal, Barrie, and Berg, Aaron, 2023. A Machine Learning Framework for Predicting and
Understanding the Canadian Drought Monitor. Water Resources Research, 59(8):e2022WR033847, doi:10.1029/2022WR033847.
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- McGirr, R., Tregoning, P., Allgeyer, S., McQueen, H., and Purcell, A. P., 2023. Interplay of Altitude, Ground Track Coverage,
Noise, and Regularization in the Spatial Resolution of GRACE Gravity Field Models. Journal of Geophysical Research (Solid
Earth), 128(1):e2022JB024330, doi:10.1029/2022JB024330.
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- Mehrnegar, Nooshin, Schumacher, Maike, Jagdhuber, Thomas, and Forootan, Ehsan, 2023. Making the Best Use of GRACE, GRACE-FO
and SMAP Data Through a Constrained Bayesian Data-Model Integration. Water Resources Research, 59(9):e2023WR034544,
doi:10.1029/2023WR034544.
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- Meng, Gaojia, Zhu, Guofeng, Liu, Jiawei, Zhao, Kailiang, Lu, Siyu, Li, Rui, Qiu, Dongdong, Jiao, Yinying, Chen, Longhu, and
Sun, Niu, 2023. GRACE Data Quantify Water Storage Changes in the Shiyang River Basin, an Inland River in the Arid Zone. Remote
Sensing, 15(13):3209, doi:10.3390/rs15133209.
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- Meyer, U., Lasser, M., Dahle, C., Förste, C., Behzadpour, S., Koch, I., and Jäggi, A., 2023. Combined monthly GRACE-FO
gravity fields for a Global Gravity-based Groundwater Product. Geophysical Journal International, 236(1):456–469,
doi:10.1093/gji/ggad437.
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- Michailovsky, Claire I., Coerver, Bert, Mul, Marloes, and Jewitt, Graham, 2023. Investigating sources of variability in closing
the terrestrial water balance with remote sensing. Hydrology and Earth System Sciences, 27(23):4335–4354, doi:10.5194/hess-27-4335-2023.
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- Migliaccio, Federica, Reguzzoni, Mirko, Rosi, Gabriele, Braitenberg, Carla, Tino, Guglielmo Maria, Sorrentino, Fiodor, Mottini,
Sergio, Rossi, Lorenzo, Koç, Öykü, Batsukh, Khulan, Pivetta, Tommaso, Pastorutti, Alberto, and Zoffoli, Simona,
2023. The MOCAST+ Study on a Quantum Gradiometry Satellite Mission with Atomic Clocks. Surveys in Geophysics, 44(3):665–703,
doi:10.1007/s10712-022-09760-x.
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- Misfeldt, Malte, Müller, Vitali, Müller, Laura, Wegener, Henry, and Heinzel, Gerhard, 2023. Scale Factor Determination
for the GRACE Follow-On Laser Ranging Interferometer Including Thermal Coupling. Remote Sensing, 15(3):570, doi:10.3390/rs15030570.
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- Misfeldt, Malte, Bekal, Pallavi, Müller, Vitali, and Heinzel, Gerhard, 2023. Disturbances from single event upsets in
the GRACE follow-on laser ranging interferometer. Advances in Space Research, 72(6):2259–2269, doi:10.1016/j.asr.2023.06.038.
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- Mohamed, Ahmed, Abdelrady, Ahmed, Alarifi, Saad S., and Othman, Abdullah, 2023. Geophysical and Remote Sensing Assessment
of Chad's Groundwater Resources. Remote Sensing, 15(3):560, doi:10.3390/rs15030560.
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- Mohamed, Ahmed, Othman, Abdullah, Galal, Wael F., and Abdelrady, Ahmed, 2023. Integrated Geophysical Approach of Groundwater
Potential in Wadi Ranyah, Saudi Arabia, Using Gravity, Electrical Resistivity, and Remote-Sensing Techniques. Remote Sensing,
15(7):1808, doi:10.3390/rs15071808.
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- Mohamed, Ahmed and Alshehri, Fahad, 2023. Application of gravity and remote sensing data to groundwater potential in Wadi
Ar-Ramah, Saudi Arabia. Frontiers in Earth Science, 11:1227691, doi:10.3389/feart.2023.1227691.
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- Morrow, Rosemary, Fu, Lee-Lueng, Rio, Marie-Héléne, Ray, Richard, Prandi, Pierre, Le Traon, Pierre-Yves, and
Benveniste, Jérôme, 2023. Ocean Circulation from Space. Surveys in Geophysics, 44(5):1243–1286,
doi:10.1007/s10712-023-09778-9.
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- Moudgil, Pragay Shourya and Rao, G. Srinivasa, 2023. Groundwater levels estimation from GRACE/GRACE-FO and hydro-meteorological
data using deep learning in Ganga River basin, India. Environmental Earth Sciences, 82(19):441, doi:10.1007/s12665-023-11137-1.
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- Mukhtar, N. A. A., Din, A. H. M., Zulkifli, N. A., Hamden, M. H., Omar, A. H., and Hamid,
A. I. A., 2023. Evaluation of Groundwater Storage Changes Using Satellite Gravimetry Mission in Peninsular Malaysia.
ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 48W6:253–259,
doi:10.5194/isprs-archives-XLVIII-4-W6-2022-253-2023.
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- Murböck, Michael, Abrykosov, Petro, Dahle, Christoph, Hauk, Markus, Pail, Roland, and Flechtner, Frank, 2023. In-Orbit
Performance of the GRACE Accelerometers and Microwave Ranging Instrument. Remote Sensing, 15(3):563, doi:10.3390/rs15030563.
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- Nazari, Aref, Zaryab, Abdulhalim, and Ahmadi, Abdullah, 2023. Estimation of groundwater storage change in the Helmand River
Basin (Afghanistan) using GRACE satellite data. Earth Science Informatics, 16(1):579–589, doi:10.1007/s12145-022-00899-0.
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- Nias, Isabel J., Nowicki, Sophie, Felikson, Denis, and Loomis, Bryant, 2023. Modeling the Greenland Ice Sheet's Committed
Contribution to Sea Level During the 21st Century. Journal of Geophysical Research (Earth Surface), 128(2):e2022JF006914,
doi:10.1029/2022JF006914.
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- Nie, Shengkun, Zheng, Wei, Yin, Wenjie, Zhong, Yulong, Shen, Yifan, and Li, Kezhao, 2023. Improved the Characterization of
Flood Monitoring Based on Reconstructed Daily GRACE Solutions over the Haihe River Basin. Remote Sensing, 15(6):1564,
doi:10.3390/rs15061564.
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- Odinaev, Mirshakar, Hu, Zengyun, Chen, Xi, Mao, Min, Zhang, Zhuo, Zhang, Hao, and Wang, Meijun, 2023. Dynamic Changes of Terrestrial
Water Cycle Components over Central Asia in the Last Two Decades from 2003 to 2020. Remote Sensing, 15(13):3318, doi:10.3390/rs15133318.
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- Otosaka, Inès N., Horwath, Martin, Mottram, Ruth, and Nowicki, Sophie, 2023. Mass Balances of the Antarctic and Greenland
Ice Sheets Monitored from Space. Surveys in Geophysics, 44(5):1615–1652, doi:10.1007/s10712-023-09795-8.
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- Pan, Yuanjin, Jiang, Weiping, Ding, Hao, Shum, C. K., Jiao, Jiashuang, and Li, Jiangtao, 2023. Intradecadal Fluctuations
and Three-Dimensional Crustal Kinematic Deformation of the Tianshan and Pamir Derived From Multi-Geodetic Imaging. Journal
of Geophysical Research (Solid Earth), 128(1):e2022JB025325, doi:10.1029/2022JB025325.
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- Park, Jaeheung, van den IJssel, Jose, and Siemes, Christian, 2023. Dayside Upper-Thermospheric Density Fluctuations as Observed
by GRACE and GRACE-FO at \ensuremath\sim500 km Height. Journal of Geophysical Research (Space Physics), 128(1):e2022JA030976,
doi:10.1029/2022JA030976.
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- Partyka, Aleksander, Nastula, Jolanta, Sliwinska, Justyna, Kur, Tomasz, and Winska, Malgorzata, 2023. Analysis of The Itsg-Grace
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- Peng, Bo, Wu, Kailan, Yang, Yichao, Wu, Jingui, Guo, Zhongkai, Wang, Yun, Zheng, Yongchao, and Lin, Xuling, 2023. Studying
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- Peralta-Ferriz, Cecilia and Woodgate, Rebecca A., 2023. Arctic and Sub-Arctic Mechanisms Explaining Observed Increasing Northward
Flow Through the Bering Strait and Why Models May Be Getting It Wrong. Geophysical Research Letters, 50(24):e2023GL104697,
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- Petch, Samantha, Dong, Bo, Quaife, Tristan, King, Robert P., and Haines, Keith, 2023. Water and energy budgets over hydrological
basins on short and long timescales. Hydrology and Earth System Sciences, 27(9):1723–1744, doi:10.5194/hess-27-1723-2023.
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- Pfaffenzeller, Nikolas and Pail, Roland, 2023. Small satellite formations and constellations for observing sub-daily mass
changes in the Earth system. Geophysical Journal International, 234(3):1550–1567, doi:10.1093/gji/ggad132.
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- Pfeffer, Julia, Cazenave, Anny, Blazquez, Alejandro, Decharme, Bertrand, Munier, Simon, and Barnoud, Anne, 2023. Assessment
of pluri-annual and decadal changes in terrestrial water storage predicted by global hydrological models in comparison with
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- Piretzidis, Dimitrios, Kotsakis, Christopher, Mertikas, Stelios P., and Sideris, Michael G., 2023. Spherical harmonic coefficients
of isotropic polynomial functions with applications to gravity field modeling. Journal of Geodesy, 97(11):103, doi:10.1007/s00190-023-01797-z.
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- Pirooznia, Mahmoud, Raoofian Naeeni, Mehdi, and Tourian, Mohammad J., 2023. Modeling total surface current in the Persian
Gulf and the Oman Sea by combination of geodetic and hydrographic observations and assimilation with in situ current meter
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- Ponder, Brandon M., Ridley, Aaron J., Goel, Ankit, and Bernstein, D. S., 2023. Improving Forecasting Ability of GITM
Using Data-Driven Model Refinement. Space Weather, 21(3):e2022SW003290, doi:10.1029/2022SW003290.
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- Pulla, Sarva T., Yasarer, Hakan, and Yarbrough, Lance D., 2023. GRACE Downscaler: A Framework to Develop and Evaluate Downscaling
Models for GRACE. Remote Sensing, 15(9):2247, doi:10.3390/rs15092247.
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- Ren, Wenhao, Gao, Yanyan, Qian, Hui, Ma, Yaoming, Su, Zhongbo, Ma, Weiqiang, Liu, Yu, and Xu, Panpan, 2023. Spatiotemporal
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- Ren, Ding, Pan, Yuanjin, Liu, Lilong, Huang, Liangke, Zhou, Lv, Jiao, Jiashuang, and Li, Junyu, 2023. Interannual hydrological
variability in the Mississippi River Basin based on contemporary geodetic measurements and land surface models. Journal
of Hydrology, 626:130232, doi:10.1016/j.jhydrol.2023.130232.
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- Renna Camacho, Clyvihk, Getirana, Augusto, Rotunno Filho, Otto Corrêa, and Mourão, Maria Antonieta A., 2023.
Large-Scale Groundwater Monitoring in Brazil Assisted With Satellite-Based Artificial Intelligence Techniques. Water Resources
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- Renu, S. and Pramada, S. K., 2023. Use of grace and in-situ data to characterize groundwater status along the coast of
Kerala. Journal of Earth System Science, 132(3):137, doi:10.1007/s12040-023-02150-w.
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- Rodell, M. and B. Li, 2023. Changing intensity of hydroclimatic extreme events revealed by GRACE and GRACE-FO. Nature Water,
1(3):241–248, doi:10.1038/s44221-023-00040-5.
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- Rodell, M. and J.T. Reager, 2023. Water cycle science enabled by the GRACE and GRACE-FO satellite missions. Nature Water,
1(1):47–59, doi:10.1038/s44221-022-00005-0.
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- Rossi, L., Reguzzoni, M., Ko\cc, Ö., Rosi, G., and Migliaccio, F., 2023. Assessment of gravity field recovery from a
quantum satellite mission with atomic clocks and cold atom gradiometers. Quantum Science and Technology, 8(1):014009,
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- Sai, K. N., Galodha, A., Jain, P., and Sharma, D., 2023. Deep and Machine Learning for Monitoring Groundwater Storage
Basins and Hydrological Changes Using the Gravity Recovery and Climate Experiment (grace) Satellite Mission and SENTINEL-1
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and Spatial Information Sciences, 48W2:1265–1270, doi:10.5194/isprs-archives-XLVIII-1-W2-2023-1265-2023.
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- Sambridge, Callum S., Roberts, Lyle E., Wade, Andrew R., Valliyakalayil, Jobin T., Rees, Emily Rose, Chabbra, Namisha, Zhang,
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- Sampietro, Daniele, Capponi, Martina, Thébault, Erwan, and Gailler, Lydie, 2023. An Empirical Method for the Optimal
Setting of the Potential Fields Inverse Problem. Geophysical Prospecting, 71(2):350–365, doi:10.1111/1365-2478.13305.
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- Satish Kumar, K., AnandRaj, P., Sreelatha, K., and Sridhar, Venkataramana, 2023. Reconstruction of GRACE terrestrial water
storage anomalies using Multi-Layer Perceptrons for South Indian River basins. Science of the Total Environment, 857:159289,
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- Scanlon, Bridget R., Fakhreddine, Sarah, Rateb, Ashraf, de Graaf, Inge, Famiglietti, Jay, Gleeson, Tom, Grafton, R. Quentin,
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of groundwater in a resilient water future. Nature Reviews Earth and Environment, 4(2):87–101, doi:10.1038/s43017-022-00378-6.
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- Schrapffer, Anthony, Polcher, Jan, Sörensson, Anna, and Fita, Llu\'ıs, 2023. Introducing a new floodplain scheme
in ORCHIDEE (version 7885): validation and evaluation over the Pantanal wetlands. Geoscientific Model Development,
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- Schreiter, Lucas, Stolle, Claudia, Rauberg, Jan, Kervalishvili, Guram, van den Ijssel, Jose, Arnold, Daniel, Xiong, Chao,
and Callegare, Andyara, 2023. Topside Ionosphere Sounding From the CHAMP, GRACE, and GRACE-FO Missions. Radio Science,
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- Seck, Alimatou and Welty, Claire, 2023. Quantifying groundwater storage dynamics in the Chesapeake Bay watershed (USA) using
a large-scale integrated hydrologic model with detailed three-dimensional subsurface representation. Hydrogeology Journal,
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- Shao, Chunxiu and Liu, Yonghe, 2023. Analysis of Groundwater Storage Changes and Influencing Factors in China Based on GRACE
Data. Atmosphere, 14(2):250, doi:10.3390/atmos14020250.
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- Shen, Ziyu, Shen, Wenbin, Xu, Xinyu, Zhang, Shuangxi, Zhang, Tengxu, He, Lin, Cai, Zhan, Xiong, Si, and Wang, Lingxuan, 2023.
A Method for Measuring Gravitational Potential of Satellite's Orbit Using Frequency Signal Transfer Technique between Satellites.
Remote Sensing, 15(14):3514, doi:10.3390/rs15143514.
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- Shen, Zhanglin, Chen, Qiujie, and Shen, Yunzhong, 2023. An Improved Acceleration Approach by Utilizing K-Band Range Rate Observations.
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- Shi, Chuang, Guo, Shiwei, Fan, Lei, Gu, Shengfeng, Fang, Xinqi, Zhou, Linghao, Zhang, Tao, Li, Zhen, Li, Min, Li, Wenwen,
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- Shihora, Linus, Balidakis, Kyriakos, Dill, Robert, and Dobslaw, Henryk, 2023. Assessing the stability of AOD1B atmosphere-ocean
non-tidal background modelling for climate applications of satellite gravity data: long-term trends and 3-hourly tendencies.
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- Siemes, Christian, Borries, Claudia, Bruinsma, Sean, Fernandez-Gomez, Isabel, Hladczuk, Natalia, den IJssel, Josevan, Kodikara,
Timothy, Vielberg, Kristin, and Visser, Pieter, 2023. New thermosphere neutral mass density and crosswind datasets from CHAMP,
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- Singh, Vishal Kumar, Pandey, H. K., and Singh, Sudhir Kumar, 2023. Groundwater storage change estimation using GRACE
data and Google Earth Engine: A basin scale study. Physics and Chemistry of the Earth, 129:103297, doi:10.1016/j.pce.2022.103297.
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- Singh, Vishal Kumar, Pandey, H. K., Singh, Sudhir Kumar, and Soni, Pramod, 2023. Groundwater analysis using Gravity Recovery,
Climate Experiment and Google Earth Engine: Bundelkhand region, India. Physics and Chemistry of the Earth, 130:103401,
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- Sliwinska, Justyna and Nastula, Jolanta, 2023. Assessing the impact of corrections included in the GRACE Level-3 data on gravimetric
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- Springer, Anne, Lopez, Teodolina, Owor, Michael, Frappart, Frédéric, and Stieglitz, Thomas, 2023. The Role of
Space-Based Observations for Groundwater Resource Monitoring over Africa. Surveys in Geophysics, 44(1):123–172,
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- Stober, Manfred, Hitziger, Thomas, Näke, Luisa, Heim, Johanna, and Hepperle, Jörg, 2023. Dreißig Jahre Eishöhenänderungen
am Swiss Camp (Grönland). Polarforschung, 91:95–104, doi:10.5194/polf-91-95-2023.
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- Sun, Jianchong, Hu, Litang, Chen, Fei, Sun, Kangning, Yu, Lili, and Liu, Xin, 2023. Downscaling Simulation of Groundwater
Storage in the Beijing, Tianjin, and Hebei Regions of China Based on GRACE Data. Remote Sensing, 15(6):1490, doi:10.3390/rs15061490.
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- Sun, Yu, Li, Yang, Guo, Xiang, and Guo, Jinyun, 2023. Estimating C$_30$ coefficients for GRACE/GRACE-FO time-variable gravity
field models using the GRACE-OBP approach. Journal of Geodesy, 97(3):20, doi:10.1007/s00190-023-01707-3.
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- Sun, Shang-Biao, Yan, Jian-Guo, Gao, Wu-Tong, Wang, Bo, Wang, Zhen, Ye, Mao, and Barriot, Jean-Pierre, 2023. Simulated Gravity
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- Szabó, Viktor and Osinska-Skotak, Katarzyna, 2023. Similarities and Differences in the Earth's Water Variations Signal
Provided by Grace and AMSR-E Observations Using Maximum Covariance Analysis at Various Land Cover Data Backgrounds. Artificial
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- Tamura, Yoshiaki, Kazama, Takahito, Nishiyama, Ryuichi, Matsuo, Koji, and Imanishi, Yuichi, 2023. Postseismic gravity changes
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- Tanaka, Yusaku, 2023. Coseismic Gravity Changes and Crustal Deformation Induced by the 2018 Fiji Deep-Focus Earthquake Observed
by GRACE and GRACE-FO Satellites. Remote Sensing, 15(2):495, doi:10.3390/rs15020495.
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- Tang, He, Zhang, Lan, and Sun, Wenke, 2023. Periodic surface loading using GRACE data for a layered viscoelastic earth model
based on a direct relationship between geoid and displacement. Geophysical Journal International, 235(1):778–795,
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- Tao, Hai, Al-Sulttani, Ahmed H., Salih, Sinan Q., Mohammed, Mustafa K. A., Khan, Mohammad Amir, Beyaztas, Beste Hamiye,
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- Tourian, Mohammad J., Saemian, Peyman, Ferreira, Vagner G., Sneeuw, Nico, Frappart, Frédéric, and Papa, Fabrice,
2023. A copula-supported Bayesian framework for spatial downscaling of GRACE-derived terrestrial water storage flux. Remote
Sensing of Environment, 295:113685, doi:10.1016/j.rse.2023.113685.
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- Touseef, Muhammad, Chen, Lihua, Chen, Hang, Gabriel, Hamza Farooq, Yang, Wenzhe, and Mubeen, Ammara, 2023. Enhancing Streamflow
Modeling by Integrating GRACE Data and Shared Socio-Economic Pathways (SSPs) with SWAT in Hongshui River Basin, China. Remote
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- Trautmann, Tina, Koirala, Sujan, Guentner, Andreas, Kim, Hyungjun, and Jung, Martin, 2023. Calibrating global hydrological
models with GRACE TWS: does river storage matter?. Environmental Research Communications, 5(8):081005, doi:10.1088/2515-7620/acece5.
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- Tucker, E. S., Nerem, R. S., and Loomis, B. D., 2023. Impacts of SLR Ground Station Geographic Distribution
on Time-Variable Gravity Recovery. Journal of Geophysical Research (Solid Earth), 128(9):e2023JB026638, doi:10.1029/2023JB026638.
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- Ukasha, Muhammad, Ramirez, Jorge A., and Niemann, Jeffrey D., 2023. An improved rescaling algorithm for estimating groundwater
depletion rates using the GRACE satellite. International Journal of Remote Sensing, 44(3):1069–1088, doi:10.1080/01431161.2023.2174387.
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- Vishwakarma, Bramha Dutt, Ziegler, Yann, Bamber, Jonathan L., and Royston, Sam, 2023. Separating GIA signal from surface mass
change using GPS and GRACE data. Geophysical Journal International, 232(1):537–547, doi:10.1093/gji/ggac336.
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- Wan, Xiangyu, You, Wei, Kusche, Jürgen, Li, Fupeng, Yang, Xinchun, Fan, Dongming, Pu, Lun, and Jiang, Zhongshan, 2023.
Evaluating different predictive strategies for filling the global GRACE/-FO terrestrial water storage anomalies gap. Journal
of Hydrology, 626:130216, doi:10.1016/j.jhydrol.2023.130216.
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- Wang, Pengfei, Wang, Song-Yun, Li, Jin, Chen, Jianli, and Qi, Zhaoxiang, 2023. Comparison of GRACE/GRACE-FO Spherical Harmonic
and Mascon Products in Interpreting GNSS Vertical Loading Deformations over the Amazon Basin. Remote Sensing, 15(1):252,
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- Wang, Ziyun, Zhang, Bao, Yao, Yibin, and Zhang, Wei, 2023. GRACE and mass budget method reveal decelerated ice loss in east
Greenland in the past decade. Remote Sensing of Environment, 286:113450, doi:10.1016/j.rse.2023.113450.
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- Wang, Wei, Shen, Yunzhong, Chen, Qiujie, and Chen, Tianyi, 2023. One-degree resolution mascon solution over Antarctic derived
from GRACE Level-2 data. Frontiers in Earth Science, 11:1129628, doi:10.3389/feart.2023.1129628.
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- Wang, Youcun, Li, Min, Jiang, Kecai, Li, Wenwen, Zhao, Qile, Fang, Rongxin, Wei, Na, and Mu, Renhai, 2023. Improving Precise
Orbit Determination of LEO Satellites Using Enhanced Solar Radiation Pressure Modeling. Space Weather, 21(1):e2022SW003292,
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- Wang, Shan, Cui, Geng, Li, Xiaojie, Liu, Yan, Li, Xiaofeng, Tong, Shouzheng, and Zhang, Mingye, 2023. GRACE Satellite-Based
Analysis of Spatiotemporal Evolution and Driving Factors of Groundwater Storage in the Black Soil Region of Northeast China.
Remote Sensing, 15(3):704, doi:10.3390/rs15030704.
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- Wang, Xuecheng, Zheng, Hua, Zhu, Xiao-Hua, Zhao, Ruixiang, Wang, Min, Chen, Juntian, Ma, Yunlong, Nan, Feng, and Yu, Fei,
2023. Validation and Evaluation of GRACE-FO Estimates with In Situ Bottom Pressure Array Measurements in the South China Sea.
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- Wang, Shusen, Li, Junhua, and Russell, Hazen A. J., 2023. Methods for Estimating Surface Water Storage Changes and Their
Evaluations. Journal of Hydrometeorology, 24(3):445–461, doi:10.1175/JHM-D-22-0098.1.
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- Wang, Kan, El-Mowafy, Ahmed, and Yang, Xuhai, 2023. LEO Satellite Clock Modeling and Its Benefits for LEO Kinematic POD. Remote
Sensing, 15(12):3149, doi:10.3390/rs15123149.
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- Wang, Jie, Xu, Duanyang, and Li, Hongfei, 2023. Constructing GRACE-Based 1 km Resolution Groundwater Storage Anomalies in
Arid Regions Using an Improved Machine Learning Downscaling Method: A Case Study in Alxa League, China. Remote Sensing,
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- Wang, Lin, Huang, Gang, Chen, Wen, and Wang, Ting, 2023. Super Drought under Global Warming: Concept, Monitoring Index, and
Validation. Bulletin of the American Meteorological Society, 104(5):E943–E969, doi:10.1175/BAMS-D-22-0182.1.
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- Wang, Hongbo, Zhang, Mingjiang, and Xiong, Jianning, 2023. Effects of Solar Extreme Ultraviolet Radiation on Thermospheric
Neutral Density (in Chinese). Chinese Journal of Space Science, 43(1):87–100, doi:10.11728/cjss2023.01.211217130.
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- Wang, Wei, Shen, Yunzhong, Chen, Qiujie, and Wang, Fengwei, 2023. Unprecedented mass gain over the Antarctic ice sheet between
2021 and 2022 caused by large precipitation anomalies. Environmental Research Letters, 18(12):124012, doi:10.1088/1748-9326/ad0863.
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- Wang, Fei, Lai, Hexin, Li, Yanbin, Feng, Kai, Tian, Qingqing, Guo, Wenxian, Qu, Yanping, and Yang, Haibo, 2023. Spatio-temporal
evolution and teleconnection factor analysis of groundwater drought based on the GRACE mascon model in the Yellow River Basin.
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- Wang, Mingxiu, Wyatt, Briana M., and Ochsner, Tyson E., 2023. Accurate statistical seasonal streamflow forecasts developed
by incorporating remote sensing soil moisture and terrestrial water storage anomaly information. Journal of Hydrology,
626:130154, doi:10.1016/j.jhydrol.2023.130154.
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- Wang, Linju, Zhang, Menglin, Yin, Wenjie, Li, Yi, Hu, Litang, and Fan, Linlin, 2023. Improved Drought Characteristics in the
Pearl River Basin Based on Reconstructed GRACE Solution with Enhanced Temporal Resolution. Remote Sensing, 15(19):4849,
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- Wang, Hong-bo, Zhang, Ming-jiang, and Xiong, Jian-ning, 2023. Thermospheric Mass Densities' Response to the Solar Radiation's
Short-term Variation with 27-d Period. Progress in Astronomy, 41:401–414, doi:10.3969/j.issn.1000-8349.2023.03.08.
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- Wang, Jingqi, Ding, Kaihua, Chen, Xiaodong, Guo, Rumeng, and Sun, Heping, 2023. Influence of South-to-North Water Diversion
on Land Subsidence in North China Plain Revealed by Using Geodetic Measurements. Remote Sensing, 16(1):162, doi:10.3390/rs16010162.
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- Wang, Jiamei, Ouyang, Wei, Liu, Xinyi, and Wang, Lei, 2023. Monitoring hydrological changes with satellite data: Spring thaw's
effect on soil moisture and groundwater in seasonal Freezing-Thawing zones. Journal of Hydrology, 626:130365, doi:10.1016/j.jhydrol.2023.130365.
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- Wei, Chunbo, Shao, Kai, Gu, Defeng, Zhang, Zheng, Zhu, Jubo, An, Zicong, and Wang, Jian, 2023. Enhanced orbit and baseline
determination for formation-flying LEO satellites with spaceborne accelerometer measurements. Journal of Geodesy, 97(7):64,
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- Wei, Changshou, Du, Zhixing, Zhou, Maosheng, Zhang, Minggang, Sun, Yuchao, and Liu, Yuzhen, 2023. Spatiotemporal analysis
of groundwater storage variations based on extreme-point symmetric mode decomposition and independent component analysis in
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- Weimer, Daniel R., Mehta, Piyush M., Licata, R. J., and Tobiska, W. K., 2023. Global Variations in the Time Delays
Between Polar Ionospheric Heating and the Neutral Density Response. Space Weather, 21(4):e2022SW003410, doi:10.1029/2022SW003410.
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- Welikanna, Duminda R. and Jin, Shengye, 2023. Investigating ground deformation due to a series of collapse earthquakes by
means of the PS-InSAR technique and Sentinel 1 data in Kandy, Sri Lanka. Journal of Applied Remote Sensing, 17:014507,
doi:10.1117/1.JRS.17.014507.
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- Wen, Zhiqiang, Rao, Weilong, and Sun, Wenke, 2023. Contribution of loading deformation to the GNSS vertical velocity field
in the Chinese mainland. Geophysical Journal International, 233(3):1655–1670, doi:10.1093/gji/ggac508.
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- Winska, Malgorzata, 2023. Geodetic residual time series: A combined series by minimization of their internal noise level.
Frontiers in Earth Science, 11:1138410, doi:10.3389/feart.2023.1138410.
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- Wu, Meifang, Wang, Kan, Liu, Jiawei, and Zhu, Yuncong, 2023. Relativistic effects of LEO satellite and its impact on clock
prediction. Measurement Science and Technology, 34(9):095005, doi:10.1088/1361-6501/acd545.
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- Wu, Rong, Zhang, Chengyuan, Li, Yuli, Zhu, Chenrui, Lu, Liang, Cui, Chenfeng, Zhang, Zhitao, Wang, Shuo, Chu, Jiangdong, and
Li, Yongxiang, 2023. Assessment of Variability and Attribution of Drought Based on GRACE in China from Three Perspectives:
Water Storage Component, Climate Change, Water Balance. Remote Sensing, 15(18):4426, doi:10.3390/rs15184426.
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- Wu, Kailan, Wu, Jingui, Peng, Bo, Jia, Jianjun, Luo, Honggang, Wang, Yun, Zheng, Yongchao, Yang, Yichao, Lin, Xuling, and
Lau, Yun-Kau, 2023. Tilt-to-Length Coupling Analysis of an Off-Axis Optical Bench Design for NGGM. Remote Sensing,
15(15):3915, doi:10.3390/rs15153915.
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- Xiang, Longwei, Wang, Hansheng, Steffen, Holger, Jiang, Liming, Shen, Qiang, Jia, Lulu, Su, Zhenfeng, Wang, Wenliang, Deng,
Fan, Qiao, Baojin, Cui, Haifu, and Gao, Peng, 2023. Two Decades of Terrestrial Water Storage Changes in the Tibetan Plateau
and Its Surroundings Revealed through GRACE/GRACE-FO. Remote Sensing, 15(14):3505, doi:10.3390/rs15143505.
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- Xiang, Longwei, Steffen, Holger, and Wang, Hansheng, 2023. Comparison of Terrestrial Water Storage Changes in the Tibetan
Plateau and Its Surroundings Derived from Gravity Recovery and Climate Experiment (GRACE) Solutions of Different Processing
Centers. Remote Sensing, 15(22):5417, doi:10.3390/rs15225417.
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- Xiao, Cuiyu, Zhong, Yulong, Feng, Wei, Gao, Wei, Wang, Zhonghua, Zhong, Min, and Ji, Bing, 2023. Monitoring the Catastrophic
Flood With GRACE-FO and Near-Real-Time Precipitation Data in Northern Henan Province of China in July 2021. IEEE Journal
of Selected Topics in Applied Earth Observations and Remote Sensing, 16:89–101, doi:10.1109/JSTARS.2022.3223790.
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- Xiao, Cuiyu, Zhong, Yulong, Wu, Yunlong, Bai, Hongbing, Li, Wanqiu, Wu, Dingcheng, Wang, Changqing, and Tian, Baoming, 2023.
Applying Reconstructed Daily Water Storage and Modified Wetness Index to Flood Monitoring: A Case Study in the Yangtze River
Basin. Remote Sensing, 15(12):3192, doi:10.3390/rs15123192.
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- Xiao, Jianyong, Xie, Binggeng, Zhou, Kaichun, Liang, Chao, Li, Junhan, Xie, Jing, and Zhang, Xuemao, 2023. Bidirectional dependency
between vegetation and terrestrial water storage in China. Journal of Hydrology, 626:130313, doi:10.1016/j.jhydrol.2023.130313.
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- Xu, Li, Ferris, David, Huggins, Xander, Wong, Jefferson S., Mohan, Chinchu, Sadri, Sara, Chandanpurkar, Hrishikesh A., Sanyal,
Palash, and Famiglietti, James S., 2023. From coarse resolution to practical solution: GRACE as a science communication and
policymaking tool for sustainable groundwater management. Journal of Hydrology, 623:129845, doi:10.1016/j.jhydrol.2023.129845.
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- Xu, Qinbo, Zhou, Chun, Zhang, Linlin, Wang, Fan, Zhao, Wei, and Hu, Dunxin, 2023. Variability of the Deep Western Boundary
Current in the Northern Philippine Sea. Journal of Physical Oceanography, 53(8):2029–2041, doi:10.1175/JPO-D-23-0025.1.
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- Xu, Ming, Wan, Xiaoyun, Zhang, Xiangyu, and Yu, Hangtao, 2023. Difference analysis of ice sheet mass balance retrieved from
various Gravity Recovery and Climate Experiment time-variable gravity field models: a case study in Antarctica and Greenland.
Journal of Applied Remote Sensing, 17:028501, doi:10.1117/1.JRS.17.028501.
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- Xu, Guodong, Wu, Yunlong, Liu, Sulan, Cheng, Siyu, Zhang, Yi, Pan, Yuanjin, Wang, Lunche, Yu. Dokuchits, Emilia, and Nkwazema,
Oscar C., 2023. How 2022 extreme drought influences the spatiotemporal variations of terrestrial water storage in the Yangtze
River Catchment: Insights from GRACE-based drought severity index and in-situ measurements. Journal of Hydrology, 626:130245,
doi:10.1016/j.jhydrol.2023.130245.
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- Xu, Yuyue, Gun, Zhao, Zhao, Jianwei, Chen, Jianli, Liu, Qing, Cheng, Xing, Sutanudjaja, Edwin H., Wang, Jida, Liu, Hehua,
and Zhan, Wenfeng, 2023. Continuing Severe Water Shortage in the Water-Receiving Area of the South-To-North Water Diversion
Eastern Route Project From 2002 to 2020. Water Resources Research, 59(10):e2022WR034365, doi:10.1029/2022WR034365.
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- Yan, Zhengwen, Ran, Jiangjun, Xiao, Yun, Xu, Zheyu, Wu, Haotian, Deng, Xiao-Le, Du, Lan, and Zhong, Min, 2023. The Temporal
Improvement of Earth's Mass Transport Estimated by Coupling GRACE-FO With a Chinese Polar Gravity Satellite Mission. Journal
of Geophysical Research (Solid Earth), 128(9):e2023JB027157, doi:10.1029/2023JB027157.
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- Yang, Yuanyuan, Mu, Dapeng, Zhong, Min, Zhong, Yulong, and Yao, Yanli, 2023. Understanding the cause of sea level rise along
coastal zone for 2005-2021. Environmental Research Communications, 5(4):041001, doi:10.1088/2515-7620/acc91d.
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- Yang, Chengcheng, Cheng, Xuhua, and Qin, Jianhuang, 2023. Uncertainties of monthly ocean bottom pressure from Gravity Recovery
and Climate Experiment (GRACE): a case study at the Drake Passage. Geoscience Letters, 10(1):32, doi:10.1186/s40562-023-00288-5.
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- Yang, Zhilan, Zhang, Haoyue, Xu, Peng, and Luo, Ziren, 2023. Unsupervised Noise Reductions for Gravitational Reference Sensors
or Accelerometers Based on the Noise2Noise Method. Sensors, 23(13):6030, doi:10.3390/s23136030.
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- Yang, Xinchun, You, Wei, Tian, Siyuan, Jiang, Zhongshan, and Wan, Xiangyu, 2023. A Two-Step Linear Model to Fill the Data
Gap Between GRACE and GRACE-FO Terrestrial Water Storage Anomalies. Water Resources Research, 59(11):e2022WR034139,
doi:10.1029/2022WR034139.
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- Yang, Chengcheng, Cheng, Xuhua, von Storch, Jin-Song, Qin, Jianhuang, and Qiu, Bo, 2023. Interbasin Differences in Interannual
Variations of the Antarctic Circumpolar Current Transport. Journal of Geophysical Research (Oceans), 128(11):e2023JC020327,
doi:10.1029/2023JC020327.
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- Yazbeck, Joe and Rundle, John B., 2023. Predicting Short-Term Deformation in the Central Valley Using Machine Learning. Remote
Sensing, 15(2):449, doi:10.3390/rs15020449.
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- Yazdian, Hamed, Salmani-Dehaghi, Narjes, and Alijanian, Mohammadali, 2023. A spatially promoted SVM model for GRACE downscaling:
Using ground and satellite-based datasets. Journal of Hydrology, 626:130214, doi:10.1016/j.jhydrol.2023.130214.
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- Yin, Yu, Guo, Bin, Zhong, Yulong, Deng, Haijun, and Chang, Le, 2023. Can GRACE and CMIP6 historical data identify groundwater
drought in North China Plain?. Theoretical and Applied Climatology, 152(3-4):1203–1219, doi:10.1007/s00704-023-04441-0.
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- Yin, Peng, Mu, Dapeng, and Xu, Tianhe, 2023. Water Storage Variations Recovered from Global Navigation Satellite System Network
Using Spatial Constraints: A Case Study of the Contiguous United States. Remote Sensing, 15(24):5753, doi:10.3390/rs15245753.
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- Yin, Jiabo, Slater, Louise J., Khouakhi, Abdou, Yu, Le, Liu, Pan, Li, Fupeng, Pokhrel, Yadu, and Gentine, Pierre, 2023. GTWS-MLrec:
global terrestrial water storage reconstruction by machine learning from 1940 to present. Earth System Science Data,
15(12):5597–5615, doi:10.5194/essd-15-5597-2023.
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- Youm, Kookhyoun, Eom, Jooyoung, Seo, Ki-Weon, Chen, Jianli, Wilson, Clark R., and Oh, Seokhoon, 2023. High-resoltion surface
mass loads in the Amazon Basin combining GRACE and river routing model. Geophysical Journal International, 232(3):2105–2118,
doi:10.1093/gji/ggac439.
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- Yuan, Jun-Jun, Zhou, Shan-Shi, Tang, Cheng-Pan, Wu, Bin, Li, Kai, Hu, Xiao-Gong, and Liang, Er-Tao, 2023. Influence of Solar
Activity on Precise Orbit Prediction of LEO Satellites. Research in Astronomy and Astrophysics, 23(4):045005, doi:10.1088/1674-4527/acbe2b.
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- Zhang, Zhengang, Song, Changchun, Guo, Yuedong, He, Panxing, Chen, Ning, Liu, Jianzhao, Zhang, Yifei, Zuo, Yunjiang, and Zhang,
Xing, 2023. Effects of climate change and agricultural expansion on groundwater storage in the Amur River Basin. Frontiers
in Earth Science, 10:1037688, doi:10.3389/feart.2022.1037688.
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- Zhang, Jianxin, Liu, Kai, and Wang, Ming, 2023. Flood detection using Gravity Recovery and Climate Experiment (GRACE) terrestrial
water storage and extreme precipitation data. Earth System Science Data, 15(2):521–540, doi:10.5194/essd-15-521-2023.
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- Zhang, Xingxing, 2023. Impacts of Water Resources Management on Land Water Storage in the Lower Lancang River Basin: Insights
from Multi-Mission Earth Observations. Remote Sensing, 15(7):1747, doi:10.3390/rs15071747.
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- Zhang, Jing, Liu, Futian, Ji, Dongli, Wang, Wei, Yin, Wenjie, Jiang, Wanjun, Chen, Sheming, and Zhang, Zhuo, 2023. Tracking
the dynamics of a local-scale lake using GRACE from a hydrogeological perspective. Hydrogeology Journal, 31(1):97–110,
doi:10.1007/s10040-022-02578-2.
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- Zhang, Dan, Liu, Xiaomang, Simmons, Craig T., Zhang, Lu, and Zhang, Qi, 2023. Changes in groundwater levels across China from
2005 to 2016. Journal of Hydrology, 623:129781, doi:10.1016/j.jhydrol.2023.129781.
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- Zhang, Junchao, Hu, Litang, Sun, Jianchong, and Wang, Dao, 2023. Reconstructing Groundwater Storage Changes in the North China
Plain Using a Numerical Model and GRACE Data. Remote Sensing, 15(13):3264, doi:10.3390/rs15133264.
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- Zhang, Haoyue, Xu, Peng, Ye, Zongqi, Ye, Dong, Qiang, Li-E., Luo, Ziren, Qi, Keqi, Wang, Shaoxin, Cai, Zhiming, Wang, Zuolei,
Lei, Jungang, and Wu, Yueliang, 2023. A Systematic Approach for Inertial Sensor Calibration of Gravity Recovery Satellites
and Its Application to Taiji-1 Mission. Remote Sensing, 15(15):3817, doi:10.3390/rs15153817.
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- Zhang, Shanjun, Liu, Jia, Li, Chuanzhe, Yu, Fuliang, Jing, Lanshu, and Wang, Yizhi, 2023. Identification of the large-area
and long-duration drought and its evolutionary characteristics in Nenjiang River basin. Journal of Hydrology, 626:130218,
doi:10.1016/j.jhydrol.2023.130218.
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- Zhang, Yongqiang, Li, Congcong, Chiew, Francis H. S., Post, David A., Zhang, Xuanze, Ma, Ning, Tian, Jing, Kong, Dongdong,
Leung, L. Ruby, Yu, Qiang, Shi, Jiancheng, and Liu, Changming, 2023. Southern Hemisphere dominates recent decline in global
water availability. Science, 382(6670):579–584, doi:10.1126/science.adh0716.
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- Zhang, Qingquan, Pan, Yun, Zhang, Chong, and Gong, Huili, 2023. Deriving the Terrestrial Water Storage Anomaly From GRACE
Spherical Harmonic Coefficients Using a Convolutional Neural Network. Earth and Space Science, 10(12):e2023EA003023,
doi:10.1029/2023EA003023.
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- Zhao, Mengnan, Ponte, Rui M., and Penduff, Thierry, 2023. Global-scale random bottom pressure fluctuations from oceanic intrinsic
variability. Science Advances, 9(29):eadg0278, doi:10.1126/sciadv.adg0278.
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- Zheng, Shuo, Zhang, Zizhan, Yan, Haoming, Zhao, Yaxian, and Li, Zhen, 2023. Characterizing drought events occurred in the
Yangtze River Basin from 1979 to 2017 by reconstructing water storage anomalies based on GRACE and meteorological data. Science
of the Total Environment, 868:161755, doi:10.1016/j.scitotenv.2023.161755.
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- Zheng, Shuo, Zhang, Zizhan, Song, Zhe, Li, Yan, and Yan, Haoming, 2023. Anthropogenic and Climate-Driven Water Storage Variations
on the Mongolian Plateau. Remote Sensing, 15(17):4184, doi:10.3390/rs15174184.
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- Zhong, Bo, Li, Qiong, Li, Xianpao, and Chen, Jianli, 2023. Basin-scale terrestrial water storage changes inferred from GRACE-based
geopotential differences: a case study of the Yangtze River Basin, China. Geophysical Journal International, 233(2):1318–1338,
doi:10.1093/gji/ggac524.
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- Zhong, Yulong, Bai, Hongbing, Feng, Wei, Lu, Jing, and Humphrey, Vincent, 2023. Separating the Precipitation- and Non-Precipitation-
Driven Water Storage Trends in China. Water Resources Research, 59(3):e2022WR033261, doi:10.1029/2022WR033261.
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- Zhong, Bo, Li, Xianpao, Chen, Jianli, and Li, Qiong, 2023. WHU-GRACE-GPD01s: A Series of Constrained Monthly Gravity Field
Solutions Derived From GRACE-Based Geopotential Differences. Earth and Space Science, 10(4):e2022EA002699, doi:10.1029/2022EA002699.
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- Zhong, Yulong, Tian, Baoming, Vishwakarma, Bramha Dutt, Feng, Wei, Wu, Yunlong, Bai, Hongbing, and Zhong, Min, 2023. Reinterpreting
Global GRACE Trends Based on Century-Long GRACE-REC Data. Water Resources Research, 59(12):e2023WR035817, doi:10.1029/2023WR035817.
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- Zhou, Hao, Wang, Penghui, Pail, Roland, Guo, Xiang, Wu, Yunlong, and Luo, Zhicai, 2023. Assessment of a near-polar pair mission
for detecting the Earth's temporal gravity field. Geophysical Journal International, 234(2):852–869, doi:10.1093/gji/ggad107.
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- Zhou, Hao, Zheng, Lijun, Pail, Roland, Liu, Shuhao, Qing, Tiantian, Yang, Fan, Guo, Xiang, and Luo, Zhicai, 2023. The impacts
of reducing atmospheric and oceanic de-aliasing model error on temporal gravity field model determination. Geophysical
Journal International, 234(1):210–227, doi:10.1093/gji/ggad064.
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- Zhou, Hao, Wang, Penghui, Tang, Lu, and Luo, Zhicai, 2023. A New GRACE Filtering Approach Based on Iterative Image Convolution.
Journal of Geophysical Research (Solid Earth), 128(9):e2023JB026553, doi:10.1029/2023JB026553.
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- Zhou, Hao, Tang, Lu, Tan, Dingyin, Duan, Huizong, Pail, Roland, Luo, Zhicai, and Zhou, Zebing, 2023. Impacts of frequency-dependent
instrument noise for next-generation gravimetric mission on determining temporal gravity field model. Journal of Geodesy,
97(3):23, doi:10.1007/s00190-023-01716-2.
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- Zhu, Enda, Wang, Yaqiang, and Yuan, Xing, 2023. Changes of terrestrial water storage during 1981-2020 over China based on
dynamic-machine learning model. Journal of Hydrology, 621:129576, doi:10.1016/j.jhydrol.2023.129576.
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- Zhu, Bowen, Xie, Xianhong, Wang, Yibing, and Zhao, Xuehua, 2023. The Benefits of Continental-Scale High-Resolution Hydrological
Modeling in the Detection of Extreme Hydrological Events in China. Remote Sensing, 15(9):2402, doi:10.3390/rs15092402.
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- Zhu, Fengshun, Liu, Xin, Li, Zhen, Yuan, Jiajia, Guo, Jinyun, and Sun, Heping, 2023. High spatial resolution marine gravity
trend determined from multisatellite altimeter data over Bay of Bengal. Geophysical Journal International, 235(3):2257–2267,
doi:10.1093/gji/ggad368.
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- Zhu, Hai, Chen, Kejie, Hu, Shunqiang, Wei, Guoguang, Chai, Haishan, and Wang, Tan, 2023. Characterizing hydrological droughts
within three watersheds in Yunnan, China from GNSS-inferred terrestrial water storage changes constrained by GRACE data. Geophysical
Journal International, 235(2):1581–1599, doi:10.1093/gji/ggad321.
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- Ziegler, Yann, Vishwakarma, Bramha Dutt, Brady, Aoibheann, Chuter, Stephen, Royston, Sam, Westaway, Richard M., and Bamber,
Jonathan L., 2023. Can GPS and GRACE data be used to separate past and present-day surface loading in a data-driven approach?.
Geophysical Journal International, 232(2):884–901, doi:10.1093/gji/ggac365.
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- Zou, Zhengbo, Li, Yu, Cui, Lilu, Yao, Chaolong, Xu, Chuang, Yin, Maoqiao, and Zhu, Chengkang, 2023. Spatiotemporal Evaluation
of the Flood Potential Index and Its Driving Factors across the Volga River Basin Based on Combined Satellite Gravity Observations.
Remote Sensing, 15(17):4144, doi:10.3390/rs15174144.
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- Abhishek and Kinouchi, Tsuyoshi, 2022. Multidecadal Land Water and Groundwater Drought Evaluation in Peninsular India. Remote
Sensing, 14(6):1486, doi:10.3390/rs14061486.
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- Abrykosov, Petro, Sulzbach, Roman, Pail, Roland, Dobslaw, Henryk, and Thomas, Maik, 2022. Treatment of ocean tide background
model errors in the context of GRACE/GRACE-FO data processing. Geophysical Journal International, 228(3):1850–1865,
doi:10.1093/gji/ggab421.
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- Adams, Kyra H., Reager, John T., Rosen, Paul, Wiese, David N., Farr, Tom G., Rao, Shanti, Haines, Bruce J., Argus, Donald
F., Liu, Zhen, Smith, Ryan, Famiglietti, James S., and Rodell, Matthew, 2022. Remote Sensing of Groundwater: Current Capabilities
and Future Directions. Water Resources Research, 58(10):e2022WR032219, doi:10.1029/2022WR032219.
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- Akhtar, Fazlullah, Nawaz, Rana Ali, Hafeez, Mohsin, Awan, Usman Khalid, Borgemeister, Christian, and Tischbein, Bernhard,
2022. Evaluation of GRACE derived groundwater storage changes in different agro-ecological zones of the Indus Basin. Journal
of Hydrology, 605:127369, doi:10.1016/j.jhydrol.2021.127369.
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- Ali, Shoaib, Wang, Qiumei, Liu, Dong, Fu, Qiang, Mafuzur Rahaman, Md., Abrar Faiz, Muhammad, and Jehanzeb Masud Cheema, Muhammad,
2022. Estimation of spatio-temporal groundwater storage variations in the Lower Transboundary Indus Basin using GRACE satellite.
Journal of Hydrology, 605:127315, doi:10.1016/j.jhydrol.2021.127315.
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- Ali, Shoaib, Liu, Dong, Fu, Qiang, Cheema, Muhammad Jehanzeb Masud, Pal, Subodh Chandra, Arshad, Arfan, Pham, Quoc Bao, and
Zhang, Liangliang, 2022. Constructing high-resolution groundwater drought at spatio-temporal scale using GRACE satellite data
based on machine learning in the Indus Basin. Journal of Hydrology, 612:128295, doi:10.1016/j.jhydrol.2022.128295.
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- Allgeyer, S., Tregoning, P., McQueen, H., McClusky, S. C., Potter, E. -K., Pfeffer, J., McGirr, R., Purcell, A. P.,
Herring, T. A., and Montillet, J. -P., 2022. ANU GRACE Data Analysis: Orbit Modeling, Regularization and Inter-satellite
Range Acceleration Observations. Journal of Geophysical Research (Solid Earth), 127(2):e22489, doi:10.1029/2021JB022489.
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- Álvarez, Orlando, Gimenez, Mario, and Folguera, Andrés, 2022. Analysis of the coseismic slip behavior for the
MW = 9.1 2011 Tohoku-Oki earthquake from satellite GOCE vertical gravity gradient. Frontiers in Earth Science, 10:1068435,
doi:10.3389/feart.2022.1068435.
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- Ansari, Rubina, Usman Liaqat, Muhammad, and Grossi, Giovanna, 2022. Evaluation of gridded datasets for terrestrial water budget
assessment in the Upper Jhelum River Basin-South Asia. Journal of Hydrology, 613:128294, doi:10.1016/j.jhydrol.2022.128294.
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- Antoni, Markus, 2022. A review of different mascon approaches for regional gravity field modelling since 1968. History
of Geo- and Space Sciences, 13(2):205–217, doi:10.5194/hgss-13-205-2022.
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- Argus, Donald F., Martens, Hilary R., Borsa, Adrian A., Knappe, Ellen, Wiese, David N., Alam, Sarfaraz, Anderson, Mackenzie,
Khatiwada, Ashlesha, Lau, Nicholas, Peidou, Athina, Swarr, Matthew, White, Alissa M., Bos, Machiel S., Ellmer, Matthias, Landerer,
Felix W., and Gardiner, W. Payton, 2022. Subsurface Water Flux in California's Central Valley and Its Source Watershed From
Space Geodesy. Geophysical Research Letters, 49(22):e2022GL099583, doi:10.1029/2022GL099583.
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- Arshad, Arfan, Mirchi, Ali, Samimi, Maryam, and Ahmad, Bashir, 2022. Combining downscaled-GRACE data with SWAT to improve
the estimation of groundwater storage and depletion variations in the Irrigated Indus Basin (IIB). Science of the Total
Environment, 838:156044, doi:10.1016/j.scitotenv.2022.156044.
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- Bagherbandi, Mohammad, Amin, Hadi, Wang, Linsong, and Shirazian, Masoud, 2022. Mantle Viscosity Derived From Geoid and Different
Land Uplift Data in Greenland. Journal of Geophysical Research (Solid Earth), 127(8):e23351, doi:10.1029/2021JB023351.
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- Bai, Hongbing, Ming, Zutao, Zhong, Yulong, Zhong, Min, Kong, Dongdong, and Ji, Bing, 2022. Evaluation of evapotranspiration
for exorheic basins in China using an improved estimate of terrestrial water storage change. Journal of Hydrology,
610:127885, doi:10.1016/j.jhydrol.2022.127885.
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- Bai, Xueding, Li, Weifeng, Lin, Xuemin, Han, Lijian, and Ming, Dongping, 2022. Reconciling regional water diversion and urban
growth policies to protect groundwater across a large urban region in China. Journal of Hydrology, 612:128094, doi:10.1016/j.jhydrol.2022.128094.
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- Balidakis, Kyriakos, Sulzbach, Roman, Shihora, Linus, Dahle, Christoph, Dill, Robert, and Dobslaw, Henryk, 2022. Atmospheric
Contributions to Global Ocean Tides for Satellite Gravimetry. Journal of Advances in Modeling Earth Systems, 14(11):e2022MS003193,
doi:10.1029/2022MS003193.
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- Barbosa, Sergio A., Pulla, Sarva T., Williams, Gustavious P., Jones, Norman L., Mamane, Bako, and Sanchez, Jorge L., 2022.
Evaluating Groundwater Storage Change and Recharge Using GRACE Data: A Case Study of Aquifers in Niger, West Africa. Remote
Sensing, 14(7):1532, doi:10.3390/rs14071532.
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- Bender, Peter L., 2022. An Improved Next Generation Gravity Mission. Remote Sensing, 14(4):948, doi:10.3390/rs14040948.
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- Bernstein, Valerie and Pilinski, Marcin, 2022. Drag Coefficient Constraints for Space Weather Observations in the Upper Thermosphere.
Space Weather, 20(5):e02977, doi:10.1029/2021SW002977.
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- Bernstein, V. E., Evaluating Satellite Drag Coefficient Modeling Assumptions in Helium-Rich Space Environments. Ph.D.
Thesis, University of Colorado, Boulder, Department of Aerospace and Engineering, 2022.
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- Bjerre Ludwigsen, Carsten, Baltazar Andersen, Ole, and Kildegaard Rose, Stine, 2022. Components of 21 years (1995-2015) of
absolute sea level trends in the Arctic. Ocean Science, 18(1):109–127, doi:10.5194/os-18-109-2022.
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- Boergens, Eva, Kvas, Andreas, Eicker, Annette, Dobslaw, Henryk, Schawohl, Lennart, Dahle, Christoph, Murböck, Michael,
and Flechtner, Frank, 2022. Uncertainties of GRACE-Based Terrestrial Water Storage Anomalies for Arbitrary Averaging Regions.
Journal of Geophysical Research (Solid Earth), 127(2):e22081, doi:10.1029/2021JB022081.
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- Bolaños Chavarr\'ıa, Silvana, Werner, Micha, and Salazar, Juan Fernando, 2022. Benchmarking global hydrological
and land surface models against GRACE in a medium-sized tropical basin. Hydrology and Earth System Sciences, 26(16):4323–4344,
doi:10.5194/hess-26-4323-2022.
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- Bonin, J. A. and Save, H., 2022. Using GRACE to Improve Altimetry's Ocean De-Aliasing Model. Journal of Geophysical
Research (Oceans), 127(1):e17711, doi:10.1029/2021JC017711.
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- Bouih, Marie, Panet, Isabelle, Remy, Dominique, Longuevergne, Laurent, and Bonvalot, Sylvain, 2022. Deep mass redistribution
prior to the 2010 Mw 8.8 Maule (Chile) Earthquake revealed by GRACE satellite gravity. Earth and Planetary Science Letters,
584:117465, doi:10.1016/j.epsl.2022.117465.
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- Boulahia, Ahmed Kamel, Garc\'ıa-Garc\'ıa, David, Vigo, M. Isabel, Trottini, Mario, and Sayol, Juan-Manuel, 2022.
The Water Cycle of the Baltic Sea Region From GRACE/GRACE-FO Missions and ERA5 Data. Frontiers in Earth Science, 10:879148,
doi:10.3389/feart.2022.879148.
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- Cai, Lei, Aikio, Anita, Kullen, Anita, Deng, Yue, Zhang, Yongliang, Zhang, Shun-Rong, Virtanen, Ilkka, and Vanhamäki,
Heikki, 2022. GeospaceLAB: Python package for managing and visualizing data in space physics. Frontiers in Astronomy and
Space Sciences, 9:1023163, doi:10.3389/fspas.2022.1023163.
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- Camici, Stefania, Giuliani, Gabriele, Brocca, Luca, Massari, Christian, Tarpanelli, Angelica, Hashemi Farahani, Hassan, Sneeuw,
Nico, Restano, Marco, and Benveniste, Jérôme, 2022. Synergy between satellite observations of soil moisture and
water storage anomalies for runoff estimation. Geoscientific Model Development, 15(18):6935–6956, doi:10.5194/gmd-15-6935-2022.
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- Cao, Yanping, Xie, Zunyi, Woodgate, William, Ma, Xuanlong, Cleverly, Jamie, Pang, Yingjun, Qin, Fen, and Huete, Alfredo, 2022.
Ecohydrological decoupling of water storage and vegetation attributed to China's large-scale ecological restoration programs.
Journal of Hydrology, 615:128651, doi:10.1016/j.jhydrol.2022.128651.
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- Carlson, G., Werth, S., and Shirzaei, M., 2022. Joint Inversion of GNSS and GRACE for Terrestrial Water Storage Change in
California. Journal of Geophysical Research (Solid Earth), 127(3):e23135, doi:10.1029/2021JB023135.
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- Chandanpurkar, Hrishikesh A., Hamlington, Benjamin D., and Reager, John T., 2022. Global Terrestrial Water Storage Reconstruction
Using Cyclostationary Empirical Orthogonal Functions (1979–2020). Remote Sensing, 14(22):5677, doi:10.3390/rs14225677.
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- Chen, Jianli, Cazenave, Anny, Dahle, Christoph, Llovel, William, Panet, Isabelle, Pfeffer, Julia, and Moreira, Lorena, 2022.
Applications and Challenges of GRACE and GRACE Follow-On Satellite Gravimetry. Surveys in Geophysics, 43(1):305–345,
doi:10.1007/s10712-021-09685-x.
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- Chen, Ajiao, Guan, Huade, and Batelaan, Okke, 2022. Non-linear interactions between vegetation and terrestrial water storage
in Australia. Journal of Hydrology, 613:128336, doi:10.1016/j.jhydrol.2022.128336.
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- Chen, Ajiao, Guan, Huade, and Batelaan, Okke, 2022. Spatially differentiated effects of local moisture deficit and increased
global temperature on hot extreme occurrences. Journal of Hydrology, 615:128720, doi:10.1016/j.jhydrol.2022.128720.
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- Chen, Qiujie, Wang, Fengwei, Shen, Yunzhong, Zhang, Xingfu, Nie, Yufeng, and Chen, Jianhua, 2022. Monthly Gravity Field Solutions
From Early LEO Satellites' Observations Contribute to Global Ocean Mass Change Estimates Over 1993\ensuremath\sim2004. Geophysical
Research Letters, 49(21):e2022GL099917, doi:10.1029/2022GL099917.
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- Chuter, Stephen J., Zammit-Mangion, Andrew, Rougier, Jonathan, Dawson, Geoffrey, and Bamber, Jonathan L., 2022. Mass evolution
of the Antarctic Peninsula over the last 2 decades from a joint Bayesian inversion. The Cryosphere, 16(4):1349–1367,
doi:10.5194/tc-16-1349-2022.
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- Codrescu, Mihail V., Codrescu, Stefan M., and Fedrizzi, Mariangel, 2022. Storm time neutral density assimilation in the thermosphere
ionosphere with TIDA. Journal of Space Weather and Space Climate, 12:16, doi:10.1051/swsc/2022011.
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- Conlon, Lorcán O., Michel, Thibault, Guccione, Giovanni, McKenzie, Kirk, Assad, Syed M., and Lam, Ping Koy, 2022. Enhancing
the precision limits of interferometric satellite geodesy missions. npj Microgravity, 8:21, doi:10.1038/s41526-022-00204-9.
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- Corbin, Armin and Kusche, Jürgen, 2022. Improving the estimation of thermospheric neutral density via two-step assimilation
of in situ neutral density into a numerical model. Earth, Planets and Space, 74(1):183, doi:10.1186/s40623-022-01733-z.
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- Cui, Lilu, Luo, Chuanjiang, Yao, Chaolong, Zou, Zhengbo, Wu, Guiju, Li, Qiong, and Wang, Xiaolong, 2022. The Influence of
Climate Change on Forest Fires in Yunnan Province, Southwest China Detected by GRACE Satellites. Remote Sensing, 14(3):712,
doi:10.3390/rs14030712.
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- Cui, Lilu, Zhu, Chengkang, Wu, Yunlong, Yao, Chaolong, Wang, Xiaolong, An, Jiachun, and Wei, Pengzhi, 2022. Natural- and Human-Induced
Influences on Terrestrial Water Storage Change in Sichuan, Southwest China from 2003 to 2020. Remote Sensing, 14(6):1369,
doi:10.3390/rs14061369.
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- Cui, Lilu, Yin, Maoqiao, Huang, Zhengkai, Yao, Chaolong, Wang, Xiaolong, and Lin, Xu, 2022. The Drought Events over the Amazon
River Basin from 2003 to 2020 Detected by GRACE/GRACE-FO and Swarm Satellites. Remote Sensing, 14(12):2887, doi:10.3390/rs14122887.
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- Cui, Lilu, He, Mingrui, Zou, Zhengbo, Yao, Chaolong, Wang, Shengping, An, Jiachun, and Wang, Xiaolong, 2022. The Influence
of Climate Change on Droughts and Floods in the Yangtze River Basin from 2003 to 2020. Sensors, 22(21):8178, doi:10.3390/s22218178.
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- Dávila Álvarez, Anthony, Knudtson, Aaron, Patel, Unmil, Gleason, Joseph, Hollis, Harold, Sanjuan, Jose, Doughty,
Neil, McDaniel, Glenn, Lee, Jennifer, Leitch, James, Bennett, Stephen, Bevilacqua, Riccardo, Mueller, Guido, Spero, Robert,
Ware, Brent, Wass, Peter, Wiese, David, Ziemer, John, and Conklin, John W., 2022. A simplified gravitational reference sensor
for satellite geodesy. Journal of Geodesy, 96(10):70, doi:10.1007/s00190-022-01659-0.
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- Deccia, Carlos M. A., Wiese, David N., and Nerem, Robert S., 2022. Using a Multiobjective Genetic Algorithm to Design
Satellite Constellations for Recovering Earth System Mass Change. Remote Sensing, 14(14):3340, doi:10.3390/rs14143340.
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- Delforge, Damien, de Viron, Olivier, Durand, Fabien, and Dehant, Véronique, 2022. The Global Patterns of Interannual
and Intraseasonal Mass Variations in the Oceans from GRACE and GRACE Follow-On Records. Remote Sensing, 14(8):1861,
doi:10.3390/rs14081861.
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- Delman, Andrew and Landerer, Felix, 2022. Downscaling Satellite-Based Estimates of Ocean Bottom Pressure for Tracking Deep
Ocean Mass Transport. Remote Sensing, 14(7):1764, doi:10.3390/rs14071764.
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- Deng, Haijun, Chen, Yaning, and Chen, Xingwei, 2022. Driving factors and changes in components of terrestrial water storage
in the endorheic Tibetan Plateau. Journal of Hydrology, 612:128225, doi:10.1016/j.jhydrol.2022.128225.
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- Ding, Tong, Awange, Joseph L., Scherllin-Pirscher, Barbara, Kuhn, Michael, Khandu, Anyah, Richard, Zerihun, Ayalsew, and Bui,
Luyen K., 2022. GNSS Radio Occultation Infilling of the African Radiosonde Data Gaps Reveals Drivers of Tropopause Climate
Variability. Journal of Geophysical Research (Atmospheres), 127(17):ejgrd.v127, doi:10.1029/2022JD036648.
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- Ditmar, Pavel, 2022. How to quantify the accuracy of mass anomaly time-series based on GRACE data in the absence of knowledge
about true signal?. Journal of Geodesy, 96(8):54, doi:10.1007/s00190-022-01640-x.
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- Djessou, Randal D., Wan, Xiaoyun, Yi, Shuang, Annan, Richard F., Su, Xiaoli, and Wang, Sijia, 2022. Water Storage Variation
and Its Possible Causes Detected by GRACE in the Volta River Basin. Remote Sensing, 14(21):5319, doi:10.3390/rs14215319.
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- Do\uganalp, Serkan, 2022. Assessment of recent global geopotential models based on the Auvergne test area data. Engineering
Research Express, 4(4):045017, doi:10.1088/2631-8695/ac9fab.
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- Dong, Ningpeng, Wei, Jianhui, Yang, Mingxiang, Yan, Denghua, Yang, Chuanguo, Gao, Hongkai, Arnault, Joël., Laux, Patrick,
Zhang, Xuejun, Liu, Yujie, Niu, Jun, Wang, Hejia, Wang, Hao, Kunstmann, Harald, and Yu, Zhongbo, 2022. Model Estimates of
China's Terrestrial Water Storage Variation Due To Reservoir Operation. Water Resources Research, 58(6):e31787, doi:10.1029/2021WR031787.
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- Dube, Timothy, Shekede, Munyaradzi D., and Massari, Christian, 2022. Remote Sensing for Water Resources and Environmental
Management. Remote Sensing, 15(1):18, doi:10.3390/rs15010018.
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- Fatolazadeh, Farzam and Goïta, Kalifa, 2022. Reconstructing groundwater storage variations from GRACE observations using
a new Gaussian-Han-Fan (GHF) smoothing approach. Journal of Hydrology, 604:127234, doi:10.1016/j.jhydrol.2021.127234.
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- Fatolazadeh, Farzam, Eshagh, Mehdi, and Go\"ıta, Kalifa, 2022. New spectro-spatial downscaling approach for terrestrial
and groundwater storage variations estimated by GRACE models. Journal of Hydrology, 615:128635, doi:10.1016/j.jhydrol.2022.128635.
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- Fatolazadeh, Farzam, Eshagh, Mehdi, Go\"ıta, Kalifa, and Wang, Shusen, 2022. A New Spatiotemporal Estimator to Downscale
GRACE Gravity Models for Terrestrial and Groundwater Storage Variations Estimation. Remote Sensing, 14(23):5991, doi:10.3390/rs14235991.
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- Feng, Tengfei, Shen, Yunzhong, Chen, Qiujie, Wang, Fengwei, and Zhang, Xingfu, 2022. Groundwater storage change and driving
factor analysis in north china using independent component decomposition. Journal of Hydrology, 609:127708, doi:10.1016/j.jhydrol.2022.127708.
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- Fernandez-Gomez, Isabel, Kodikara, Timothy, Borries, Claudia, Forootan, Ehsan, Goss, Andreas, Schmidt, Michael, and Codrescu,
Mihail V., 2022. Improving estimates of the ionosphere during geomagnetic storm conditions through assimilation of thermospheric
mass density. Earth, Planets and Space, 74(1):121, doi:10.1186/s40623-022-01678-3.
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- Gallagher, Michael R., Shupe, Matthew D., Chepfer, Hélène, and L'Ecuyer, Tristan, 2022. Relating snowfall observations
to Greenland ice sheet mass changes: an atmospheric circulation perspective. The Cryosphere, 16(2):435–450, doi:10.5194/tc-16-435-2022.
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- Garc\'ıa-Garc\'ıa, David, Vigo, M. Isabel, Trottini, Mario, Vargas-Alemañy, Juan A., and Sayol, Juan-Manuel,
2022. Hydrological cycle of the Mediterranean-Black Sea system. Climate Dynamics, 59(7-8):1919–1938, doi:10.1007/s00382-022-06188-2.
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- Gerdener, Helena, Kusche, Jürgen, Schulze, Kerstin, Ghazaryan, Gohar, and Dubovyk, Olena, 2022. Revising precipitation
- water storages - vegetation signatures with GRACE-based data assimilation. Journal of Hydrology, 612:128096, doi:10.1016/j.jhydrol.2022.128096.
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- Ghobadi-Far, Khosro, Han, Shin-Chan, McCullough, Christopher M., Wiese, David N., Ray, Richard D., Sauber, Jeanne, Shihora,
Linus, and Dobslaw, Henryk, 2022. Along-Orbit Analysis of GRACE Follow-On Inter-Satellite Laser Ranging Measurements for Sub-Monthly
Surface Mass Variations. Journal of Geophysical Research (Solid Earth), 127(2):e22983, doi:10.1029/2021JB022983.
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- Guo, Xiang, Zhang, Yu, Zhou, Hao, Zhao, Yuefeng, and Zhao, Qile, 2022. Enhanced orbit determination for formation-flying satellites
based on M-estimation. Advances in Space Research, 70(4):923–934, doi:10.1016/j.asr.2022.05.043.
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- Guo, Yi, Gan, Fuping, Yan, Baikun, Bai, Juan, Xing, Naichen, and Zhuo, Yue, 2022. Evaluation of Terrestrial Water Storage
Changes and Major Driving Factors Analysis in Inner Mongolia, China. Sensors, 22(24):9665, doi:10.3390/s22249665.
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- Gyawali, Bimal, Ahmed, Mohamed, Murgulet, Dorina, and Wiese, David N., 2022. Filling Temporal Gaps within and between GRACE
and GRACE-FO Terrestrial Water Storage Records: An Innovative Approach. Remote Sensing, 14(7):1565, doi:10.3390/rs14071565.
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- Halipu, Ayihumaier, Wang, Xuechen, Iwasaki, Erina, Yang, Wei, and Kondoh, Akihiko, 2022. Quantifying Water Consumption through
the Satellite Estimation of Land Use/Land Cover and Groundwater Storage Changes in a Hyper-Arid Region of Egypt. Remote
Sensing, 14(11):2608, doi:10.3390/rs14112608.
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- Harvey, Nate, McCullough, Christopher M., and Save, Himanshu, 2022. Modeling GRACE-FO accelerometer data for the version 04
release. Advances in Space Research, 69(3):1393–1407, doi:10.1016/j.asr.2021.10.056.
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- He, Qianqian, Chen, Xiaodong, Sun, Heping, Xu, Jianqiao, Liu, Ziwei, Zhou, Shijian, and Chen, Zhigao, 2022. Quantitative separation
of the local vadose zone water storage changes using the superconductive gravity technique. Journal of Hydrology, 609:127734,
doi:10.1016/j.jhydrol.2022.127734.
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- He, Jianhui, Yue, Xinan, Astafyeva, Elvira, Le, Huijun, Ren, Zhipeng, Pedatella, Nicholas M., Ding, Feng, and Wei, Yong, 2022.
Global Gridded Ionospheric Electron Density Derivation During 2006-2016 by Assimilating COSMIC TEC and Its Validation. Journal
of Geophysical Research (Space Physics), 127(12):e2022JA030955, doi:10.1029/2022JA030955.
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- Horwath, Martin, Gutknecht, Benjamin D., Cazenave, Anny, Kulaiappan Palanisamy, Hindumathi, Marti, Florence, Marzeion, Ben,
Paul, Frank, Le Bris, Raymond, Hogg, Anna E., Otosaka, Inès, Shepherd, Andrew, Döll, Petra, Cáceres, Denise,
Müller Schmied, Hannes, Johannessen, Johnny A., Øie Nilsen, Jan Even, Raj, Roshin P., Forsberg, René, Sandberg
Sørensen, Louise, Barletta, Valentina R., Simonsen, Sebastian B., Knudsen, Per, Baltazar Andersen, Ole, Ranndal, Heidi,
Rose, Stine K., Merchant, Christopher J., Macintosh, Claire R., von Schuckmann, Karina, Novotny, Kristin, Groh, Andreas, Restano,
Marco, and Benveniste, Jérôme, 2022. Global sea-level budget and ocean-mass budget, with a focus on advanced
data products and uncertainty characterisation. Earth System Science Data, 14(2):411–447, doi:10.5194/essd-14-411-2022.
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- Hu, Zengyun, Chen, Xi, Zhou, Qiming, Yin, Gang, and Liu, Jun, 2022. Dynamical variations of the terrestrial water cycle components
and the influences of the climate factors over the Aral Sea Basin through multiple datasets. Journal of Hydrology,
604:127270, doi:10.1016/j.jhydrol.2021.127270.
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- Huang, Zhiyong, Li, Shanshan, Cai, Lin, Fan, Diao, and Huang, Lingyong, 2022. Estimation of the Center of Mass of GRACE-Type
Gravity Satellites. Remote Sensing, 14(16):4030, doi:10.3390/rs14164030.
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- Huang, Zhiyong, Li, Shanshan, Huang, Lingyong, and Fan, Diao, 2022. On-Orbit Calibration of the KBR Antenna Phase Center of
GRACE-Type Gravity Satellites. Remote Sensing, 14(14):3395, doi:10.3390/rs14143395.
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- Iaboni, Craig, Lobo, Deepan, Choi, Ji-Won, and Abichandani, Pramod, 2022. Event-Based Motion Capture System for Online Multi-Quadrotor
Localization and Tracking. Sensors, 22(9):3240, doi:10.3390/s22093240.
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- Ji, Yuting, Tang, He, and Sun, Wenke, 2022. Coseismic Gravity Gradient Changes in a Spherical Symmetric Earth Model: Application
to the 2011 Tohoku-Oki Earthquake. Journal of Geophysical Research (Solid Earth), 127(3):e23560, doi:10.1029/2021JB023560.
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- Jia, Yongjun, Xiao, Kailin, Lin, Mingsen, and Zhang, Xi, 2022. Analysis of Global Sea Level Change Based on Multi-Source Data.
Remote Sensing, 14(19):4854, doi:10.3390/rs14194854.
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- Jian, Guangyu, Xu, Chuang, Li, Jinbo, Zhang, Xingfu, and Feng, Li, 2022. Terrestrial Water Storage Component Changes Derived
from Multisource Data and Their Responses to ENSO in Nicaragua. Remote Sensing, 14(23):6012, doi:10.3390/rs14236012.
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- Jiang, Zhongshan, Hsu, Ya-Ju, Yuan, Linguo, Cheng, Shuai, Feng, Wei, Tang, Miao, and Yang, Xinghai, 2022. Insights into hydrological
drought characteristics using GNSS-inferred large-scale terrestrial water storage deficits. Earth and Planetary Science
Letters, 578:117294, doi:10.1016/j.epsl.2021.117294.
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- Jiao, Jiashuang, Pan, Yuanjin, Bilker-Koivula, Mirjam, Poutanen, Markku, and Ding, Hao, 2022. Basin Mass Changes in Finland
From GRACE: Validation and Explanation. Journal of Geophysical Research (Solid Earth), 127(6):e23489, doi:10.1029/2021JB023489.
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- Jimoh, Oluwaseyi, Lei, Jiuhou, Huang, Fuqing, and Zhong, Jiahao, 2022. The study of topside ionospheric irregularities during
geomagnetic storms in 2015. Journal of Space Weather and Space Climate, 12:32, doi:10.1051/swsc/2022028.
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- Jin, Biao, Li, Yu-qiang, Zhou, Wei, Li, Zhu-lian, and Chen, Shan-shan, 2022. GRACE-FO Precise Orbit Determination with Single
Receiver Ambiguity Resolution. Progress in Astronomy, 40:416–428, doi:10.3969/j.issn.1000-8349.2022.03.07.
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- Jones, S. M. and Hossain, A. K. M. A., 2022. Studying the Potential Impact of Groundwater Depletion on
Surface Vegetation in the Mississippi Delta Using Remote Sensing. ISPRS - International Archives of the Photogrammetry,
Remote Sensing and Spatial Information Sciences, 46M2:131–134, doi:10.5194/isprs-archives-XLVI-M-2-2022-131-2022.
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- Kalu, Ikechukwu, Ndehedehe, Christopher E., Okwuashi, Onuwa, and Eyoh, Aniekan E., 2022. Integration of satellite geodetic
observations for regional geoid modeling using remove-compute-restore technique. Earth Science Informatics, 15(1):233–251,
doi:10.1007/s12145-021-00716-0.
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- Kalu, Ikechukwu, Ndehedehe, Christopher E., Okwuashi, Onuwa, Eyoh, Aniekan E., and Ferreira, Vagner G., 2022. An assimilated
deep learning approach to identify the influence of global climate on hydrological fluxes. Journal of Hydrology, 614:128498,
doi:10.1016/j.jhydrol.2022.128498.
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- Kanthavel, P., Saxena, C. K., and Singh, R. K., 2022. Integrated Drought Index based on Vine Copula Modelling. International
Journal of Climatology, 42(16):9510–9529, doi:10.1002/joc.7840.
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- Karmaoui, Ahmed, Ben Salem, Abdelkrim, El Jaafari, Samir, Chaachouay, Hassan, Moumane, Adil, and Hajji, Lhoussain, 2022. Exploring
the land use and land cover change in the period 2005–2020 in the province of Errachidia, the pre-sahara of Morocco.
Frontiers in Earth Science, 10:962097, doi:10.3389/feart.2022.962097.
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- Karpachev, Alexander T., Klimenko, Maksim V., Klimenko, Vladimir V., Chirik, Nikolay V., Zhbankov, Gennadiy A., and Pustovalova,
Lubov V., 2022. Satellite model of foF2 in winter high-latitude ionosphere describing the trough structure. Advances in
Space Research, 69(1):2–15, doi:10.1016/j.asr.2021.07.014.
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- Kim, Byeong-Hoon, Seo, Ki-Weon, Lee, Choon-Ki, Kim, Jae-Seung, Chen, Jianli, and Wilson, Clark R., 2022. Antarctic Ice Mass
Change (2003-2016) Jointly Estimated by Satellite Gravimetry and Altimetry. Journal of Geophysical Research (Solid Earth),
127(9):e2021JB023297, doi:10.1029/2021JB023297.
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- Krichman, Benjamin, Bettadpur, Srinivas, and Pekker, Tatyana, 2022. Assessment of Model-Derived Mass Flux Relative to Satellite
Gravimetry via a Water Balance in North America. Journal of Hydrometeorology, 23(11):1773–1787, doi:10.1175/JHM-D-21-0216.1.
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- Lai, Yu, Zhang, Bao, Yao, Yibin, Liu, Lin, Yan, Xiao, He, Yulin, and Ou, Shuyuan, 2022. Reconstructing the data gap between
GRACE and GRACE follow-on at the basin scale using artificial neural network. Science of the Total Environment, 823:153770,
doi:10.1016/j.scitotenv.2022.153770.
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- Larochelle, Stacy, Chanard, Kristel, Fleitout, Luce, Fortin, Jérôme, Gualandi, Adriano, Longuevergne, Laurent,
Rebischung, Paul, Violette, Sophie, and Avouac, Jean-Philippe, 2022. Understanding the Geodetic Signature of Large Aquifer
Systems: Example of the Ozark Plateaus in Central United States. Journal of Geophysical Research (Solid Earth), 127(3):e23097,
doi:10.1029/2021JB023097.
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- Lehmann, Fanny, Dutt Vishwakarma, Bramha, and Bamber, Jonathan, 2022. How well are we able to close the water budget at the
global scale?. Hydrology and Earth System Sciences, 26(1):35–54, doi:10.5194/hess-26-35-2022.
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- Li, Zhen, Zhang, Zizhan, Scanlon, Bridget R., Sun, Alexander Y., Pan, Yun, Qiao, Shuqing, Wang, Hansheng, and Jia, Qiuyang,
2022. Combining GRACE and satellite altimetry data to detect change in sediment load to the Bohai Sea. Science of the Total
Environment, 818:151677, doi:10.1016/j.scitotenv.2021.151677.
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- Li, Junhua and Wang, Shusen, 2022. Seasonal variations and long-term trends of groundwater over the Canadian landmass. Hydrogeology
Journal, 30(2):401–415, doi:10.1007/s10040-022-02460-1.
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- Li, Min, Xu, Tianhe, Shi, Yali, Wei, Kai, Fei, Xianming, and Wang, Dixing, 2022. Adaptive Kalman Filter for Real-Time Precise
Orbit Determination of Low Earth Orbit Satellites Based on Pseudorange and Epoch-Differenced Carrier-Phase Measurements. Remote
Sensing, 14(9):2273, doi:10.3390/rs14092273.
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- Li, Zhen, Chao, Benjamin F., Wang, H. S., and Zhang, Z. Z., 2022. Antarctica ice-mass variations on interannual
timescale: Coastal Dipole and propagating transports. Earth and Planetary Science Letters, 595:117789, doi:10.1016/j.epsl.2022.117789.
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- Li, Zhen, Zhang, Zizhan, and Wang, Hansheng, 2022. On Tide Aliasing in GRACE Time-Variable Gravity Observations. Remote
Sensing, 14(21):5403, doi:10.3390/rs14215403.
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- Li, Zhen, Chao, Benjamin Fong, Zhang, Zizhan, Jiang, Liming, and Wang, Hansheng, 2022. Greenland Interannual Ice Mass Variations
Detected by GRACE Time-Variable Gravity. Geophysical Research Letters, 49(19):e2022GL100551, doi:10.1029/2022GL100551.
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- Liu, Huatong, Yuan, Xing, and Zhang, Miao, 2022. Unraveling human influence on evapotranspiration over East Asian monsoon
river basins by using GRACE/GRACE-FO data and land surface models. Journal of Hydrology, 605:127349, doi:10.1016/j.jhydrol.2021.127349.
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- Liu, Bingshi, Zou, Xiancai, Yi, Shuang, Sneeuw, Nico, Li, Jiancheng, and Cai, Jianqiang, 2022. Reconstructing GRACE-like time
series of high mountain glacier mass anomalies. Remote Sensing of Environment, 280:113177, doi:10.1016/j.rse.2022.113177.
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- Liu, Mengzhu, Pei, Hongwei, and Shen, Yanjun, 2022. Evaluating dynamics of GRACE groundwater and its drought potential in
Taihang Mountain Region, China. Journal of Hydrology, 612:128156, doi:10.1016/j.jhydrol.2022.128156.
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- Liu, Jiawei, Zhu, Guofeng, Zhao, Kailiang, Jiao, Yinying, Liu, Yuwei, Yang, Mingyue, Zhang, Wenhao, Qiu, Dongdong, Lin, Xinrui,
and Ye, Linlin, 2022. GRACE Combined with WSD to Assess the Change in Drought Severity in Arid Asia. Remote Sensing,
14(14):3454, doi:10.3390/rs14143454.
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- Liu, Kai, Zhang, Jianxin, and Wang, Ming, 2022. Drivers of Groundwater Change in China and Future Projections. Remote Sensing,
14(19):4825, doi:10.3390/rs14194825.
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- Liu, Pang-Wei, Famiglietti, James S., Purdy, Adam J., Adams, Kyra H., McEvoy, Avery L., Reager, John T., Bindlish, Rajat,
Wiese, David N., David, Cédric H., and Rodell, Matthew, 2022. Groundwater depletion in California's Central Valley
accelerates during megadrought. Nature Communications, 13:7825, doi:10.1038/s41467-022-35582-x.
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- Lordi, Ana L., Neves, Maria C., Custódio, Susana, and Dumont, Stéphanie, 2022. Seasonal modulation of oceanic
seismicity in the azores. Frontiers in Earth Science, 10:995401, doi:10.3389/feart.2022.995401.
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- Lu, Jing, Jia, Li, Zhou, Jie, Jiang, Min, Zhong, Yulong, and Menenti, Massimo, 2022. Quantification and Assessment of Global
Terrestrial Water Storage Deficit Caused by Drought Using GRACE Satellite Data. IEEE Journal of Selected Topics in Applied
Earth Observations and Remote Sensing, 15:5001–5012, doi:10.1109/JSTARS.2022.3180509.
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- Lubyk, Kateryna, Hoque, Mohammed Mainul, and Stolle, Claudia, 2022. Evaluation of the Mid-Latitude Ionospheric trough Using
GRACE Data. Remote Sensing, 14(17):4384, doi:10.3390/rs14174384.
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- Luo, Peng, Jin, Shuanggen, and Shi, Qiqi, 2022. Undifferenced Kinematic Precise Orbit Determination of Swarm and GRACE-FO
Satellites from GNSS Observations. Sensors, 22(3):1071, doi:10.3390/s22031071.
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- Luo, Weihua, Li, Heng, Xiong, Chao, Zhu, Zhengping, Yu, Xiao, and Chang, Shanshan, 2022. Linkage of Equatorial Ionization
Anomaly With the Day-To-Day Occurrence of Postsunset Irregularities and Scintillation in Low-Latitude Region Around 110°E.
Space Weather, 20(10):e2022SW003192, doi:10.1029/2022SW003192.
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- Lyu, Guokun, Serra, Nuno, Zhou, Meng, and Stammer, Detlef, 2022. Arctic sea level variability from high-resolution model simulations
and implications for the Arctic observing system. Ocean Science, 18(1):51–66, doi:10.5194/os-18-51-2022.
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- Massoud, Elias C., Bloom, A. Anthony, Longo, Marcos, Reager, John T., Levine, Paul A., and Worden, John R., 2022. Information
content of soil hydrology in a west Amazon watershed as informed by GRACE. Hydrology and Earth System Sciences, 26(5):1407–1423,
doi:10.5194/hess-26-1407-2022.
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- Mathews, Gathala Vinod, Rajesh, Rekapalli, and Begum, Shaik Kareemunnisa, 2022. A short note on the natural and anthropogenic
variations in the water storage changes at Visakhapatnam, Andhra Pradesh, India. Acta Geophysica, 70(4):1847–1854,
doi:10.1007/s11600-022-00811-w.
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- McGirr, Rebecca, Tregoning, Paul, Allgeyer, Sebastien, McQueen, Herb, and Purcell, Anthony, 2022. Mitigation of thermal noise
in GRACE accelerometer observations. Advances in Space Research, 69(1):386–401, doi:10.1016/j.asr.2021.10.055.
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- McStraw, Travis Clinton, Pulla, Sarva T., Jones, Norman L., Williams, Gustavious P., David, Cédric H., Nelson, James
E., and Ames, Daniel P., 2022. An Open‑Source Web Application for Regional Analysis of GRACE Groundwater Data and Engaging
Stakeholders in Groundwater Management. Journal of the American Water Resources Association, 58(6):1002–1016,
doi:10.1111/1752-1688.12968.
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- Milyukov, V. K., Filetkin, A. I., and Zhamkov, A. S., 2022. Spaceborne Gravity Gradiometer: Ways To Improve
the Accuracy of Earth's Gravity Field Models. Soviet Journal of Experimental and Theoretical Physics, 134(4):511–522,
doi:10.1134/S1063776122040070.
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- Mo, Shaoxing, Zhong, Yulong, Forootan, Ehsan, Mehrnegar, Nooshin, Yin, Xin, Wu, Jichun, Feng, Wei, and Shi, Xiaoqing, 2022.
Bayesian convolutional neural networks for predicting the terrestrial water storage anomalies during GRACE and GRACE-FO gap.
Journal of Hydrology, 604:127244, doi:10.1016/j.jhydrol.2021.127244.
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- Mo, Shaoxing, Zhong, Yulong, Forootan, Ehsan, Shi, Xiaoqing, Feng, Wei, Yin, Xin, and Wu, Jichun, 2022. Hydrological Droughts
of 2017-2018 Explained by the Bayesian Reconstruction of GRACE(-FO) Fields. Water Resources Research, 58(9):e2022WR031997,
doi:10.1029/2022WR031997.
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- Mohamed, Ahmed, Faye, Cheikh, Othman, Abdullah, and Abdelrady, Ahmed, 2022. Hydro-Geophysical Evaluation of the Regional Variability
of Senegal's Terrestrial Water Storage Using Time-Variable Gravity Data. Remote Sensing, 14(16):4059, doi:10.3390/rs14164059.
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- Mohamed, Ahmed, Al Deep, Mohamed, Othman, Abdullah, Taha, Ayman I., Alshehri, Fahad, and Abdelrady, Ahmed, 2022. Integrated
Geophysical Assessment of Groundwater Potential in Southwestern Saudi Arabia. Frontiers in Earth Science, 10:937402,
doi:10.3389/feart.2022.937402.
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- Müller, Vitali, Hauk, Markus, Misfeldt, Malte, Müller, Laura, Wegener, Henry, Yan, Yihao, and Heinzel, Gerhard,
2022. Comparing GRACE-FO KBR and LRI Ranging Data with Focus on Carrier Frequency Variations. Remote Sensing, 14(17):4335,
doi:10.3390/rs14174335.
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- Nastula, Jolanta, Sliwinska, Justyna, Kur, Tomasz, Winska, Malgorzata, and Partyka, Aleksander, 2022. Preliminary study on
hydrological angular momentum determined from CMIP6 historical simulations. Earth, Planets and Space, 74(1):84, doi:10.1186/s40623-022-01636-z.
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- Nicklaus, Kolja, Voss, Kai, Feiri, Anne, Kaufer, Marina, Dahl, Christian, Herding, Mark, Curzadd, Bailey Allen, Baatzsch,
Andreas, Flock, Johanna, Weller, Markus, Müller, Vitali, Heinzel, Gerhard, Misfeldt, Malte, and Delgado, Juan Jose Esteban,
2022. Towards NGGM: Laser Tracking Instrument for the Next Generation of Gravity Missions. Remote Sensing, 14(16):4089,
doi:10.3390/rs14164089.
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- Nie, Yufeng, Shen, Yunzhong, Pail, Roland, Chen, Qiujie, and Xiao, Yun, 2022. Revisiting Force Model Error Modeling in GRACE
Gravity Field Recovery. Surveys in Geophysics, 43(4):1169–1199, doi:10.1007/s10712-022-09701-8.
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- Pan, Yuanjin, Ding, Hao, Li, Jiangtao, Shum, C. K., Mallick, Rishav, Jiao, Jiashuang, Li, Mengkui, and Zhang, Yu, 2022.
Transient hydrology-induced elastic deformation and land subsidence in Australia constrained by contemporary geodetic measurements.
Earth and Planetary Science Letters, 588:117556, doi:10.1016/j.epsl.2022.117556.
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- Pan, Xiaohui, Wang, Weishi, Liu, Tie, Akmalov, Shamshodbek, De Maeyer, Philippe, and Van de Voorde, Tim, 2022. Integrated
modeling to assess the impact of climate change on the groundwater and surface water in the South Aral Sea area. Journal
of Hydrology, 614:128641, doi:10.1016/j.jhydrol.2022.128641.
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- Panda, Dileep K., Tiwari, Virendra M., and Rodell, Matthew, 2022. Groundwater Variability Across India, Under Contrasting
Human and Natural Conditions. Earth's Future, 10(4):e2021EF002513, doi:10.1029/2021EF002513.
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- Panet, Isabelle, Narteau, Clément, Lemoine, Jean-Michel, Bonvalot, Sylvain, and Remy, Dominique, 2022. Detecting Preseismic
Signals in GRACE Gravity Solutions: Application to the 2011 Tohoku M$_w$ 9.0 Earthquake. Journal of Geophysical Research
(Solid Earth), 127(8):e24542, doi:10.1029/2022JB024542.
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- Pascal, Claire, Ferrant, Sylvain, Selles, Adrien, Maréchal, Jean-Christophe, Paswan, Abhilash, and Merlin, Olivier,
2022. Evaluating downscaling methods of GRACE (Gravity Recovery and Climate Experiment) data: a case study over a fractured
crystalline aquifer in southern India. Hydrology and Earth System Sciences, 26(15):4169–4186, doi:10.5194/hess-26-4169-2022.
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- Peidou, Athina, Landerer, Felix, Wiese, David, Ellmer, Matthias, Fahnestock, Eugene, McCullough, Christopher, Spero, Robert,
and Yuan, Dah-Ning, 2022. Spatiotemporal Characterization of Geophysical Signal Detection Capabilities of GRACE-FO. Geophysical
Research Letters, 49(1):e95157, doi:10.1029/2021GL095157.
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- Petchiappan, Ashwini, Steele-Dunne, Susan C., Vreugdenhil, Mariette, Hahn, Sebastian, Wagner, Wolfgang, and Oliveira, Rafael,
2022. The influence of vegetation water dynamics on the ASCAT backscatter-incidence angle relationship in the Amazon. Hydrology
and Earth System Sciences, 26(11):2997–3019, doi:10.5194/hess-26-2997-2022.
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- Peter, Heike, Meyer, Ulrich, Lasser, Martin, and Jäggi, Adrian, 2022. COST-G gravity field models for precise orbit determination
of Low Earth Orbiting Satellites. Advances in Space Research, 69(12):4155–4168, doi:10.1016/j.asr.2022.04.005.
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- Pham, K. H., Zhang, B., Sorathia, K., Dang, T., Wang, W., Merkin, V., Liu, H., Lin, D., Wiltberger, M., Lei, J., Bao,
S., Garretson, J., Toffoletto, F., Michael, A., and Lyon, J., 2022. Thermospheric Density Perturbations Produced by Traveling
Atmospheric Disturbances During August 2005 Storm. Journal of Geophysical Research (Space Physics), 127(2):e30071,
doi:10.1029/2021JA030071.
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- Piecuch, Christopher G., Fukumori, Ichiro, Ponte, Rui M., Schindelegger, Michael, Wang, Ou, and Zhao, Mengnan, 2022. Low-Frequency
Dynamic Ocean Response to Barometric-Pressure Loading. Journal of Physical Oceanography, 52(11):2627–2641, doi:10.1175/JPO-D-22-0090.1.
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- Pivetta, Tommaso, Braitenberg, Carla, and Pastorutti, Alberto, 2022. Sensitivity to Mass Changes of Lakes, Subsurface Hydrology
and Glaciers of the Quantum Technology Gravity Gradients and Time Observations of Satellite MOCAST+. Remote Sensing,
14(17):4278, doi:10.3390/rs14174278.
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- Ponte, Rui M. and Schindelegger, Michael, 2022. Global Ocean Response to the 5-Day Rossby-Haurwitz Atmospheric Mode Seen by
GRACE. Journal of Geophysical Research (Oceans), 127(5):e18302, doi:10.1029/2021JC018302.
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- Pu, Lun, Fan, Dongming, You, Wei, Jiang, Zhongshan, Yang, Xinchun, Wan, Xiangyu, and Nigatu, Zemede M., 2022. Analysis of
mass flux variations in the southern Tibetan Plateau based on an improved spatial domain filtering approach for GRACE/GRACE-FO
solutions. International Journal of Remote Sensing, 43(10):3563–3591, doi:10.1080/01431161.2022.2099233.
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- Qian, Nijia, Chang, Guobin, Gao, Jingxiang, Shen, Wenbin, and Yan, Zhengwen, 2022. Adaptive DDK Filter for GRACE Time-Variable
Gravity Field with a Novel Anisotropic Filtering Strength Metric. Remote Sensing, 14(13):3114, doi:10.3390/rs14133114.
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- Qian, Nijia, Chang, Guobin, Ditmar, Pavel, Gao, Jingxiang, and Wei, Zhengqiang, 2022. Sparse DDK: A Data-Driven Decorrelation
Filter for GRACE Level-2 Products. Remote Sensing, 14(12):2810, doi:10.3390/rs14122810.
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- Qian, An, Yi, Shuang, Li, Feng, Su, Boli, Sun, Guangtong, and Liu, Xiaoyang, 2022. Evaluation of the Consistency of Three
GRACE Gap-Filling Data. Remote Sensing, 14(16):3916, doi:10.3390/rs14163916.
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- Qin, Jianhuang, Cheng, Xuhua, Yang, Chengcheng, Ou, Niansen, and Xiong, Xiaoqin, 2022. Mechanism of interannual variability
of ocean bottom pressure in the South Pacific. Climate Dynamics, 59(7-8):2103–2116, doi:10.1007/s00382-022-06198-0.
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- Qu, Wei, Jin, Zehui, Zhang, Qin, Gao, Yuan, Zhang, Pufang, and Chen, Peinan, 2022. Estimation of Evapotranspiration in the
Yellow River Basin from 2002 to 2020 Based on GRACE and GRACE Follow-On Observations. Remote Sensing, 14(3):730, doi:10.3390/rs14030730.
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- Ramillien, Guillaume, Seoane, Luc\'ıa, and Darrozes, José, 2022. Correction: Ramillien et al. An Innovative Slepian
Approach to Invert GRACE KBRR for Localized Hydrological Information at the Sub-Basin Scale. Remote Sens. 2021, 13, 1824.
Remote Sensing, 14(23):5938, doi:10.3390/rs14235938.
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- Rao, Weilong and Sun, Wenke, 2022. Uplift of the Tibetan Plateau: How to Accurately Compute the Hydrological Load Effect?.
Journal of Geophysical Research (Solid Earth), 127(1):e22475, doi:10.1029/2021JB022475.
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- Rao, WeiLong and Sun, WenKe, 2022. Runoff Variations in the Yangtze River Basin and Sub-basins based on GRACE, Hydrological
models, and In-situ data. Earth and Planetary Physics, 6:228, doi:10.26464/epp2022021.
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- Rateb, Ashraf, Sun, Alexander, Scanlon, Bridget R., Save, Himanshu, and Hasan, Emad, 2022. Reconstruction of GRACE Mass Change
Time Series Using a Bayesian Framework. Earth and Space Science, 9(7):e02162, doi:10.1029/2021EA002162.
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- Rees, Emily Rose, Wade, Andrew R., Sutton, Andrew J., and McKenzie, Kirk, 2022. Absolute Frequency Readout of Cavity against
Atomic Reference. Remote Sensing, 14(11):2689, doi:10.3390/rs14112689.
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- Ren, Diandong, Leslie, Lance M., Huang, Ying, and Hu, Aixue, 2022. Correction to: Correction of GRACE measurements of the
Earth's moment of inertia (MOI). Climate Dynamics, 58(9-10):2539–2539, doi:10.1007/s00382-021-06049-4.
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- Ren, Diandong, Leslie, Lance M., Huang, Ying, and Hu, Aixue, 2022. Correction of GRACE measurements of the Earth's moment
of inertia (MOI). Climate Dynamics, 58(9-10):2525–2538, doi:10.1007/s00382-021-06022-1.
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- Sasgen, Ingo, Salles, Annette, Wegmann, Martin, Wouters, Bert, Fettweis, Xavier, Noël, Brice P. Y., and Beck, Christoph,
2022. Arctic glaciers record wavier circumpolar winds. Nature Climate Change, 12(3):249–255, doi:10.1038/s41558-021-01275-4.
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- Scanlon, Bridget R., Rateb, Ashraf, Anyamba, Assaf, Kebede, Seifu, MacDonald, Alan M., Shamsudduha, Mohammad, Small, Jennifer,
Sun, Alexander, Taylor, Richard G., and Xie, Hua, 2022. Linkages between GRACE water storage, hydrologic extremes, and climate
teleconnections in major African aquifers. Environmental Research Letters, 17(1):014046, doi:10.1088/1748-9326/ac3bfc.
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- Schlicht, Anja, 2022. GRACE Accelerometers Sensitive to Ionosphere Plasma Waves: Similarities between Twangs and Whistlers.
Geosciences, 12(6):228, doi:10.3390/geosciences12060228.
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- Schneck, Rainer, Gayler, Veronika, Nabel, Julia E. M. S., Raddatz, Thomas, Reick, Christian H., and Schnur, Reiner,
2022. Assessment of JSBACHv4.30 as a land component of ICON-ESM-V1 in comparison to its predecessor JSBACHv3.2 of MPI-ESM1.2.
Geoscientific Model Development, 15(22):8581–8611, doi:10.5194/gmd-15-8581-2022.
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- Seka, Ayalkibet Mekonnen, Zhang, Jiahua, Zhang, Da, Ayele, Elias Gebeyehu, Han, Jiaqi, Prodhan, Foyez Ahmed, Zhang, Guoping,
and Liu, Qi, 2022. Hydrological drought evaluation using GRACE satellite-based drought index over the lake basins, East Africa.
Science of the Total Environment, 852:158425, doi:10.1016/j.scitotenv.2022.158425.
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- Seraphin, Pierre, Gon\ccalvès, Julio, Hamelin, Bruno, Stieglitz, Thomas, and Deschamps, Pierre, 2022. Influence of
intensive agriculture and geological heterogeneity on the recharge of an arid aquifer system (Saq-Ram, Arabian Peninsula)
inferred from GRACE data. Hydrology and Earth System Sciences, 26(22):5757–5771, doi:10.5194/hess-26-5757-2022.
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- Shang, Peisi, Su, Xiaoli, and Luo, Zhicai, 2022. Characteristics of the Greenland Ice Sheet Mass Variations Revealed by GRACE/GRACE
Follow-On Gravimetry. Remote Sensing, 14(18):4442, doi:10.3390/rs14184442.
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- She, Yawen, Fu, Guangyu, and Xu, Changyi, 2022. Seasonal terrestrial water load modulation of seismicity at the southeastern
margin of the Tibetan Plateau constrained by GNSS and GRACE data. Geophysical Journal International, 230(3):1966–1979,
doi:10.1093/gji/ggac168.
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- Shen, Yifan, Zheng, Wei, Zhu, Huizhong, Yin, Wenjie, Xu, Aigong, Pan, Fei, Wang, Qiang, and Zhao, Yelong, 2022. Inverted Algorithm
of Groundwater Storage Anomalies by Combining the GNSS, GRACE/GRACE-FO, and GLDAS: A Case Study in the North China Plain.
Remote Sensing, 14(22):5683, doi:10.3390/rs14225683.
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- Shi, Tianyan, Fukuda, Yoichi, Doi, Koichiro, and Okuno, Jun'ichi, 2022. Extraction of GRACE/GRACE-FO observed mass change
patterns across Antarctica via independent component analysis (ICA). Geophysical Journal International, 229(3):1914–1926,
doi:10.1093/gji/ggac033.
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- Shi, Tong, Guo, Jinyun, Yan, Haoming, Chang, Xiaotao, Ji, Bing, and Liu, Xin, 2022. Assessing Height Variations in Qinghai-Tibet
Plateau from Time-Varying Gravity Data and Hydrological Model. Remote Sensing, 14(19):4707, doi:10.3390/rs14194707.
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- Shihora, Linus, Balidakis, Kyriakos, Dill, Robert, Dahle, Christoph, Ghobadi-Far, Khosro, Bonin, Jennifer, and Dobslaw, Henryk,
2022. Non-Tidal Background Modeling for Satellite Gravimetry Based on Operational ECWMF and ERA5 Reanalysis Data: AOD1B RL07.
Journal of Geophysical Research (Solid Earth), 127(8):e24360, doi:10.1029/2022JB024360.
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- Singh, Dharmaveer, Zhu, Yu, Liu, Shiyin, Srivastava, Prashant K., Dharpure, Jaydeo K., Chatterjee, Debrupa, Sahu, Rakesh,
and Gagnon, Alexandre S., 2022. Exploring the links between variations in snow cover area and climatic variables in a Himalayan
catchment using earth observations and CMIP6 climate change scenarios. Journal of Hydrology, 608:127648, doi:10.1016/j.jhydrol.2022.127648.
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- Sliwinska, Justyna, Winska, Malgorzata, and Nastula, Jolanta, 2022. Exploiting the Combined GRACE/GRACE-FO Solutions to Determine
Gravimetric Excitations of Polar Motion. Remote Sensing, 14(24):6292, doi:10.3390/rs14246292.
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- Sokneth, Lim, Mohanasundaram, S., Shrestha, Sangam, Babel, Mukand S., and Virdis, Salvatore G. P., 2022. Evaluating aquifer
stress and resilience with GRACE information at different spatial scales in Cambodia. Hydrogeology Journal, 30(8):2359–2377,
doi:10.1007/s10040-022-02570-w.
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- Soltani, Keyvan and Azari, Arash, 2022. Forecasting groundwater anomaly in the future using satellite information and machine
learning. Journal of Hydrology, 612:128052, doi:10.1016/j.jhydrol.2022.128052.
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- Song, Xin, Yang, Rong, Zhan, Xingqun, Fu, Naifeng, Yang, Zhe, and Yu, Xumin, 2022. Vertical characterization on global ionospheric
variations during the magnetic storm in September 2017 with hierarchical subtraction method. Advances in Space Research,
69(3):1380–1392, doi:10.1016/j.asr.2021.11.034.
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- Su, Guangli and Zhan, Wei, 2022. Abnormal depletion of terrestrial water storage and crustal uplift owing to the 2019 drought
in Yunnan, China. Geophysical Journal International, 231(1):108–117, doi:10.1093/gji/ggac183.
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- Suesser-Rechberger, Barbara, Krauss, Sandro, Strasser, Sebastian, and Mayer-Guerr, Torsten, 2022. Improved precise kinematic
LEO orbits based on the raw observation approach. Advances in Space Research, 69(10):3559–3570, doi:10.1016/j.asr.2022.03.014.
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- Sun, Pengchao, Guo, Changsheng, and Wei, Dongping, 2022. GRACE Data Explore Moho Change Characteristics Beneath the South
America Continent near the Chile Triple Junction. Remote Sensing, 14(4):924, doi:10.3390/rs14040924.
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- Sun, Jianchong, Hu, Litang, Liu, Xin, and Sun, Kangning, 2022. Enhanced Understanding of Groundwater Storage Changes under
the Influence of River Basin Governance Using GRACE Data and Downscaling Model. Remote Sensing, 14(19):4719, doi:10.3390/rs14194719.
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- Sun, Jianwei, Wang, Linsong, Peng, Zhenran, Fu, Zhenyan, and Chen, Chao, 2022. The Sea Level Fingerprints of Global Terrestrial
Water Storage Changes Detected by GRACE and GRACE-FO Data. Pure and Applied Geophysics, 179(9):3493–3509, doi:10.1007/s00024-022-03123-8.
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- Swain, Sabyasachi, Taloor, Ajay Kumar, Dhal, Lingaraj, Sahoo, Sashikanta, and Al-Ansari, Nadhir, 2022. Impact of climate change
on groundwater hydrology: a comprehensive review and current status of the Indian hydrogeology. Applied Water Science,
12(6):120, doi:10.1007/s13201-022-01652-0.
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- Szelachowska, Malgorzata, Godah, Walyeldeen, and Krynski, Jan, 2022. Contribution of GRACE Satellite Mission to the Determination
of Orthometric/Normal Heights Corrected for Their Dynamics—A Case Study of Poland. Remote Sensing, 14(17):4271,
doi:10.3390/rs14174271.
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- Trautmann, Tina, Koirala, Sujan, Carvalhais, Nuno, Güntner, Andreas, and Jung, Martin, 2022. The importance of vegetation
in understanding terrestrial water storage variations. Hydrology and Earth System Sciences, 26(4):1089–1109,
doi:10.5194/hess-26-1089-2022.
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- Tregoning, P., McGirr, R., Pfeffer, J., Purcell, A., McQueen, H., Allgeyer, S., and McClusky, S. C., 2022. ANU GRACE
Data Analysis: Characteristics and Benefits of Using Irregularly Shaped Mascons. Journal of Geophysical Research (Solid
Earth), 127(2):e22412, doi:10.1029/2021JB022412.
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- Tripathi, Vasaw, Groh, Andreas, Horwath, Martin, and Ramsankaran, Raaj, 2022. Scaling methods of leakage correction in GRACE
mass change estimates revisited for the complex hydro-climatic setting of the Indus Basin. Hydrology and Earth System Sciences,
26(17):4515–4535, doi:10.5194/hess-26-4515-2022.
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- Tripathi, Akshar, Reshi, Arjuman R., Moniruzzaman, Md., Rahaman, Khan R., Tiwari, Reet K., and Malik, Kapil, 2022. Interoperability
of -Band Sentinel-1 SAR and GRACE Satellite Sensors on PSInSAR-Based Urban Surface Subsidence Mapping of Varanasi, India.
IEEE Sensors Journal, 22(21):21071–21081, doi:10.1109/JSEN.2022.3208117.
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- Tucker, E. S., Nerem, R. S., and Loomis, B. D., 2022. Simulation of a Future SLR Satellite to Improve Low-Degree
Gravity Estimates. Journal of Geophysical Research (Solid Earth), 127(12):e2022JB025743, doi:10.1029/2022JB025743.
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- Uz, Metehan, Atman, Kazım Gökhan, Akyilmaz, Orhan, Shum, C. K., Kele\cs, Merve, Ay, Tu\ug\cce, Tando\ugdu,
Bihter, Zhang, Yu, and Mercan, Hüseyin, 2022. Bridging the gap between GRACE and GRACE-FO missions with deep learning
aided water storage simulations. Science of the Total Environment, 830:154701, doi:10.1016/j.scitotenv.2022.154701.
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- Verbanac, Giuliana, Bandic, Mario, and Krauss, Sandro, 2022. Influence of the solar wind high-speed streams on the thermospheric
neutral density during the declining phase of solar cycle 23. Advances in Space Research, 69(12):4335–4350, doi:10.1016/j.asr.2022.03.032.
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- Vishwakarma, Bramha Dutt, Horwath, Martin, Groh, Andreas, and Bamber, Jonathan L., 2022. Accounting for GIA signal in GRACE
products. Geophysical Journal International, 228(3):2056–2060, doi:10.1093/gji/ggab464.
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- Wang, Yaxiang, Cao, Ziyi, Pang, Zhaojun, Liu, Yan, Tian, Jiawei, Li, Juan, Yin, Lirong, Zheng, Wenfeng, and Liu, Shan, 2022.
Influence of Three Gorges Dam on earthquakes based on GRACE gravity field. Open Geosciences, 14(1):350, doi:10.1515/geo-2022-0350.
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- Wang, Liuming, Wang, Junxiao, Li, Mengyao, Wang, Lachun, Li, Xingong, and Zhu, Liping, 2022. Response of terrestrial water
storage and its change to climate change in the endorheic Tibetan Plateau. Journal of Hydrology, 612:128231, doi:10.1016/j.jhydrol.2022.128231.
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- Wang, Dongzhen, Zhao, Bin, Li, Yu, Yu, Jiansheng, Chen, Yi, and Zhou, Xiaohui, 2022. Determination of tectonic and nontectonic
vertical motion rates of the North China Craton using dense GPS and GRACE data. Journal of Asian Earth Sciences, 236:105314,
doi:10.1016/j.jseaes.2022.105314.
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- Wang, Song-Yun, Li, Jin, Chen, Jianli, and Hu, Xiao-Gong, 2022. On the Improvement of Mass Load Inversion With GNSS Horizontal
Deformation: A Synthetic Study in Central China. Journal of Geophysical Research (Solid Earth), 127(10):e2021JB023696,
doi:10.1029/2021JB023696.
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- Wang, Kan, El-Mowafy, Ahmed, and Yang, Xuhai, 2022. URE and URA for predicted LEO satellite orbits at different altitudes.
Advances in Space Research, 70(8):2412–2423, doi:10.1016/j.asr.2022.08.039.
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- Wang, Guodong, He, Yongli, Huang, Jianping, Guan, Xiaodan, Wang, Xiaoxia, Hu, Huancui, Wang, Shanshan, and Xie, Yongkun, 2022.
The Influence of Precipitation Phase Changes on the Recharge Process of Terrestrial Water Storage in the Cold Season Over
the Tibetan Plateau. Journal of Geophysical Research (Atmospheres), 127(4):e2021JD035824, doi:10.1029/2021JD035824.
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- Wang, Kan, Liu, Jiawei, Su, Hang, El-Mowafy, Ahmed, and Yang, Xuhai, 2022. Real-Time LEO Satellite Orbits Based on Batch Least-Squares
Orbit Determination with Short-Term Orbit Prediction. Remote Sensing, 15(1):133, doi:10.3390/rs15010133.
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- Wei, Zhenzhen and Wan, Xiaoyun, 2022. Spatial and Temporal Characteristics of NDVI in the Weihe River Basin and Its Correlation
with Terrestrial Water Storage. Remote Sensing, 14(21):5532, doi:10.3390/rs14215532.
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- Wiese, D. N., Bienstock, B., Blackwood, C., Chrone, J., Loomis, B. D., Sauber, J., Rodell, M., Baize, R., Bearden,
D., Case, K., Horner, S., Luthcke, S., Reager, J. T., Srinivasan, M., Tsaoussi, L., Webb, F., Whitehurst, A., and Zlotnicki,
V., 2022. The Mass Change Designated Observable Study: Overview and Results. Earth and Space Science, 9(8):e02311,
doi:10.1029/2022EA002311.
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- Winkelbauer, Susanna, Mayer, Michael, Seitner, Vanessa, Zsoter, Ervin, Zuo, Hao, and Haimberger, Leopold, 2022. Diagnostic
evaluation of river discharge into the Arctic Ocean and its impact on oceanic volume transports. Hydrology and Earth System
Sciences, 26(2):279–304, doi:10.5194/hess-26-279-2022.
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- Wu, Shuaiying, Liu, Guoxiang, Ran, Jiangjun, You, Wei, Wang, Lei, Ding, Yihang, Wang, Xiaowen, Yin, Gaofei, Mao, Wenfei, and
Bao, Jiawen, 2022. Multitemporal mass change analysis of Greenland Ice Sheet using variational mode decomposition. Geophysical
Journal International, 230(3):1711–1724, doi:10.1093/gji/ggac132.
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- Xanke, Julian and Liesch, Tanja, 2022. Quantification and possible causes of declining groundwater resources in the Euro-Mediterranean
region from 2003 to 2020. Hydrogeology Journal, 30(2):379–400, doi:10.1007/s10040-021-02448-3.
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- Xiang, Longwei, Wang, Hansheng, Steffen, Holger, Qiao, Baojin, Feng, Wei, Jia, Lulu, and Gao, Peng, 2022. Determination of
Weak Terrestrial Water Storage Changes from GRACE in the Interior of the Tibetan Plateau. Remote Sensing, 14(3):544,
doi:10.3390/rs14030544.
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- Xiang, Yunfei, Yue, Jianping, Liu, Guoliang, and Chen, Yuanyuan, 2022. Characterizing the Spatial Patterns of Vertical Crustal
Deformations Over the South American Continent Based on GNSS Imaging. Pure and Applied Geophysics, 179(10):3569–3587,
doi:10.1007/s00024-022-03144-3.
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- Xie, Jingkai, Xu, Yue-Ping, Booij, Martijn J., and Guo, Yuxue, 2022. Influences of reservoir operation on terrestrial water
storage changes detected by GRACE in the Yellow River basin. Journal of Hydrology, 610:127924, doi:10.1016/j.jhydrol.2022.127924.
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- Xie, Jingkai, Xu, Yue-Ping, Yu, Hongjie, Huang, Yan, and Guo, Yuxue, 2022. Monitoring the extreme flood events in the Yangtze
River basin based on GRACE and GRACE-FO satellite data. Hydrology and Earth System Sciences, 26(22):5933–5954,
doi:10.5194/hess-26-5933-2022.
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- Xiong, Jinghua, Guo, Shenglian, Chen, Deliang, Zhong, Yulong, Liu, Bingshi, Abhishek, and Yin, Jiabo, 2022. Past and future
terrestrial water storage changes in the lower Mekong River basin: The influences of climatic and non-climatic factors. Journal
of Hydrology, 612:128275, doi:10.1016/j.jhydrol.2022.128275.
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- Xiong, Jinghua, Guo, Shenglian, Abhishek, Li, Jun, and Yin, Jiabo, 2022. A Novel Standardized Drought and Flood Potential
Index Based on Reconstructed Daily GRACE Data. Journal of Hydrometeorology, 23(9):1419–1438, doi:10.1175/JHM-D-22-0011.1.
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- Xu, Fenglin, Zhang, Guoqing, Yi, Shuang, and Chen, Wenfeng, 2022. Seasonal trends and cycles of lake-level variations over
the Tibetan Plateau using multi-sensor altimetry data. Journal of Hydrology, 604:127251, doi:10.1016/j.jhydrol.2021.127251.
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- Xu, Pengfei, Jiang, Tao, Zhang, Chuanyin, Shi, Ke, and Li, Wanqiu, 2022. Recovering Regional Groundwater Storage Anomalies
by Combining GNSS and Surface Mass Load Data: A Case Study in Western Yunnan. Remote Sensing, 14(16):4032, doi:10.3390/rs14164032.
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- Xu, Yuyue, Zhu, Xiaoyun, Cheng, Xing, Gun, Zhao, Lin, Jing, Zhao, Jianwei, Yao, Ling, and Zhou, Chenghu, 2022. Drought assessment
of China in 2002-2017 based on a comprehensive drought index. Agricultural and Forest Meteorology, 319:108922, doi:10.1016/j.agrformet.2022.108922.
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- Yan, Xiao, Zhang, Bao, Yao, Yibin, Yin, Jiabo, Wang, Hansheng, and Ran, Qishun, 2022. Jointly using the GLDAS 2.2 model and
GRACE to study the severe Yangtze flooding of 2020. Journal of Hydrology, 610:127927, doi:10.1016/j.jhydrol.2022.127927.
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- Yang, Zhouming, Liu, Xin, Guo, Jinyun, Guo, Hengyang, Li, Guowei, Kong, Qiaoli, and Chang, Xiaotao, 2022. Relative Kinematic
Orbit Determination for GRACE-FO Satellite by Jointing GPS and LRI. Remote Sensing, 14(4):993, doi:10.3390/rs14040993.
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- Yang, Peng, Wang, Wenyu, Zhai, Xiaoyan, Xia, Jun, Zhong, Yulong, Luo, Xiangang, Zhang, Shengqing, and Chen, Nengcheng, 2022.
Influence of Terrestrial Water Storage on Flood Potential Index in the Yangtze River Basin, China. Remote Sensing,
14(13):3082, doi:10.3390/rs14133082.
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- Yang, Xuewen, Wang, Ninglian, Chen, An'an, Li, Zhijie, Liang, Qian, and Zhang, Yujie, 2022. Impacts of Climate Change, Glacier
Mass Loss and Human Activities on Spatiotemporal Variations in Terrestrial Water Storage of the Qaidam Basin, China. Remote
Sensing, 14(9):2186, doi:10.3390/rs14092186.
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- Yang, Taoli, Yu, Hanwen, and Wang, Yong, 2022. An efficient low-pass-filtering algorithm to de-noise global GRACE data. Remote
Sensing of Environment, 283:113303, doi:10.1016/j.rse.2022.113303.
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- Yang, Xu, Zhu, Xiaoqian, Weng, Libin, and Yang, Shenggao, 2022. A New Exospheric Temperature Model Based on CHAMP and GRACE
Measurements. Remote Sensing, 14(20):5198, doi:10.3390/rs14205198.
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- Yang, Yichao, Yamamoto, Kohei, Dovale Álvarez, Miguel, Wei, Daikang, Esteban Delgado, Juan José, Müller,
Vitali, Jia, Jianjun, and Heinzel, Gerhard, 2022. On-Axis Optical Bench for Laser Ranging Instruments in Future Gravity Missions.
Sensors, 22(5):2070, doi:10.3390/s22052070.
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- Yang, Fan, Luo, ZhiCai, Zhou, Hao, and Kusche, Jürgen, 2022. On study of the Earth topography correction for the GRACE
surface mass estimation. Journal of Geodesy, 96(12):95, doi:10.1007/s00190-022-01683-0.
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- Yang, Peng, Zhang, Shengqing, Xia, Jun, Zhang, Yongyong, Wang, Wenyu, and Yao, Tianci, 2022. Occurrence of drought events
at the land-atmosphere interface in Central Asia assessed via advanced microwave scanning radiometer data. International
Journal of Climatology, 42(14):7408–7425, doi:10.1002/joc.7655.
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- Yao, Chaolong, Shum, C. K., Luo, Zhicai, Li, Qiong, Lin, Xu, Xu, Chuang, Zhang, Yu, Chen, Jingqi, Huang, Qingwen, and
Chen, Yongxin, 2022. An optimized hydrological drought index integrating GNSS displacement and satellite gravimetry data.
Journal of Hydrology, 614:128647, doi:10.1016/j.jhydrol.2022.128647.
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- Yi, Shuang and Sneeuw, Nico, 2022. A novel spatial filter to reduce north-south striping noise in GRACE spherical harmonic
coefficients. Journal of Geodesy, 96(4):23, doi:10.1007/s00190-022-01614-z.
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- Yin, Wenjie, Zhang, Gangqiang, Liu, Futian, Zhang, Dasheng, Zhang, Xiuping, and Chen, Sheming, 2022. Improving the spatial
resolution of GRACE-based groundwater storage estimates using a machine learning algorithm and hydrological model. Hydrogeology
Journal, 30(3):947–963, doi:10.1007/s10040-021-02447-4.
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- Yin, Wenjie, Yang, Shuai, Hu, Litang, Tian, Siyuan, Wang, Xuelei, Zhao, Ruxin, and Li, Peijun, 2022. Improving understanding
of spatiotemporal water storage changes over China based on multiple datasets. Journal of Hydrology, 612:128098, doi:10.1016/j.jhydrol.2022.128098.
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- Yin, Wenjie, Zhang, Gangqiang, Han, Shin-Chan, Yeo, In-Young, and Zhang, Menglin, 2022. Improving the resolution of GRACE-based
water storage estimates based on machine learning downscaling schemes. Journal of Hydrology, 613:128447, doi:10.1016/j.jhydrol.2022.128447.
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- Zarinmehr, Hawzhin, Tizro, A. Taheri, Fryar, Alan E., Pour, M. Khodamorad, and Fasihi, Rojin, 2022. Prediction of groundwater
level variations based on gravity recovery and climate experiment (GRACE) satellite data and a time-series analysis: a case
study in the Lake Urmia basin, Iran. Environmental Earth Sciences, 81(6):180, doi:10.1007/s12665-022-10296-x.
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- Zhan, Pengfei, Song, Chunqiao, Luo, Shuangxiao, Ke, Linghong, Liu, Kai, and Chen, Tan, 2022. Investigating different timescales
of terrestrial water storage changes in the northeastern Tibetan Plateau. Journal of Hydrology, 608:127608, doi:10.1016/j.jhydrol.2022.127608.
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- Zhang, Xu, Li, Jinbao, Dong, Qianjin, Wang, Zifeng, Zhang, Han, and Liu, Xiaofeng, 2022. Bridging the gap between GRACE and
GRACE-FO using a hydrological model. Science of the Total Environment, 822:153659, doi:10.1016/j.scitotenv.2022.153659.
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- Zhang, Bao, Yao, Yibin, and He, Yulin, 2022. Bridging the data gap between GRACE and GRACE-FO using artificial neural network
in Greenland. Journal of Hydrology, 608:127614, doi:10.1016/j.jhydrol.2022.127614.
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- Zhang, Panpan, Li, Zhicai, Bao, Lifeng, Zhang, Peng, Wang, Yongshang, Wu, Lin, and Wang, Yong, 2022. The Refined Gravity Field
Models for Height System Unification in China. Remote Sensing, 14(6):1437, doi:10.3390/rs14061437.
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- Zhang, Tengxu, Shen, Ziyu, He, Lin, Shen, Wen-Bin, and Li, Wei, 2022. Strain Field Features and Three-Dimensional Crustal
Deformations Constrained by Dense GRACE and GPS Measurements in NE Tibet. Remote Sensing, 14(11):2638, doi:10.3390/rs14112638.
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- Zhang, Chuanhui, Lv, Aifeng, Jia, Shaofeng, and Qi, Shanshan, 2022. Longterm multisource satellite data fusion reveals dynamic
expansion of lake water area and storage in a hyperarid basin of China. Journal of Hydrology, 610:127888, doi:10.1016/j.jhydrol.2022.127888.
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- Zhang, Xueliang, Ren, Li, and Feng, Wei, 2022. Comparison of the shallow groundwater storage change estimated by a distributed
hydrological model and GRACE satellite gravimetry in a well-irrigated plain of the Haihe River basin, China. Journal of
Hydrology, 610:127799, doi:10.1016/j.jhydrol.2022.127799.
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- Zhang, Dan, Liu, Xiaomang, Li, Xianghu, Bai, Peng, and Li, Jiayun, 2022. Assessing changes in total water storage in two large
freshwater lake basins of China. Hydrological Processes, 36(3):e14556, doi:10.1002/hyp.14556.
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- Zhao, Anzhou, Xiang, Kaizheng, Zhang, Anbing, and Zhang, Xiangrui, 2022. Spatial-temporal evolution of meteorological and
groundwater droughts and their relationship in the North China Plain. Journal of Hydrology, 610:127903, doi:10.1016/j.jhydrol.2022.127903.
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- Zheng, Ziyan, Ning, Like, Dai, Danqiong, Chen, Liang, Wang, Yongli, Ma, Zhuguo, Yang, Zong-Liang, and Zhan, Chesheng, 2022.
Water budget variation, groundwater depletion, and water resource vulnerability in the Haihe River Basin during the new millennium.
Physics and Chemistry of the Earth, 126:103141, doi:10.1016/j.pce.2022.103141.
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- Zhong, Ruida, Zhao, Tongtiegang, Chen, Xiaohong, and Jin, Haoyu, 2022. Monitoring drought in ungauged areas using satellite
altimetry: The Standardized River Stage Index. Journal of Hydrology, 612:128308, doi:10.1016/j.jhydrol.2022.128308.
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- Zhou, Hao, Dai, Min, Wang, Penghui, Wei, Min, Tang, Lu, Xu, Siyou, and Luo, Zhicai, 2022. Assessment of GRACE terrestrial
water storage estimates using an improved forward modeling method: a case study in Africa. Frontiers in Earth Science,
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- Zhou, Xingyu, Chen, Hua, Jiang, Weiping, Chen, Yan, Jin, Taoyong, Liu, Tianjun, and Gao, Yang, 2022. A new ambiguity resolution
method for LEO precise orbit determination. Journal of Geodesy, 96(7):49, doi:10.1007/s00190-022-01629-6.
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- Zhou, Ting, Wen, Xiaohu, Feng, Qi, Yu, Haijiao, and Xi, Haiyang, 2022. Bayesian Model Averaging Ensemble Approach for Multi-Time-Ahead
Groundwater Level Prediction Combining the GRACE, GLEAM, and GLDAS Data in Arid Areas. Remote Sensing, 15(1):188, doi:10.3390/rs15010188.
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- Zhu, Qian and Zhang, Hao, 2022. Groundwater drought characteristics and its influencing factors with corresponding quantitative
contribution over the two largest catchments in China. Journal of Hydrology, 609:127759, doi:10.1016/j.jhydrol.2022.127759.
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- Zhu, Chuandong and Zhan, Wei, 2022. Inter-annual oscillations of terrestrial water storage in Qinghai-Tibetan plateau from
GRACE data. Journal of Applied Geodesy, 16(4):361–371, doi:10.1515/jag-2022-0002.
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- Zotov, Leonid, Bizouard, Christian, Shum, C. K., Zhang, Chaoyang, Sidorenkov, Nikolay, and Yushkin, Victor, 2022. Analysis
of Earth's polar motion and length of day trends in comparison with estimates using second degree stokes coefficients from
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- Zou, Yiguang, Kuang, Xingxing, Feng, Yuqing, Jiao, Jiu Jimmy, Liu, Junguo, Wang, Can, Fan, Linfeng, Wang, Qingjing, Chen,
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Storage in the Tibetan Plateau. Geophysical Research Letters, 49(18):e00092, doi:10.1029/2022GL100092.
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- Abedini, Abbas, Keller, Wolfgang, and Amiri-Simkooei, Alireza, 2021. Estimation of surface density changes using a mascon
method in GRACE-like missions. Journal of Earth System Science, 130(1):26, doi:10.1007/s12040-020-01535-5.
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- Abhishek and Kinouchi, Tsuyoshi, 2021. Synergetic application of GRACE gravity data, global hydrological model, and in-situ
observations to quantify water storage dynamics over Peninsular India during 2002-2017. Journal of Hydrology, 596:126069,
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- Abhishek, Kinouchi, Tsuyoshi, and Sayama, Takahiro, 2021. A comprehensive assessment of water storage dynamics and hydroclimatic
extremes in the Chao Phraya River Basin during 2002-2020. Journal of Hydrology, 603:126868, doi:10.1016/j.jhydrol.2021.126868.
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- Ahi, Goncar Okay, 2021. Evaluation of filtering effects on terrestrial water storage estimation from new GRACE releases. Geocarto
International, 36(4):449–464, doi:10.1080/10106049.2019.1611950, Taylor & Francis.
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- Ahi, Gonca Okay and Cekim, Hatice Oncel, 2021. Long-term temporal prediction of terrestrial water storage changes over global
basins using GRACE and limited GRACE-FO data. Acta Geodaetica et Geophysica, .
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- Ahmed, Mohamed, Aqnouy, Mourad, and Stitou El Messari, Jamal, 2021. Sustainability of Morocco's groundwater resources in response
to natural and anthropogenic forces. Journal of Hydrology, 603:126866, doi:10.1016/j.jhydrol.2021.126866.
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- Alam, Sarfaraz, Gebremichael, Mekonnen, Ban, Zhaoxin, Scanlon, Bridget R., Senay, Gabriel, and Lettenmaier, Dennis P., 2021.
Post-Drought Groundwater Storage Recovery in California's Central Valley. Water Resources Research, 57(10):e30352,
doi:10.1029/2021WR030352.
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- Ali, Shoaib, Liu, Dong, Fu, Qiang, Cheema, Muhammad Jehanzeb Masud, Pham, Quoc Bao, Rahaman, Md. Mafuzur, Dang, Thanh Duc,
and Anh, Duong Tran, 2021. Improving the Resolution of GRACE Data for Spatio-Temporal Groundwater Storage Assessment. Remote
Sensing, 13(17):3513, doi:10.3390/rs13173513.
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- Argus, Donald F., Peltier, W. Richard, Blewitt, Geoffrey, and Kreemer, Corné, 2021. The Viscosity of the Top Third
of the Lower Mantle Estimated Using GPS, GRACE, and Relative Sea Level Measurements of Glacial Isostatic Adjustment. Journal
of Geophysical Research (Solid Earth), 126(5):e21537, doi:10.1029/2020JB021537.
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- Bahrami, Ala, Goïta, Kalifa, Magagi, Ramata, Davison, Bruce, Razavi, Saman, Elshamy, Mohamed, and Princz, Daniel, 2021.
Data assimilation of satellite-based terrestrial water storage changes into a hydrology land-surface model. Journal of
Hydrology, 597:125744, doi:10.1016/j.jhydrol.2020.125744.
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- Barnoud, Anne, Pfeffer, Julia, Guérou, Adrien, Frery, Marie-Laure, Siméon, Mathilde, Cazenave, Anny, Chen, Jianli,
Llovel, William, Thierry, Virginie, Legeais, Jean-Fran\ccois, and Ablain, Michaël., 2021. Contributions of Altimetry
and Argo to Non-Closure of the Global Mean Sea Level Budget Since 2016. Geophysical Research Letters, 48(14):e92824,
doi:10.1029/2021GL092824.
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- Behzadpour, Saniya, Mayer-Gürr, Torsten, and Krauss, Sandro, 2021. GRACE Follow On Accelerometer Data Recovery. Journal
of Geophysical Research (Solid Earth), 126(5):e21297, doi:10.1029/2020JB021297.
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- Bian, Yankai, Yue, Jianping, Ferreira, Vagner G., Cong, Kanglin, and Cai, Dongjian, 2021. Common Mode Component and Its Potential
Effect on GPS-Inferred Crustal Deformations in Greenland. Pure and Applied Geophysics, .
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- Bilitza, Dieter and Xiong, Chao, 2021. A solar activity correction term for the IRI topside electron density model. Advances
in Space Research, 68(5):2124–2137, doi:10.1016/j.asr.2020.11.012.
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- Birylo, Monika and Rzepecka, Zofia, 2021. An Analysis of Total Water Storage Changes Obtained from GRACE FO Observations over
the Venezia Islands Area Supported with Additional Data. Geomatics and Environmental Engineering, 15(2):17–31,
doi:10.7494/geom.2021.15.2.17.
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- Bolaños, Silvana, Salazar, Juan F., Betancur, Teresita, and Werner, Micha, 2021. GRACE reveals depletion of water storage
in northwestern South America between ENSO extremes. Journal of Hydrology, 596:125687, doi:10.1016/j.jhydrol.2020.125687.
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- Boniface, Claude and Bruinsma, Sean, 2021. Uncertainty quantification of the DTM2020 thermosphere model. Journal of Space
Weather and Space Climate, 11:53, doi:10.1051/swsc/2021034.
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- Bose, Indira, Hossain, Faisal, Eldardiry, Hisham, Ahmad, Shahryar, Biswas, Nishan K., Bhatti, Ahmad Zeeshan, Lee, Hyongki,
Aziz, Mazharul, and Kamal Khan, Md. Shah, 2021. Integrating Gravimetry Data With Thermal Infra Red Data From Satellites to
Improve Efficiency of Operational Irrigation Advisory in South Asia. Water Resources Research, 57(4):e28654, doi:10.1029/2020WR028654.
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- Bouaziz, Laurène J. E., Fenicia, Fabrizio, Thirel, Guillaume, de Boer-Euser, Tanja, Buitink, Joost, Brauer, Claudia
C., De Niel, Jan, Dewals, Benjamin J., Drogue, Gilles, Grelier, Benjamin, Melsen, Lieke A., Moustakas, Sotirios, Nossent,
Jiri, Pereira, Fernando, Sprokkereef, Eric, Stam, Jasper, Weerts, Albrecht H., Willems, Patrick, Savenije, Hubert H. G.,
and Hrachowitz, Markus, 2021. Behind the scenes of streamflow model performance. Hydrology and Earth System Sciences,
25(2):1069–1095, doi:10.5194/hess-25-1069-2021.
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- Briand, C., Doerksen, K., and Deleflie, F., 2021. Solar EUV-Enhancement and Thermospheric Disturbances. Space Weather,
19(12):e02840, doi:10.1029/2021SW002840.
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- Bruinsma, Sean, Boniface, Claude, Sutton, Eric K., and Fedrizzi, Mariangel, 2021. Thermosphere modeling capabilities assessment:
geomagnetic storms. Journal of Space Weather and Space Climate, 11:12, doi:10.1051/swsc/2021002.
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- Carabajal, Claudia C. and Boy, Jean-Paul, 2021. Lake and reservoir volume variations in South America from radar altimetry,
ICESat laser altimetry, and GRACE time-variable gravity. Advances in Space Research, 68(2):652–671, doi:10.1016/j.asr.2020.04.022.
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- Chandanpurkar, Hrishikesh A., Reager, John T., Famiglietti, James S., Nerem, R. Steven, Chambers, Don P., Lo, Min-Hui, Hamlington,
Benjamin D., and Syed, Tajdarul H., 2021. The Seasonality of Global Land and Ocean Mass and the Changing Water Cycle. Geophysical
Research Letters, 48(7):e91248, doi:10.1029/2020GL091248.
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- Chao, Nengfang, Jin, Taoyong, Cai, Zuansi, Chen, Gang, Liu, Xianglin, Wang, Zhengtao, and Yeh, Pat J. -F., 2021. Estimation
of component contributions to total terrestrial water storage change in the Yangtze river basin. Journal of Hydrology,
595:125661, doi:10.1016/j.jhydrol.2020.125661.
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- Chao, Lijun, Zhang, Ke, Wang, Jingfeng, Feng, Jin, and Zhang, Mengjie, 2021. A Comprehensive Evaluation of Five Evapotranspiration
Datasets Based on Ground and GRACE Satellite Observations: Implications for Improvement of Evapotranspiration Retrieval Algorithm.
Remote Sensing, 13(12):2414, doi:10.3390/rs13122414.
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- Chen, Qiujie, Shen, Yunzhong, Kusche, Jürgen, Chen, Wu, Chen, Tianyi, and Zhang, Xingfu, 2021. High-Resolution GRACE
Monthly Spherical Harmonic Solutions. Journal of Geophysical Research (Solid Earth), 126(1):e18892, doi:10.1029/2019JB018892.
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- Chen, Jianli, Ries, John C., and Tapley, Byron D., 2021. Assessment of degree-2 order-1 gravitational changes from GRACE and
GRACE Follow-on, Earth rotation, satellite laser ranging, and models. Journal of Geodesy, 95(4):38, doi:10.1007/s00190-021-01492-x.
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- Chen, Jianli, Tapley, Byron, Tamisiea, Mark E., Save, Himanshu, Wilson, Clark, Bettadpur, Srinivas, and Seo, Ki-Weon, 2021.
Error Assessment of GRACE and GRACE Follow-On Mass Change. Journal of Geophysical Research (Solid Earth), 126(9):e22124,
doi:10.1029/2021JB022124.
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- Chen, Weijing, Huang, Chunlin, and Yang, Zong-Liang, 2021. More severe drought detected by the assimilation of brightness
temperature and terrestrial water storage anomalies in Texas during 2010-2013. Journal of Hydrology, 603:126802, doi:10.1016/j.jhydrol.2021.126802.
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- Chen, Zhiwei, Zheng, Wei, Yin, Wenjie, Li, Xiaoping, Zhang, Gangqiang, and Zhang, Jing, 2021. Improving the Spatial Resolution
of GRACE-Derived Terrestrial Water Storage Changes in Small Areas Using the Machine Learning Spatial Downscaling Method. Remote
Sensing, 13(23):4760, doi:10.3390/rs13234760.
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- Chen, Ajiao, Guan, Huade, and Batelaan, Okke, 2021. Seesaw Terrestrial Wetting and Drying Between Eastern and Western Australia.
Earth's Future, 9(5):e2020EF001893, doi:10.1029/2020EF001893.
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- Cheng, Xuhua, Ou, Niansen, Chen, Jiajia, and Huang, Rui Xin, 2021. On the seasonal variations of ocean bottom pressure in
the world oceans. Geoscience Letters, 8(1):29, doi:10.1186/s40562-021-00199-3.
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- Coyle, Shane, Clauer, C. Robert, Hartinger, Michael D., Xu, Zhonghua, and Peng, Yuxiang, 2021. The impact and resolution of
the GPS week number rollover of April 2019 on autonomous geophysical instrument platforms. Geoscientific Instrumentation,
Methods and Data Systems, 10(2):161–168, doi:10.5194/gi-10-161-2021.
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- Croteau, M. J., Sabaka, T. J., and Loomis, B. D., 2021. GRACE Fast Mascons From Spherical Harmonics and a Regularization
Design Trade Study. Journal of Geophysical Research (Solid Earth), 126(8):e22113, doi:10.1029/2021JB022113.
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- Cui, Aihong, Li, Jianfeng, Zhou, Qiming, Zhu, Ruoxin, Liu, Huizeng, Wu, Guofeng, and Li, Qingquan, 2021. Use of a multiscalar
GRACE-based standardized terrestrial water storage index for assessing global hydrological droughts. Journal of Hydrology,
603:126871, doi:10.1016/j.jhydrol.2021.126871.
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- Dangar, Swarup, Asoka, Akarsh, and Mishra, Vimal, 2021. Causes and implications of groundwater depletion in India: A review.
Journal of Hydrology, 596:126103, doi:10.1016/j.jhydrol.2021.126103.
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- Dangar, Swarup and Mishra, Vimal, 2021. Natural and anthropogenic drivers of the lost groundwater from the Ganga River basin.
Environmental Research Letters, 16(11):114009, doi:10.1088/1748-9326/ac2ceb.
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- Danzer, J., Haas, S. J., Schwaerz, M., and Kirchengast, G., 2021. Performance of the Ionospheric Kappa-Correction of
Radio Occultation Profiles Under Diverse Ionization and Solar Activity Conditions. Earth and Space Science, 8(6):e01581,
doi:10.1029/2020EA001581.
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- de Andrade, Bruno César Comini, de Andrade Pinto, Eber José, Ruhoff, Anderson, and Senay, Gabriel B., 2021.
Remote sensing-based actual evapotranspiration assessment in a data-scarce area of Brazil: A case study of the Urucuia Aquifer
System. International Journal of Applied Earth Observation and Geoinformation, 98:102298, doi:10.1016/j.jag.2021.102298.
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- Deggim, Simon, Eicker, Annette, Schawohl, Lennart, Gerdener, Helena, Schulze, Kerstin, Engels, Olga, Kusche, Jürgen,
Saraswati, Anita T., van Dam, Tonie, Ellenbeck, Laura, Dettmering, Denise, Schwatke, Christian, Mayr, Stefan, Klein, Igor,
and Longuevergne, Laurent, 2021. RECOG RL01: correcting GRACE total water storage estimates for global lakes/reservoirs and
earthquakes. Earth System Science Data, 13(5):2227–2244, doi:10.5194/essd-13-2227-2021.
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- Deng, S., Liu, S., Mo, X., Jiang, L., and Bauer-Gottwein, P., 2021. Polar Drift in the 1990s Explained by Terrestrial Water
Storage Changes. Geophysical Research Letters, 48(7):e92114, doi:10.1029/2020GL092114.
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- Deng, Shanshan, Liu, Suxia, and Mo, Xingguo, 2021. Assessment and attribution of China's droughts using an integrated drought
index derived from GRACE and GRACE-FO data. Journal of Hydrology, 603:127170, doi:10.1016/j.jhydrol.2021.127170.
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- Diener, Theresa, Sasgen, Ingo, Agosta, Cécile, Fürst, Johannes J., Braun, Matthias H., Konrad, Hannes, and Fettweis,
Xavier, 2021. Acceleration of dynamic ice loss in Antarctica from satellite gravimetry. Frontiers in Earth Science,
9:1266, doi:10.3389/feart.2021.741789.
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- Drouin, Kimberley L., Lozier, M. Susan, and Johns, William E., 2021. Variability and Trends of the South Atlantic Subtropical
Gyre. Journal of Geophysical Research (Oceans), 126(1):e16405, doi:10.1029/2020JC016405.
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- Durand, Michael, Barros, Ana, Dozier, Jeff, Adler, Robert, Cooley, Sarah, Entekhabi, Dara, Forman, Barton A., Konings, Alexandra
G., Kustas, William P., Lundquist, Jessica D., Pavelsky, Tamlin M., Rodell, Matthew, and Steele-Dunne, Susan, 2021. Achieving
Breakthroughs in Global Hydrologic Science by Unlocking the Power of Multisensor, Multidisciplinary Earth Observations. AGU
Advances, 2(4):e2021AV000455, doi:10.1029/2021AV000455.
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- Farahmand, Alireza, Reager, J. T., and Madani, Nima, 2021. Drought Cascade in the Terrestrial Water Cycle: Evidence From
Remote Sensing. Geophysical Research Letters, 48(14):e93482, doi:10.1029/2021GL093482.
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- Fatolazadeh, Farzam and Goïta, Kalifa, 2021. Mapping terrestrial water storage changes in Canada using GRACE and GRACE-FO.
Science of the Total Environment, 779:146435, doi:10.1016/j.scitotenv.2021.146435.
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- Felfelani, Farshid, Lawrence, David M., and Pokhrel, Yadu, 2021. Representing Intercell Lateral Groundwater Flow and Aquifer
Pumping in the Community Land Model. Water Resources Research, 57(1):e27531, doi:10.1029/2020WR027531.
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- Felsberg, Anne, De Lannoy, Gabriëlle J. M., Girotto, Manuela, Poesen, Jean, Reichle, Rolf H., and Stanley, Thomas,
2021. Global Soil Water Estimates as Landslide Predictor: The Effectiveness of SMOS, SMAP, and GRACE Observations, Land Surface
Simulations, and Data Assimilation. Journal of Hydrometeorology, 22(5):1065–1084, doi:10.1175/JHM-D-20-0228.1.
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- Flechtner, Frank, Reigber, Christoph, Rummel, Reiner, and Balmino, Georges, 2021. Satellite Gravimetry: A Review of Its Realization.
Surveys in Geophysics, 42(5):1029–1074, doi:10.1007/s10712-021-09658-0.
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- Flechtner, Frank, Börgens, Eva, and Sasgen, Ingo, 2021. Was sagen uns Änderungen im Erdschwerefeld?. Physik in
unserer Zeit, 52(4):168–175, doi:10.1002/piuz.202101612.
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- Fok, Hok Sum and Ma, Zhongtian, 2021. Characterization of far-field Mekong freshwater mass transport in the southern South
China Sea using satellite gravimetry. Global and Planetary Change, 207:103686, doi:10.1016/j.gloplacha.2021.103686.
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- Fowler, Keirnan J. A., Coxon, Gemma, Freer, Jim E., Knoben, Wouter J. M., Peel, Murray C., Wagener, Thorsten, Western,
Andrew W., Woods, Ross A., and Zhang, Lu, 2021. Towards more realistic runoff projections by removing limits on simulated
soil moisture deficit. Journal of Hydrology, 600:126505, doi:10.1016/j.jhydrol.2021.126505.
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- Gao, Shang, Li, Zhi, Chen, Mengye, Lin, Peirong, Hong, Zhen, Allen, Daniel, Neeson, Thomas, and Hong, Yang, 2021. Spatiotemporal
variability of global river extent and the natural driving factors revealed by decades of Landsat observations, GRACE gravimetry
observations, and land surface model simulations. Remote Sensing of Environment, 267:112725, doi:10.1016/j.rse.2021.112725.
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- Gemitzi, Alexandra, Koutsias, Nikos, and Lakshmi, Venkataraman, 2021. A Spatial Downscaling Methodology for GRACE Total Water
Storage Anomalies Using GPM IMERG Precipitation Estimates. Remote Sensing, 13(24):5149, doi:10.3390/rs13245149.
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- Girotto, Manuela, Reichle, Rolf, Rodell, Matthew, and Maggioni, Viviana, 2021. Data Assimilation of Terrestrial Water Storage
Observations to Estimate Precipitation Fluxes: A Synthetic Experiment. Remote Sensing, 13(6):1223, doi:10.3390/rs13061223.
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- Goswami, Sujata, Francis, Samuel P., Bandikova, Tamara, and Spero, Robert E., 2021. Analysis of GRACE Follow-On Laser Ranging
Interferometer Derived Inter-Satellite Pointing Angles. IEEE Sensors Journal, 21(17):19209–19221, doi:10.1109/JSEN.2021.3090790.
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- Göttl, Franziska, Groh, Andreas, Schmidt, Michael, Schröder, Ludwig, and Seitz, Florian, 2021. The influence of
Antarctic ice loss on polar motion: an assessment based on GRACE and multi-mission satellite altimetry. Earth, Planets,
and Space, 73(1):99, doi:10.1186/s40623-021-01403-6.
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- Göttl, Franziska, Groh, Andreas, Schmidt, Michael, Schröder, Ludwig, and Seitz, Florian, 2021. Correction to: The
influence of Antarctic ice loss on polar motion: an assessment based on GRACE and multi-mission satellite altimetry. Earth,
Planets and Space, 73(1):133, doi:10.1186/s40623-021-01460-x.
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- Groh, Andreas and Horwath, Martin, 2021. Antarctic Ice Mass Change Products from GRACE/GRACE-FO Using Tailored Sensitivity
Kernels. Remote Sensing, 13(9):1736, doi:10.3390/rs13091736.
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- Guo, Lanlan, Li, Tiewei, Chen, Deliang, Liu, Junguo, He, Bin, and Zhang, Yafeng, 2021. Links between global terrestrial water
storage and large-scale modes of climatic variability. Journal of Hydrology, 598:126419, doi:10.1016/j.jhydrol.2021.126419.
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- Guo, Nannan, Zhou, Xuhua, and Li, Kai, 2021. Effects of New Level-1B Data on GRACE Temporal Gravity Field Models and Precise
Orbit Determination Solutions. Remote Sensing, 13(20):4119, doi:10.3390/rs13204119.
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- Han, Zhiming, Huang, Shengzhi, Huang, Qiang, Leng, Guoyong, Liu, Yi, Bai, Qingjun, He, Panxing, Liang, Hao, and Shi, Wuzhi,
2021. GRACE-based high-resolution propagation threshold from meteorological to groundwater drought. Agricultural and Forest
Meteorology, 307:108476, doi:10.1016/j.agrformet.2021.108476.
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- Han, Shin-Chan, Ghobadi-Far, Khosro, Yeo, In-Young, McCullough, Christopher M., Lee, Eunjee, and Sauber, Jeanne, 2021. GRACE
Follow-On revealed Bangladesh was flooded early in the 2020 monsoon season due to premature soil saturation. Proceedings
of the National Academy of Science, 118(47):2109086118, doi:10.1073/pnas.2109086118.
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- Han, Shin-Chan, Yeo, In-Young, Khaki, Mehdi, McCullough, Christopher M., Lee, Eunjee, and Sauber, Jeanne, 2021. Novel Along-Track
Processing of GRACE Follow-On Laser Ranging Measurements Found Abrupt Water Storage Increase and Land Subsidence During the
2021 March Australian Flooding. Earth and Space Science, 8(11):e01941, doi:10.1029/2021EA001941.
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- Hansen, Nicolaj, Langen, Peter L., Boberg, Fredrik, Forsberg, Rene, Simonsen, Sebastian B., Thejll, Peter, Vandecrux, Baptiste,
and Mottram, Ruth, 2021. Downscaled surface mass balance in Antarctica: impacts of subsurface processes and large-scale atmospheric
circulation. The Cryosphere, 15(9):4315–4333, doi:10.5194/tc-15-4315-2021.
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- Hasan, Emad, Tarhule, Aondover, and Kirstetter, Pierre-Emmanuel, 2021. Twentieth and Twenty-First Century Water Storage Changes
in the Nile River Basin from GRACE/GRACE-FO and Modeling. Remote Sensing, 13(5):953, doi:10.3390/rs13050953.
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- Hattori, A., Aoyama, Y., Okuno, J., and Doi, K., 2021. GNSS Observations of GIA-Induced Crustal Deformation in Lützow-Holm
Bay, East Antarctica. Geophysical Research Letters, 48(13):e93479, doi:10.1029/2021GL093479.
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- He, Hongjie, Yang, Ke, Wang, Shusen, Petrosians, Hasti Andon, Liu, Ming, Li, Junhua, Marcato Junior, José, Gon\ccalves,
Wesley Nunes, Wang, Lanying, and Li, Jonathan, 2021. Deep Learning Approaches to Spatial Downscaling of GRACE Terrestrial
Water Storage Products Using EALCO Model Over Canada. Canadian Journal of Remote Sensing, 47(4):657–675, doi:10.1080/07038992.2021.1954498.
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- Hechenblaikner, Gerald, 2021. Analysis of performance and robustness against jitter of various search methods for acquiring
optical links in space. Applied Optics, 60(13):3936, doi:10.1364/AO.419594.
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- Hu, Zengyun, Zhang, Zizhan, Sang, Yan-Fang, Qian, Jing, Feng, Wei, Chen, Xi, and Zhou, Qiming, 2021. Temporal and spatial
variations in the terrestrial water storage across Central Asia based on multiple satellite datasets and global hydrological
models. Journal of Hydrology, 596:126013, doi:10.1016/j.jhydrol.2021.126013.
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- Hu, Xia, Jiang, Libin, Shi, Fangzhong, Li, Xiaoyan, Zhang, Shulei, Zhao, Yunduo, Ma, Yujun, Gao, Zhou, and Bai, Yan, 2021.
Intensified Drought Enhances Coupling Between Vegetation Growth and Pregrowing Season Precipitation in the Drylands of the
Silk Road Economic Belt. Journal of Geophysical Research (Biogeosciences), 126(3):e05914, doi:10.1029/2020JG005914.
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- Hu, Baoyi, Wang, Lei, Li, Xiuping, Zhou, Jing, and Pan, Yun, 2021. Divergent Changes in Terrestrial Water Storage Across Global
Arid and Humid Basins. Geophysical Research Letters, 48(1):e91069, doi:10.1029/2020GL091069.
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- Huang, Zhiyong, Jiao, Jiu Jimmy, Luo, Xin, Pan, Yun, and Jin, Taoyong, 2021. Drought and Flood Characterization and Connection
to Climate Variability in the Pearl River Basin in Southern China Using Long-Term GRACE and Reanalysis Data. Journal of
Climate, 34(6):2053–2078, doi:10.1175/JCLI-D-20-0332.1.
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- Huang, Peng, Song, Jinxi, Cheng, Dandong, Sun, Haotian, Kong, Feihe, Jing, Kexing, and Wu, Qiong, 2021. Understanding the
intra-annual variability of streamflow by incorporating terrestrial water storage from GRACE into the Budyko framework in
the Qinba Mountains. Journal of Hydrology, 603:126988, doi:10.1016/j.jhydrol.2021.126988.
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- Hulsman, Petra, Hrachowitz, Markus, and Savenije, Hubert H. G., 2021. Improving the Representation of Long Term Storage
Variations With Conceptual Hydrological Models in Data Scarce Regions. Water Resources Research, 57(4):e28837, doi:10.1029/2020WR028837.
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- Idowu, Dorcas, Assessing the Utilization of Remote Sensing and GIS Techniques for Flood Studies and Land Use/Land Cover Analysis
Through Case Studies in Nigeria and the USA. Ph.D. Thesis, Geology and Geological Engineering, Colorado School of Mines, 2021.
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- Ilhan, Esin, Veeresha, P., and Baskonus, Haci Mehmet, 2021. Fractional approach for a mathematical model of atmospheric dynamics
of CO$_2$ gas with an efficient method. Chaos Solitons and Fractals, 152:111347, doi:10.1016/j.chaos.2021.111347.
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- Jakowski, Norbert and Hoque, Mohammed Mainul, 2021. Global equivalent slab thickness model of the Earth's ionosphere. Journal
of Space Weather and Space Climate, 11:10, doi:10.1051/swsc/2020083.
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- Jekeli, Christopher and Habana, Nlingi, 2021. On the Numerical Implementation of a Perturbation Method for Satellite Gravity
Mapping. In Novák, Pavel, Crespi, Mattia, Sneeuw, Nico, and Sansò, Fernando (editors), IX Hotine-Marussi
Symposium on Mathematical Geodesy, pp. 175–180, Springer International Publishing, Cham.
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- Jeon, Taehwan, Seo, Ki-Weon, Kim, Byeong-Hoon, Kim, Jae-Seung, Chen, Jianli, and Wilson, Clark R., 2021. Sea level fingerprints
and regional sea level change. Earth and Planetary Science Letters, 567:116985, doi:10.1016/j.epsl.2021.116985.
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- Jiang, Zhongshan, Hsu, Ya-Ju, Yuan, Linguo, Cheng, Shuai, Li, Qinzheng, and Li, Meng, 2021. Estimation of daily hydrological
mass changes using continuous GNSS measurements in mainland China. Journal of Hydrology, 598:126349, doi:10.1016/j.jhydrol.2021.126349.
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- Jiang, Yan, Wu, Xiaoping, van den Broeke, Michiel R., Kuipers Munneke, Peter, Simonsen, Sebastian B., van der Wal, Wouter,
and Vermeersen, Bert L., 2021. Assessing Global Present Day Surface Mass Transport and Glacial Isostatic Adjustment From Inversion
of Geodetic Observations. Journal of Geophysical Research (Solid Earth), 126(5):e20713, doi:10.1029/2020JB020713.
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- Jiang, Zhongshan, Hsu, Ya-Ju, Yuan, Linguo, Yang, Xinchun, Ding, Yihang, Tang, Miao, and Chen, Changfu, 2021. Characterizing
Spatiotemporal Patterns of Terrestrial Water Storage Variations Using GNSS Vertical Data in Sichuan, China. Journal of
Geophysical Research (Solid Earth), 126(12):e22398, doi:10.1029/2021JB022398.
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- Jin, Biao, Li, Yuqiang, Jiang, Kecai, Li, Zhulian, and Chen, Shanshan, 2021. GRACE-FO Antenna Phase Center Modeling and Precise
Orbit Determination with Single Receiver Ambiguity Resolution. Remote Sensing, 13(21):4204, doi:10.3390/rs13214204.
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- Kang, K. and Bender, P. L., 2021. Improved Measurements of Short-Period Mass Variations With Future Earth Gravity Missions.
Journal of Geophysical Research (Solid Earth), 126(1):e20720, doi:10.1029/2020JB020720.
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- Kansara, Prakrut and Lakshmi, Venkataraman, 2021. Estimation of land-cover linkage to trends in hydrological variables of
river basins in the Indian sub-continent using satellite observation and model outputs. Journal of Hydrology, 603:126997,
doi:10.1016/j.jhydrol.2021.126997.
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- Kappelsberger, Maria T., Strößenreuther, Undine, Scheinert, Mirko, Horwath, Martin, Groh, Andreas, Knöfel,
Christoph, Lunz, Susanne, and Khan, Shfaqat A., 2021. Modeled and Observed Bedrock Displacements in North East Greenland Using
Refined Estimates of Present Day Ice Mass Changes and Densified GNSS Measurements. Journal of Geophysical Research (Earth
Surface), 126(4):e05860, doi:10.1029/2020JF005860.
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- Khaki, Mehdi and Awange, Joseph, 2021. The 2019–2020 Rise in Lake Victoria Monitored from Space: Exploiting the State-of-the-Art
GRACE-FO and the Newly Released ERA-5 Reanalysis Products. Sensors, 21(13):4304, doi:10.3390/s21134304.
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- Khorrami, Behnam and Gunduz, Orhan, 2021. An enhanced water storage deficit index (EWSDI) for drought detection using GRACE
gravity estimates. Journal of Hydrology, 603:126812, doi:10.1016/j.jhydrol.2021.126812.
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- Kim, Kyra H., Liu, Zhen, Rodell, Matthew, Beaudoing, Hiroko, Massoud, Elias, Kitchens, James, Dudek, Marissa, Saylor, Patrick,
Corcoran, Forrest, and Reager, John T., 2021. An Evaluation of Remotely Sensed and In Situ Data Sufficiency for SGMA‑Scale
Groundwater Studies in the Central Valley, California. Journal of the American Water Resources Association, 57(5):664–674,
doi:10.1111/1752-1688.12898.
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- Klos, Anna, Karegar, Makan A., Kusche, Jurgen, and Springer, Anne, 2021. Quantifying Noise in Daily GPS Height Time Series:
Harmonic Function Versus GRACE-Assimilating Modeling Approaches. IEEE Geoscience and Remote Sensing Letters, 18(4):627–631,
doi:10.1109/LGRS.2020.2983045.
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- Kloss, Clemens, Finlay, Christopher C., and Olsen, Nils, 2021. Co-estimating geomagnetic field and calibration parameters:
modeling Earth's magnetic field with platform magnetometer data. Earth, Planets, and Space, 73(1):23, doi:10.1186/s40623-020-01351-7.
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- Knudsen, Per, Andersen, Ole, and Maximenko, Nikolai, 2021. A new ocean mean dynamic topography model, derived from a combination
of gravity, altimetry and drifter velocity data. Advances in Space Research, 68(2):1090–1102, doi:10.1016/j.asr.2019.12.001.
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- Koch, Igor, Duwe, Mathias, Flury, Jakob, and Shabanloui, Akbar, 2021. Earth's Time-Variable Gravity from GRACE Follow-On K-Band
Range-Rates and Pseudo-Observed Orbits. Remote Sensing, 13(9):1766, doi:10.3390/rs13091766.
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- Kodikara, Timothy, Zhang, Kefei, Pedatella, Nicholas Michael, and Borries, Claudia, 2021. The Impact of Solar Activity on
Forecasting the Upper Atmosphere via Assimilation of Electron Density Data. Space Weather, 19(5):e02660, doi:10.1029/2020SW002660.
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- König, R., Reinhold, A., Dobslaw, H., Esselborn, S., Neumayer, K. H., Dill, R., and Michalak, A., 2021. On the effect
of non-tidal atmospheric and oceanic loading on the orbits of the altimetry satellites ENVISAT, Jason-1 and Jason-2. Advances
in Space Research, 68(2):1048–1058, doi:10.1016/j.asr.2020.05.047.
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- Koulali, A. and Clarke, P. J., 2021. Modelling quasi-periodic signals in geodetic time-series using Gaussian processes.
Geophysical Journal International, 226(3):1705–1714, doi:10.1093/gji/ggab168.
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- Kvas, Andreas, Brockmann, Jan Martin, Krauss, Sandro, Schubert, Till, Gruber, Thomas, Meyer, Ulrich, Mayer-Gürr, Torsten,
Schuh, Wolf-Dieter, Jäggi, Adrian, and Pail, Roland, 2021. GOCO06s - a satellite-only global gravity field model. Earth
System Science Data, 13(1):99–118, doi:10.5194/essd-13-99-2021.
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- Lei, Yonghui, Shi, Jiancheng, Xiong, Chuan, and Ji, Dabin, 2021. Tracking the Atmospheric-Terrestrial Water Cycle over the
Tibetan Plateau Based on ERA5 and GRACE. Journal of Climate, 34(15):6459–6471, doi:10.1175/JCLI-D-20-0692.1.
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- Li, Ruoxi and Lei, Jiuhou, 2021. Responses of Thermospheric Mass Densities to the October 2016 and September 2017 Geomagnetic
Storms Revealed From Multiple Satellite Observations. Journal of Geophysical Research (Space Physics), 126(1):e28534,
doi:10.1029/2020JA028534.
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- Li, Fupeng, Kusche, Jürgen, Chao, Nengfang, Wang, Zhengtao, and Löcher, Anno, 2021. Long Term (1979 Present) Total
Water Storage Anomalies Over the Global Land Derived by Reconstructing GRACE Data. Geophysical Research Letters, 48(8):e93492,
doi:10.1029/2021GL093492.
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- Li, Ruoxi, Lei, Jiuhou, and Dang, Tong, 2021. The Solar Eclipse Effects on the Upper Thermosphere. Geophysical Research
Letters, 48(15):e94749, doi:10.1029/2021GL094749.
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- Li, Ruoxi and Lei, Jiuhou, 2021. The Determination of Satellite Orbital Decay From POD Data During Geomagnetic Storms. Space
Weather, 19(4):e2020SW002664, doi:10.1029/2020SW002664.
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- Li, Qian, Chen, Xiuzhi, Yuan, Wenping, Lu, Haibo, Shen, Ruoque, Wu, Shengbiao, Gong, Fanxi, Dai, Yuhang, Liu, Liyang, Sun,
Qingling, Zhang, Chaoqun, and Su, Yongxian, 2021. Remote Sensing of Seasonal Climatic Constraints on Leaf Phenology Across
Pantropical Evergreen Forest Biome. Earth's Future, 9(9):e2021EF002160, doi:10.1029/2021EF002160.
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- Liang, Hongbao, Zhan, Wei, and Li, Jinwu, 2021. Vertical surface displacement of mainland China from GPS using the multisurface
function method. Advances in Space Research, 68(12):4898–4915, doi:10.1016/j.asr.2021.02.024.
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- Licata, Richard J., Mehta, Piyush M., Tobiska, W. Kent, Bowman, Bruce R., and Pilinski, Marcin D., 2021. Qualitative and Quantitative
Assessment of the SET HASDM Database. Space Weather, 19(8):e02798, doi:10.1029/2021SW002798.
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- Liu, Bingshi, Zou, Xiancai, Yi, Shuang, Sneeuw, Nico, Cai, Jianqing, and Li, Jiancheng, 2021. Identifying and separating climate-
and human-driven water storage anomalies using GRACE satellite data. Remote Sensing of Environment, 263:112559, doi:10.1016/j.rse.2021.112559.
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- Liu, Xingcai, Tang, Qiuhong, Hosseini-Moghari, Seyed-Mohammad, Shi, Xiaogang, Lo, Min-Hui, and Scanlon, Bridget, 2021. GRACE
Satellites Enable Long-Lead Forecasts of Mountain Contributions to Streamflow in the Low-Flow Season. Remote Sensing,
13(10):1993, doi:10.3390/rs13101993.
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- Liu, Xin, Hu, Litang, Sun, Kangning, Yang, Zhengqiu, Sun, Jianchong, and Yin, Wenjie, 2021. Improved Understanding of Groundwater
Storage Changes under the Influence of River Basin Governance in Northwestern China Using GRACE Data. Remote Sensing,
13(14):2672, doi:10.3390/rs13142672.
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- Liu, Jun, Jiang, Liguang, Zhang, Xingxing, Druce, Daniel, Kittel, Cecile M. M., Tøttrup, Christian, and Bauer-Gottwein,
Peter, 2021. Impacts of water resources management on land water storage in the North China Plain: Insights from multi-mission
earth observations. Journal of Hydrology, 603:126933, doi:10.1016/j.jhydrol.2021.126933.
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- Liu, Di, Mishra, Ashok K., Yu, Zhongbo, Lü, Haishen, and Li, Yajie, 2021. Support vector machine and data assimilation
framework for Groundwater Level Forecasting using GRACE satellite data. Journal of Hydrology, 603:126929, doi:10.1016/j.jhydrol.2021.126929.
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- Liu, Kai, Li, Xueke, and Long, Xin, 2021. Trends in groundwater changes driven by precipitation and anthropogenic activities
on the southeast side of the Hu Line. Environmental Research Letters, 16(9):094032, doi:10.1088/1748-9326/ac1ed8.
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- Liu, Wei and Sneeuw, Nico, 2021. Aliasing of ocean tides in satellite gravimetry: a two-step mechanism. Journal of Geodesy,
95(12):134, doi:10.1007/s00190-021-01586-6.
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- Liu, Fang, Yu, Zhuxiao, Xu, Erqi, Li, Dajing, Zhang, Hongqi, and Qin, Yuanwei, 2021. Natural and semi-natural land dynamics
under water resource change from 1990 to 2015 in the Tarim Basin, China. Environmental Research Letters, 16(8):085001,
doi:10.1088/1748-9326/ac07d7.
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- Löcher, Anno and Kusche, Jürgen, 2021. A hybrid approach for recovering high-resolution temporal gravity fields
from satellite laser ranging. Journal of Geodesy, 95(1):6, doi:10.1007/s00190-020-01460-x.
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- Loomis, Bryant D., Felikson, Denis, Sabaka, Terence J., and Medley, Brooke, 2021. High-Spatial-Resolution Mass Rates From
GRACE and GRACE-FO: Global and Ice Sheet Analyses. Journal of Geophysical Research (Solid Earth), 126(12):e23024, doi:10.1029/2021JB023024.
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- Lu, Xiaoman, Zhang, Xiaoyang, Li, Fangjun, Gao, Lun, Graham, Laura, Vetrita, Yenni, Saharjo, Bambang H., and Cochrane, Mark
A., 2021. Drainage canal impacts on smoke aerosol emissions for Indonesian peatland and non-peatland fires. Environmental
Research Letters, 16(9):095008, doi:10.1088/1748-9326/ac2011.
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- Ludwigsen, Carsten A. and Andersen, Ole B., 2021. Contributions to Arctic sea level from 2003 to 2015. Advances in Space
Research, 68(2):703–710, doi:10.1016/j.asr.2019.12.027.
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- Luo, Zengliang, Shao, Quanxi, Wan, Wei, Li, Huan, Chen, Xi, Zhu, Siyu, and Ding, Xiangyi, 2021. A new method for assessing
satellite-based hydrological data products using water budget closure. Journal of Hydrology, 594:125927, doi:10.1016/j.jhydrol.2020.125927.
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- Ma, Zhongtian, Fok, Hok Sum, and Zhou, Linghao, 2021. GRACE-Derived Time Lag of Mekong Estuarine Freshwater Transport in the
Western South China Sea Validated by Isotopic Tracer Age. Remote Sensing, 13(6):1193, doi:10.3390/rs13061193.
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- Malakar, Pragnaditya, Mukherjee, Abhijit, Bhanja, Soumendra N., Ray, Ranjan Kumar, Sarkar, Sudeshna, and Zahid, Anwar, 2021.
Machine-learning-based regional-scale groundwater level prediction using GRACE. Hydrogeology Journal, 29(3):1027–1042,
doi:10.1007/s10040-021-02306-2.
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- Malles, Jan-Hendrik and Marzeion, Ben, 2021. Twentieth century global glacier mass change: an ensemble-based model reconstruction.
The Cryosphere, 15(7):3135–3157, doi:10.5194/tc-15-3135-2021.
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- Manche, Shiva Shankar, Nayak, Rabindra K., Mohanty, Prakash Chandra, Shesasai, M. V. R., and Dadhwal, V. K.,
2021. Assessment of mass-induced sea level variability in the Tropical Indian Ocean based on GRACE and altimeter observations.
Journal of Geodesy, 95(2):19, doi:10.1007/s00190-021-01471-2.
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- March, Günther, van den IJssel, Jose, Siemes, Christian, Visser, Pieter N. A. M., Doornbos, Eelco N., and Pilinski,
Marcin, 2021. Gas-surface interactions modelling influence on satellite aerodynamics and thermosphere mass density. Journal
of Space Weather and Space Climate, 11:54, doi:10.1051/swsc/2021035.
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- Massoud, Elias C., Liu, Zhen, Shaban, Amin, and Hage, Mhamad, 2021. Groundwater Depletion Signals in the Beqaa Plain, Lebanon:
Evidence from GRACE and Sentinel-1 Data. Remote Sensing, 13(5):915, doi:10.3390/rs13050915.
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- Materna, Kathryn, Feng, Lujia, Lindsey, Eric O., Hill, Emma M., Ahsan, Aktarul, Alam, A. K. M. Khorshed, Oo, Kyaw
Moe, Than, Oo, Aung, Thura, Khaing, Saw Ngwe, and Bürgmann, Roland, 2021. GNSS characterization of hydrological loading
in South and Southeast Asia. Geophysical Journal International, 224(3):1742–1752, doi:10.1093/gji/ggaa500.
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- Mehrnegar, Nooshin, Jones, Owen, Singer, Michael Bliss, Schumacher, Maike, Jagdhuber, Thomas, Scanlon, Bridget R., Rateb,
Ashraf, and Forootan, Ehsan, 2021. Exploring groundwater and soil water storage changes across the CONUS at 12.5 km resolution
by a Bayesian integration of GRACE data into W3RA. Science of the Total Environment, 758:143579, doi:10.1016/j.scitotenv.2020.143579.
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- Milyukov, V. K., Filetkin, A. I., and Zhamkov, A. S., 2021. Ways for Improving the Accuracy of Measuring the
Parameters of the Earth's Gravitational Field Using an Orbital Spacecraft Constellation. Astronomy Reports, 65(4):331–341,
doi:10.1134/S106377292104003X.
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- Mishra, Vimal, Thirumalai, Kaustubh, Jain, Sahil, and Aadhar, Saran, 2021. Unprecedented drought in South India and recent
water scarcity. Environmental Research Letters, 16(5):054007, doi:10.1088/1748-9326/abf289.
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- Mohajerani, Yara, Shean, David, Arendt, Anthony, and Sutterley, Tyler C., 2021. Automated Dynamic Mascon Generation for GRACE
and GRACE-FO Harmonic Processing. Remote Sensing, 13(16):3134, doi:10.3390/rs13163134.
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- Mohamed, Ahmed and Gon\ccalvès, Julio, 2021. Hydro-geophysical monitoring of the North Western Sahara Aquifer System's
groundwater resources using gravity data. Journal of African Earth Sciences, 178:104188, doi:10.1016/j.jafrearsci.2021.104188.
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- Mohanasundaram, S., Mekonnen, Mesfin M., Haacker, Erin, Ray, Chittaranjan, Lim, Sokneth, and Shrestha, Sangam, 2021. An application
of GRACE mission datasets for streamflow and baseflow estimation in the Conterminous United States basins. Journal of Hydrology,
601:126622, doi:10.1016/j.jhydrol.2021.126622.
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- Mulet, Sandrine, Rio, Marie-Hélène, Etienne, Hélène, Artana, Camilia, Cancet, Mathilde, Dibarboure,
Gérald, Feng, Hui, Husson, Romain, Picot, Nicolas, Provost, Christine, and Strub, P. Ted, 2021. The new CNES-CLS18
global mean dynamic topography. Ocean Science, 17(3):789–808, doi:10.5194/os-17-789-2021.
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- Munagapati, Harika and Tiwari, Virendra M., 2021. Spatio-Temporal Patterns of Mass Changes in Himalayan Glaciated Region from
EOF Analyses of GRACE Data. Remote Sensing, 13(2):265, doi:10.3390/rs13020265.
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- Muskett, Reginald R., 2021. GRACE, the Chandler Wobble and Interpretations of Terrestrial Water Transient Storage. International
Journal of Geosciences, 12(2):102–120, doi:10.4236/ijg.2021.122007.
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- Naboureh, Amin, Li, Ainong, Ebrahimy, Hamid, Bian, Jinhu, Azadbakht, Mohsen, Amani, Meisam, Lei, Guangbin, and Nan, Xi, 2021.
Assessing the effects of irrigated agricultural expansions on Lake Urmia using multi-decadal Landsat imagery and a sample
migration technique within Google Earth Engine. International Journal of Applied Earth Observation and Geoinformation,
105:102607, doi:10.1016/j.jag.2021.102607.
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- Nair, Akhilesh S. and Indu, J., 2021. Assessment of Groundwater Sustainability and Identifying Factors Inducing Groundwater
Depletion in India. Geophysical Research Letters, 48(3):e87255, doi:10.1029/2020GL087255.
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- Nasiri, Abouzar, Shafiee, Najmeh, and Zandi, Rahman, 2021. Spatial analysis of factors influencing land subsidence using the
OLS Model (Case Study: Fahlian Aquifer). Earth Science Informatics, 14(4):2133–2144, doi:10.1007/s12145-021-00688-1.
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- Nie, Wanshu, Zaitchik, Benjamin F., Rodell, Matthew, Kumar, Sujay V., Arsenault, Kristi R., and Badr, Hamada S., 2021. Irrigation
Water Demand Sensitivity to Climate Variability Across the Contiguous United States. Water Resources Research, 57(3):e2020WR027738,
doi:10.1029/2020WR027738.
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- Nigatu, Zemede M., Fan, Dongming, and You, Wei, 2021. GRACE products and land surface models for estimating the changes in
key water storage components in the Nile River Basin. Advances in Space Research, 67(6):1896–1913, doi:10.1016/j.asr.2020.12.042.
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- Nigatu, Zemede M., Fan, Dongming, You, Wei, and Melesse, Assefa M., 2021. Hydroclimatic Extremes Evaluation Using GRACE/GRACE-FO
and Multidecadal Climatic Variables over the Nile River Basin. Remote Sensing, 13(4):651, doi:10.3390/rs13040651.
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- Olsen, Nils, 2021. Magnetometer data from the GRACE satellite duo. Earth, Planets, and Space, 73(1):62, doi:10.1186/s40623-021-01373-9.
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- Pagiatakis, Spiros and Peidou, Athina, 2021. The Intriguing Structure of Stripes in GRACE Geopotential Models. Remote Sensing,
13(21):4362, doi:10.3390/rs13214362.
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- Pan, Yuanjin, Hammond, William C., Ding, Hao, Mallick, Rishav, Jiang, Weiping, Xu, Xinyu, Shum, C. K., and Shen, Wenbin,
2021. GPS Imaging of Vertical Bedrock Displacements: Quantification of Two Dimensional Vertical Crustal Deformation in China.
Journal of Geophysical Research (Solid Earth), 126(4):e20951, doi:10.1029/2020JB020951.
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- Pascolini-Campbell, Madeleine, Reager, John T., Chandanpurkar, Hrishikesh A., and Rodell, Matthew, 2021. A 10 per cent increase
in global land evapotranspiration from 2003 to 2019. Nature, 593(7860):543–547, doi:10.1038/s41586-021-03503-5.
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- Pascolini-Campbell, Madeleine, Fisher, Joshua B., and Reager, John T., 2021. GRACE-FO and ECOSTRESS Synergies Constrain Fine-Scale
Impacts on the Water Balance. Geophysical Research Letters, 48(15):e93984, doi:10.1029/2021GL093984.
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- Pellet, victor, Aires, Filipe, and Yamazaki, Dai, 2021. Coherent Satellite Monitoring of the Water Cycle Over the Amazon.
Part 2: Total Water Storage Change and River Discharge Estimation. Water Resources Research, 57(5):e28648, doi:10.1029/2020WR028648.
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- Peng, Qing, Wang, Ranghui, Jiang, Yelin, Li, Cheng, and Guo, Wenhui, 2021. The change of hydrological variables and its effects
on vegetation in Central Asia. Theoretical and Applied Climatology, 146(1-2):741–753, doi:10.1007/s00704-021-03730-w.
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- Pie, N., Bettadpur, S. V., Tamisiea, M., Krichman, B., Save, H., Poole, S., Nagel, P., Kang, Z., Jacob, G., Ellmer, M.,
Fahnestock, E., Landerer, F. W., McCullough, C., Yuan, D. -N., and Wiese, D. N., 2021. Time Variable Earth Gravity
Field Models From the First Spaceborne Laser Ranging Interferometer. Journal of Geophysical Research (Solid Earth),
126(12):e22392, doi:10.1029/2021JB022392.
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- Piretzidis, Dimitrios, Sideris, Michael G., and Tsoulis, Dimitrios, 2021. Comparison of Criteria for the Identification of
Correlated Orders in GRACE Spherical Harmonic Coefficients. In Novák, Pavel, Crespi, Mattia, Sneeuw, Nico, and Sansò,
Fernando (editors), IX Hotine-Marussi Symposium on Mathematical Geodesy, pp. 11–18, Springer International Publishing,
Cham.
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- Pivetta, T., Braitenberg, C., and Barbolla, D. F., 2021. Geophysical Challenges for Future Satellite Gravity Missions:
Assessing the Impact of MOCASS Mission. Pure and Applied Geophysics, 178(6):2223–2240, doi:10.1007/s00024-021-02774-3.
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- Pranjal, Pranshu, Kadiyan, Neha, Chatterjee, R. S., Kumar, Dheeraj, and Sati, Madhu Sudan, 2021. Interpreting land subsidence
impacts due to groundwater depletion using remote sensing-based GRACE gravity anomaly and DInSAR technique: a study on north-western
parts of India. Environmental Earth Sciences, 80(17):596, doi:10.1007/s12665-021-09905-y.
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- Ramillien, Guillaume, Seoane, Luc\'ıa, and Darrozes, José, 2021. An Innovative Slepian Approach to Invert GRACE
KBRR for Localized Hydrological Information at the Sub-Basin Scale. Remote Sensing, 13(9):1824, doi:10.3390/rs13091824.
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- Ran, Jiangjun, Tangdamrongsub, Natthachet, and Wan, Xiaoyun, 2021. The impact of error covariance matrix structure of GRACE's
gravity solution on the mass flux estimates of Greenland ice sheet. Advances in Space Research, 67(1):163–178,
doi:10.1016/j.asr.2020.07.012.
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- Ran, Jiangjun, Ditmar, Pavel, Liu, Lin, Xiao, Yun, Klees, Roland, and Tang, Xueyuan, 2021. Analysis and Mitigation of Biases
in Greenland Ice Sheet Mass Balance Trend Estimates From GRACE Mascon Products. Journal of Geophysical Research (Solid
Earth), 126(7):e20880, doi:10.1029/2020JB020880.
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- Rao, Weilong and Sun, Wenke, 2021. Moho Interface Changes Beneath the Tibetan Plateau Based on GRACE Data. Journal of Geophysical
Research (Solid Earth), 126(2):e20605, doi:10.1029/2020JB020605.
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- Reeves Eyre, J. E. Jack and Zeng, Xubin, 2021. The Amazon Water Cycle: Perspectives from Water Budget Closure and Ocean
Salinity. Journal of Climate, 34(4):1439–1451, doi:10.1175/JCLI-D-20-0309.1.
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- Reguzzoni, Mirko, Migliaccio, Federica, and Batsukh, Khulan, 2021. Gravity Field Recovery and Error Analysis for the MOCASS
Mission Proposal Based on Cold Atom Interferometry. Pure and Applied Geophysics, 178(6):2201–2222, doi:10.1007/s00024-021-02756-5.
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- Ren, Diandong and Hu, Aixue, 2021. The Role of Climate Warming in GRACE Measured Changes of Earth MOI during 2003-2017. Frontiers
in Earth Science, 9:658, doi:10.3389/feart.2021.640304.
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- Ren, Dexin, Lei, Jiuhou, Wang, Wenbin, Burns, Alan, and Luan, Xiaoli, 2021. Observations and Simulations of the Peak Response
Time of Thermospheric Mass Density to the 27 Day Solar EUV Flux Variation. Journal of Geophysical Research (Space Physics),
126(2):e28756, doi:10.1029/2020JA028756.
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- Richter, H. M. P., Lück, C., Klos, A., Sideris, M. G., Rangelova, E., and Kusche, J., 2021. Reconstructing GRACE-type
time-variable gravity from the Swarm satellites. Scientific Reports, 11:1117, doi:10.1038/s41598-020-80752-w.
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- Satish Kumar, K., Venkata Rathnam, E., and Sridhar, Venkataramana, 2021. Tracking seasonal and monthly drought with GRACE-based
terrestrial water storage assessments over major river basins in South India. Science of the Total Environment, 763:142994,
doi:10.1016/j.scitotenv.2020.142994.
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- Scanlon, Bridget R., Rateb, Ashraf, Pool, Donald R., Sanford, Ward, Save, Himanshu, Sun, Alexander, Long, Di, and Fuchs, Brian,
2021. Effects of climate and irrigation on GRACE-based estimates of water storage changes in major US aquifers. Environmental
Research Letters, 16(9):094009, doi:10.1088/1748-9326/ac16ff.
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- Schaer, S., Villiger, A., Arnold, D., Dach, R., Prange, L., and Jäggi, A., 2021. The CODE ambiguity-fixed clock and phase
bias analysis products: generation, properties, and performance. Journal of Geodesy, 95(7):81, doi:10.1007/s00190-021-01521-9.
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- Schindelegger, Michael, Harker, Alexander A., Ponte, Rui M., Dobslaw, Henryk, and Salstein, David A., 2021. Convergence of
Daily GRACE Solutions and Models of Submonthly Ocean Bottom Pressure Variability. Journal of Geophysical Research (Oceans),
126(2):e17031, doi:10.1029/2020JC017031.
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- Schoups, Gerrit and Nasseri, Mohsen, 2021. GRACEfully Closing the Water Balance: A Data-Driven Probabilistic Approach Applied
to River Basins in Iran. Water Resources Research, 57(6):e29071, doi:10.1029/2020WR029071.
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- Schröder, Stefan, Stellmer, Simon, and Kusche, Jürgen, 2021. Potential and scientific requirements of optical clock
networks for validating satellite-derived time-variable gravity data. Geophysical Journal International, 226(2):764–779,
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- Seo, Ki-Weon, Kim, Jae-Seung, Youm, Kookhyoun, Chen, Jianli, and Wilson, Clark R., 2021. Secular polar motion observed by
GRACE. Journal of Geodesy, 95(4):40, doi:10.1007/s00190-021-01476-x.
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- Shah, Deep and Mishra, Vimal, 2021. Strong Influence of Changes in Terrestrial Water Storage on Flood Potential in India.
Journal of Geophysical Research (Atmospheres), 126(1):e33566, doi:10.1029/2020JD033566.
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- Shen, Yunzhong, Wang, Fengwei, and Chen, Qiujie, 2021. Weighted multichannel singular spectrum analysis for post-processing
GRACE monthly gravity field models by considering the formal errors. Geophysical Journal International, 226(3):1997–2010,
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- Shen, Zexi, Zhang, Qiang, Chen, Deliang, and Singh, Vijay P., 2021. Varying effects of mining development on ecological conditions
and groundwater storage in dry region in Inner Mongolia of China. Journal of Hydrology, 597:125759, doi:10.1016/j.jhydrol.2020.125759.
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- Shen, Zexi, Zhang, Qiang, Piao, Shilong, Peñuelas, Josep, Stenseth, Nils Chr., Chen, Deliang, Xu, Chong-Yu, Singh,
Vijay P., and Liu, Tingxi, 2021. Mining Can Exacerbate Global Degradation of Dryland. Geophysical Research Letters,
48(21):e94490, doi:10.1029/2021GL094490.
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- Shukla, M., Maurya, V., and Dwivedi, R., 2021. Groundwater Monitoring Using GRACE Mission. ISPRS - International Archives
of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 43B3:425–430, doi:10.5194/isprs-archives-XLIII-B3-2021-425-2021.
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- Singh, Alka, Reager, John Thomas, and Behrangi, Ali, 2021. Estimation of hydrological drought recovery based on precipitation
and Gravity Recovery and Climate Experiment (GRACE) water storage deficit. Hydrology and Earth System Sciences, 25(2):511–526,
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- Sliwinska, Justyna, Nastula, Jolanta, and Winska, Malgorzata, 2021. Evaluation of hydrological and cryospheric angular momentum
estimates based on GRACE, GRACE-FO and SLR data for their contributions to polar motion excitation. Earth, Planets, and
Space, 73(1):71, doi:10.1186/s40623-021-01393-5.
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- Sliwinska, Justyna, Winska, Malgorzata, and Nastula, Jolanta, 2021. Validation of GRACE and GRACE-FO Mascon Data for the Study
of Polar Motion Excitation. Remote Sensing, 13(6):1152, doi:10.3390/rs13061152.
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- Smirnov, Artem, Shprits, Yuri, Zhelavskaya, Irina, Lühr, Hermann, Xiong, Chao, Goss, Andreas, Prol, Fabricio S., Schmidt,
Michael, Hoque, Mainul, Pedatella, Nicholas, and Szabó-Roberts, Mátyás., 2021. Intercalibration of the
Plasma Density Measurements in Earth's Topside Ionosphere. Journal of Geophysical Research (Space Physics), 126(10):e29334,
doi:10.1029/2021JA029334.
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- Smith, J. Torquil and Vasco, D. W., 2021. Adjoint-Based Inversion of Geodetic Data for Sources of Deformation and Strain.
Journal of Geophysical Research (Solid Earth), 126(9):e21735, doi:10.1029/2021JB021735.
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- Soltani, Samira Sadat, Ataie-Ashtiani, Behzad, and Simmons, Craig T., 2021. Review of assimilating GRACE terrestrial water
storage data into hydrological models: Advances, challenges and opportunities. Earth Science Reviews, 213:103487, doi:10.1016/j.earscirev.2020.103487.
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- Spero, Robert, 2021. Point-mass sensitivity of gravimetric satellites. Advances in Space Research, 67(5):1656–1664,
doi:10.1016/j.asr.2020.12.019.
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- Stolle, C., Michaelis, I., Xiong, C., Rother, M., Usbeck, Th., Yamazaki, Y., Rauberg, J., and Styp-Rekowski, K., 2021. Observing
Earth's magnetic environment with the GRACE-FO mission. Earth, Planets, and Space, 73(1):51, doi:10.1186/s40623-021-01364-w.
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- Su, Guangli and Zhan, Wei, 2021. Seasonal and long-term vertical land motion in Southwest China determined using GPS, GRACE,
and surface loading model. Earth, Planets and Space, 73(1):131, doi:10.1186/s40623-021-01459-4.
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- Sun, Alexander Y., Scanlon, Bridget R., Save, Himanshu, and Rateb, Ashraf, 2021. Reconstruction of GRACE Total Water Storage
Through Automated Machine Learning. Water Resources Research, 57(2):e28666, doi:10.1029/2020WR028666.
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- Tang, Senlin, Wang, Hong, Feng, Yao, Liu, Qinghua, Wang, Tingting, Liu, Wenbin, and Sun, Fubao, 2021. Random Forest-Based
Reconstruction and Application of the GRACE Terrestrial Water Storage Estimates for the Lancang-Mekong River Basin. Remote
Sensing, 13(23):4831, doi:10.3390/rs13234831.
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- Tangdamrongsub, Natthachet and \vSprlák, Michal, 2021. The Assessment of Hydrologic- and Flood-Induced Land Deformation
in Data-Sparse Regions Using GRACE/GRACE-FO Data Assimilation. Remote Sensing, 13(2):235, doi:10.3390/rs13020235.
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- Tangdamrongsub, Natthachet, Hwang, Cheinway, Borak, Jordan S., Prabnakorn, Saowanit, and Han, Jiancheng, 2021. Optimizing
GRACE/GRACE-FO data and a priori hydrological knowledge for improved global terrestial water storage component estimates.
Journal of Hydrology, 598:126463, doi:10.1016/j.jhydrol.2021.126463.
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- Tangdamrongsub, Natthachet, Jasinski, Michael F., and Shellito, Peter J., 2021. Development and evaluation of 0.05° terrestrial
water storage estimates using Community Atmosphere Biosphere Land Exchange (CABLE) land surface model and assimilation of
GRACE data. Hydrology and Earth System Sciences, 25(7):4185–4208, doi:10.5194/hess-25-4185-2021.
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- Vasile, Massimiliano, 2021. Preface: Satellite constellations and formation flying. Advances in Space Research, 67(11):3379–3380,
doi:10.1016/j.asr.2021.03.001.
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- Vishwakarma, B. D., Bates, P., Sneeuw, N., Westaway, R. M., and Bamber, J. L., 2021. Re-assessing global water
storage trends from GRACE time series. Environmental Research Letters, 16(3):034005, doi:10.1088/1748-9326/abd4a9.
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- Vlasov, I. Yu., Sazhin, M. V., and Sementsov, V. N., 2021. Relativistic Reductions in Distance Measurements between
Spacecraft with Picometer Accuracy. Astronomy Reports, 65(2):137–152, doi:10.1134/S1063772921020050.
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- Wang, Fengwei, Shen, Yunzhong, Chen, Qiujie, and Wang, Wei, 2021. Bridging the gap between GRACE and GRACE follow-on monthly
gravity field solutions using improved multichannel singular spectrum analysis. Journal of Hydrology, 594:125972, doi:10.1016/j.jhydrol.2021.125972.
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- Wang, Lei, Davis, James L., and Howat, Ian M., 2021. Complex Patterns of Antarctic Ice Sheet Mass Change Resolved by Time-Dependent
Rate Modeling of GRACE and GRACE Follow-On Observations. Geophysical Research Letters, 48(1):e90961, doi:10.1029/2020GL090961.
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- Wang, Qiuyu, Yi, Shuang, and Sun, Wenke, 2021. Continuous Estimates of Glacier Mass Balance in High Mountain Asia Based on
ICESat-1,2 and GRACE/GRACE Follow-On Data. Geophysical Research Letters, 48(2):e90954, doi:10.1029/2020GL090954.
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- Wang, Wei, Shen, Yunzhong, Wang, Fengwei, and Li, Weiwei, 2021. Two Severe Prolonged Hydrological Droughts Analysis over Mainland
Australia Using GRACE Satellite Data. Remote Sensing, 13(8):1432, doi:10.3390/rs13081432.
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- Wang, Shusen, Li, Junhua, and Russell, Hazen A. J., 2021. A novel method for cold-region streamflow hydrograph separation
using GRACE satellite observations. Hydrology and Earth System Sciences, 25(5):2649–2662, doi:10.5194/hess-25-2649-2021.
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- Wang, Song-Yun, Li, Jin, Chen, Jianli, and Hu, Xiao-Gong, 2021. Uncertainty Assessments of Load Deformation from Different
GPS Time Series Products, GRACE Estimates and Model Predictions: A Case Study over Europe. Remote Sensing, 13(14):2765,
doi:10.3390/rs13142765.
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- Wang, Xin, Miao, Juan, Lu, Xian, Aa, Ercha, Liu, Ji, Wang, Yuxian, and Liu, Siqing, 2021. Latitudinal Impacts of Joule Heating
on the High-Latitude Thermospheric Density Enhancement During Geomagnetic Storms. Journal of Geophysical Research (Space
Physics), 126(7):e28747, doi:10.1029/2020JA028747.
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- Wang, Jing, Forman, Barton A., Girotto, Manuela, and Reichle, Rolf H., 2021. Estimating Terrestrial Snow Mass via Multi-Sensor
Assimilation of Synthetic AMSR-E Brightness Temperature Spectral Differences and Synthetic GRACE Terrestrial Water Storage
Retrievals. Water Resources Research, 57(9):e29880, doi:10.1029/2021WR029880.
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- Wang, Linsong, Peng, Zhenran, Ma, Xian, Zheng, Yuhao, and Chen, Chao, 2021. Multiscale gravity measurements to characterize
2020 flood events and their spatio-temporal evolution in Yangtze river of China. Journal of Hydrology, 603:127176,
doi:10.1016/j.jhydrol.2021.127176.
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- Wei, Linyong, Jiang, Shanhu, Ren, Liliang, Tan, Hongbing, Ta, Wanquan, Liu, Yi, Yang, Xiaoli, Zhang, Linqi, and Duan, Zheng,
2021. Spatiotemporal changes of terrestrial water storage and possible causes in the closed Qaidam Basin, China using GRACE
and GRACE Follow-On data. Journal of Hydrology, 598:126274, doi:10.1016/j.jhydrol.2021.126274.
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- Willen, M. O., Broerse, T., Groh, A., Wouters, B., Kuipers Munneke, P., Horwath, M., van den Broeke, M. R., and
Schröder, L., 2021. Separating Long-Term and Short-Term Mass Changes of Antarctic Ice Drainage Basins: A Coupled State
Space Analysis of Satellite Observations and Model Products. Journal of Geophysical Research (Earth Surface), 126(6):e05966,
doi:10.1029/2020JF005966.
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- Wong, Jefferson S., Zhang, Xuebin, Gharari, Shervan, Shrestha, Rajesh R., Wheater, Howard S., and Famiglietti, James S., 2021.
Assessing Water Balance Closure Using Multiple Data Assimilation- and Remote Sensing-Based Datasets for Canada. Journal
of Hydrometeorology, 22(6):1569–1589, doi:10.1175/JHM-D-20-0131.1.
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- Wu, Ren-Jie, Lo, Min-Hui, and Scanlon, Bridget R., 2021. The Annual Cycle of Terrestrial Water Storage Anomalies in CMIP6
Models Evaluated against GRACE Data. Journal of Climate, 34(20):8205–8217, doi:10.1175/JCLI-D-21-0021.1.
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- Wu, Shuguang, Li, Zhao, Li, Houpu, Nie, Guigen, Liu, Jingnan, and He, Yuefan, 2021. Application of an improved clustering
approach on GPS height time series at CMONOC stations in Southwestern China. Earth, Planets and Space, 73(1):233, doi:10.1186/s40623-021-01559-1.
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- Xie, Lei, Xu, Wenbin, Bürgmann, Roland, Ding, Xiaoli, Gahalaut, Vineet K., and Mondal, Saroj, 2021. Tehri Reservoir Operation
Modulates Seasonal Elastic Crustal Deformation in the Himalaya. Journal of Geophysical Research (Solid Earth), 126(8):e2020JB021122,
doi:10.1029/2020JB021122.
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- Xiong, Jinghua, Yin, Jiabo, Guo, Shenglian, and Slater, Louise, 2021. Continuity of terrestrial water storage variability
and trends across mainland China monitored by the GRACE and GRACE-Follow on satellites. Journal of Hydrology, 599:126308,
doi:10.1016/j.jhydrol.2021.126308.
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- Xiong, Jinghua, Guo, Shenglian, Yin, Jiabo, Gu, Lei, and Xiong, Feng, 2021. Using the Global Hydrodynamic Model and GRACE
Follow-On Data to Access the 2020 Catastrophic Flood in Yangtze River Basin. Remote Sensing, 13(15):3023, doi:10.3390/rs13153023.
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- Xiong, Jinghua, Yin, Jiabo, Guo, Shenglian, Gu, Lei, Xiong, Feng, and Li, Na, 2021. Integrated flood potential index for flood
monitoring in the GRACE era. Journal of Hydrology, 603:127115, doi:10.1016/j.jhydrol.2021.127115.
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- Xiong, Chao, Stolle, Claudia, Michaelis, Ingo, Lühr, Hermann, Zhou, Yunliang, Wang, Hui, Kervalishvili, Guram, and Rauberg,
Jan, 2021. Correlation analysis of field-aligned currents from the magnetic measurements of GRACE follow-on mission. Earth,
Planets and Space, 73(1):206, doi:10.1186/s40623-021-01540-y.
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- Xu, Xiao-li and Xiong, Yong-qing, 2021. The influence of tesseral harmonic J$_22$ term on the TLE orbit error of low polar
orbit satellite. Astrophysics and Space Science, 366(1):5, doi:10.1007/s10509-020-03916-0.
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- Xu, Zhicheng, Cheng, Lei, Liu, Pan, Makarieva, Olga, and Chen, Menghan, 2021. Detecting and quantifying the impact of long-term
terrestrial water storage changes on the runoff ratio in the head regions of the two largest rivers in China. Journal of
Hydrology, 601:126668, doi:10.1016/j.jhydrol.2021.126668.
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- Xu, Ming, Wan, Xiaoyun, Chen, Runjing, Wu, Yunlong, and Wang, Wenbing, 2021. Evaluation of GRACE/GRACE Follow-On Time-Variable
Gravity Field Models for Earthquake Detection above Mw8.0s in Spectral Domain. Remote Sensing, 13(16):3075, doi:10.3390/rs13163075.
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- Xu, Yi, Gong, Huili, Chen, Beibei, Zhang, Qingquan, and Li, ZhenZhen, 2021. Long-term and seasonal variation in groundwater
storage in the North China Plain based on GRACE. International Journal of Applied Earth Observation and Geoinformation,
104:102560, doi:10.1016/j.jag.2021.102560.
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- Xue, Liang, Fu, Yuning, and Martens, Hilary R., 2021. Seasonal hydrological loading in the Great Lakes region detected by
GNSS: a comparison with hydrological models. Geophysical Journal International, 226(2):1174–1186, doi:10.1093/gji/ggab158.
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- Yan, Yihao, Müller, Vitali, Heinzel, Gerhard, and Zhong, Min, 2021. Revisiting the light time correction in gravimetric
missions like GRACE and GRACE follow-on. Journal of Geodesy, 95(5):48, doi:10.1007/s00190-021-01498-5.
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- Yan, Xiao, Zhang, Bao, Yao, Yibin, Yang, Yuanjian, Li, Junyu, and Ran, Qishun, 2021. GRACE and land surface models reveal
severe drought in eastern China in 2019. Journal of Hydrology, 601:126640, doi:10.1016/j.jhydrol.2021.126640.
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- Yan, Sheng, Liu, Jianyu, Gu, Xihui, and Kong, Dongdong, 2021. Global Runoff Signatures Changes and Their Response to Atmospheric
Environment, GRACE Water Storage, and Dams. Remote Sensing, 13(20):4084, doi:10.3390/rs13204084.
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- Yang, Yuanyuan, Zhong, Min, Feng, Wei, and Mu, Dapeng, 2021. Detecting Regional Deep Ocean Warming below 2000 meter Based
on Altimetry, GRACE, Argo, and CTD Data. Advances in Atmospheric Sciences, 38(10):1778–1790, doi:10.1007/s00376-021-1049-3.
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- Yang, Peng, Xia, Jun, Luo, Xiangang, Meng, Lingsheng, Zhang, Shengqing, Cai, Wei, and Wang, Wenyu, 2021. Impacts of climate
change-related flood events in the Yangtze River Basin based on multi-source data. Atmospheric Research, 263:105819,
doi:10.1016/j.atmosres.2021.105819.
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- Yang, Fan, Forootan, Ehsan, Wang, ChangQing, Kusche, Jürgen, and Luo, ZhiCai, 2021. A New 1-Hourly ERA5-Based Atmosphere
De-Aliasing Product for GRACE, GRACE-FO, and Future Gravity Missions. Journal of Geophysical Research (Solid Earth),
126(9):e21926, doi:10.1029/2021JB021926.
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- Yang, Fan, Liang, Lei, Wang, Changqing, and Luo, Zhicai, 2021. Attitude Determination for GRACE-FO: Reprocessing the Level-1A
SC and IMU Data. Remote Sensing, 14(1):126, doi:10.3390/rs14010126.
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- Yang, Xinchun, Tian, Siyuan, You, Wei, and Jiang, Zhongshan, 2021. Reconstruction of continuous GRACE/GRACE-FO terrestrial
water storage anomalies based on time series decomposition. Journal of Hydrology, 603:127018, doi:10.1016/j.jhydrol.2021.127018.
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- Yi, Shuang and Sneeuw, Nico, 2021. Filling the Data Gaps Within GRACE Missions Using Singular Spectrum Analysis. Journal
of Geophysical Research (Solid Earth), 126(5):e21227, doi:10.1029/2020JB021227.
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- Yin, Gaohong, Forman, Barton A., and Wang, Jing, 2021. Assimilation of Ground Based GPS Observations of Vertical Displacement
into a Land Surface Model to Improve Terrestrial Water Storage Estimates. Water Resources Research, 57(2):e28763, doi:10.1029/2020WR028763.
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- Yin, Zijun, Xu, Yuyue, Zhu, Xiaoyun, Zhao, Jianwei, Yang, Yaping, and Li, Jin, 2021. Variations of groundwater storage in
different basins of China over recent decades. Journal of Hydrology, 598:126282, doi:10.1016/j.jhydrol.2021.126282.
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- Yin, Wenjie, Fan, Zongwen, Tangdamrongsub, Natthachet, Hu, Litang, and Zhang, Menglin, 2021. Comparison of physical and data-driven
models to forecast groundwater level changes with the inclusion of GRACE - A case study over the state of Victoria, Australia.
Journal of Hydrology, 602:126735, doi:10.1016/j.jhydrol.2021.126735.
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- Yin, Gaohong and Park, Jongmin, 2021. The use of triple collocation approach to merge satellite- and model-based terrestrial
water storage for flood potential analysis. Journal of Hydrology, 603:127197, doi:10.1016/j.jhydrol.2021.127197.
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- Young, Zachary M., Kreemer, Corné, and Blewitt, Geoffrey, 2021. GPS Constraints on Drought-Induced Groundwater Loss
Around Great Salt Lake, Utah, With Implications for Seismicity Modulation. Journal of Geophysical Research (Solid Earth),
126(10):e2021JB022020, doi:10.1029/2021JB022020.
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- Yu, Qiutong, Wang, Shusen, He, Hongjie, Yang, Ke, Ma, Lingfei, and Li, Jonathan, 2021. Reconstructing GRACE-like TWS anomalies
for the Canadian landmass using deep learning and land surface model. International Journal of Applied Earth Observation
and Geoinformation, 102:102404, doi:10.1016/j.jag.2021.102404.
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- Yu, Biao, You, Wei, Fan, Dong-Ming, Su, Yong, and Nigatu, Zemede M., 2021. A comparison of GRACE temporal gravity field models
recovered with different processing details. Geophysical Journal International, 227(2):1392–1417, doi:10.1093/gji/ggab279.
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- Yu, Wen, Gong, Huili, Chen, Beibei, Zhou, Chaofan, and Zhang, Qingquan, 2021. Combined GRACE and MT-InSAR to Assess the Relationship
between Groundwater Storage Change and Land Subsidence in the Beijing-Tianjin-Hebei Region. Remote Sensing, 13(18):3773,
doi:10.3390/rs13183773.
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- Yuan, Liangliang and Jin, Shuanggen, 2021. Observational Evidence and Formation Mechanism of Low Density Cells in the Upper
Thermosphere on September 8, 2017. Journal of Geophysical Research (Space Physics), 126(2):e28915, doi:10.1029/2020JA028915.
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- Yuan, Junjun, Zhou, Shanshi, Hu, Xiaogong, Yang, Long, Cao, Jianfeng, Li, Kai, and Liao, Min, 2021. Impact of Attitude Model,
Phase Wind-Up and Phase Center Variation on Precise Orbit and Clock Offset Determination of GRACE-FO and CentiSpace-1. Remote
Sensing, 13(13):2636, doi:10.3390/rs13132636.
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- Zhamkov, A. S. and Milyukov, V. K., 2021. Next Generation Gravity Missions to Address the Challenges of High-Precision
Space Gravimetry. Izvestiya Physics of the Solid Earth, 57(2):266–278, doi:10.1134/S1069351321020130.
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- Zhang, Bao, Yao, Yibin, Liu, Lin, and Yang, Yuanjian, 2021. Interannual ice mass variations over the Antarctic ice sheet from
2003 to 2017 were linked to El Niño-Southern Oscillation. Earth and Planetary Science Letters, 560:116796, doi:10.1016/j.epsl.2021.116796.
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- Zhang, Chong, Duan, Qingyun, J. -F. Yeh, Pat, Pan, Yun, Gong, Huili, Moradkhani, Hamid, Gong, Wei, Lei, Xiaohui, Liao, Weihong,
Xu, Lei, Huang, Zhiyong, Zheng, Longqun, and Guo, Xueru, 2021. Sub-regional groundwater storage recovery in North China Plain
after the South-to-North water diversion project. Journal of Hydrology, 597:126156, doi:10.1016/j.jhydrol.2021.126156.
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- Zhang, Man-Lian, Liu, Libo, and Li, Qiaoling, 2021. Modeling the global ionospheric electron densities based on the EOF decomposition
of the ionospheric radio occultation observation. Advances in Space Research, 68(5):2218–2232, doi:10.1016/j.asr.2020.09.033.
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- Zhang, Lan, Tang, He, and Sun, Wenke, 2021. Comparison of GRACE and GNSS Seasonal Load Displacements Considering Regional
Averages and Discrete Points. Journal of Geophysical Research (Solid Earth), 126(8):e21775, doi:10.1029/2021JB021775.
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- Zhang, Keke, Li, Xingxing, Wu, Jiaqi, Yuan, Yongqiang, Li, Xin, Zhang, Xiaohong, and Zhang, Wei, 2021. Precise Orbit Determination
for LEO Satellites With Ambiguity Resolution: Improvement and Comparison. Journal of Geophysical Research (Solid Earth),
126(9):e22491, doi:10.1029/2021JB022491.
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- Zhang, Hao, Ding, Jie, Wang, Yushi, Zhou, Dongyang, and Zhu, Qian, 2021. Investigation about the correlation and propagation
among meteorological, agricultural and groundwater droughts over humid and arid/semi-arid basins in China. Journal of Hydrology,
603:127007, doi:10.1016/j.jhydrol.2021.127007.
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- Zhang, Chaoyang, Shum, C. K., Bezdek, Ales, Bevis, Michael, de Teixeira da Encarnação, João, Tapley,
Byron D., Zhang, Yu, Su, Xiaoli, and Shen, Qiang, 2021. Rapid Mass Loss in West Antarctica Revealed by Swarm Gravimetry in
the Absence of GRACE. Geophysical Research Letters, 48(23):e95141, doi:10.1029/2021GL095141.
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- Zhang, Guoqing, Shen, Wenbin, Fu, Guangyu, Li, Zhangjun, Zhu, Yiqing, and Wang, Ying, 2021. Moho Changes Beneath the Northeastern
Tibetan Plateau Revealed by Multiple Geodetic Datasets. Journal of Geophysical Research (Solid Earth), 126(11):e22060,
doi:10.1029/2021JB022060.
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- Zhao, Mengnan, Ponte, Rui M., Penduff, Thierry, Close, Sally, Llovel, William, and Molines, Jean-Marc, 2021. Imprints of Ocean
Chaotic Intrinsic Variability on Bottom Pressure and Implications for Data and Model Analyses. Geophysical Research Letters,
48(24):e96341, doi:10.1029/2021GL096341.
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- Zhong, Detang, Wang, Shusen, and Li, Junhua, 2021. A Self-Calibration Variance-Component Model for Spatial Downscaling of
GRACE Observations Using Land Surface Model Outputs. Water Resources Research, 57(1):e28944, doi:10.1029/2020WR028944.
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- Zhong, Detang, Wang, Shusen, and Li, Junhua, 2021. Spatiotemporal Downscaling of GRACE Total Water Storage Using Land Surface
Model Outputs. Remote Sensing, 13(5):900, doi:10.3390/rs13050900.
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- Zhu, Enda and Yuan, Xing, 2021. Global Freshwater Storage Capability across Time Scales in the GRACE Satellite Era. Advances
in Atmospheric Sciences, 38(6):905–917, doi:10.1007/s00376-021-0222-z.
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- Zhu, Yu, Liu, Shiyin, Yi, Ying, Xie, Fuming, Grünwald, Richard, Miao, Wenfei, Wu, Kunpeng, Qi, Miaomiao, Gao, Yongpeng,
and Singh, Dharmaveer, 2021. Overview of terrestrial water storage changes over the Indus River Basin based on GRACE/GRACE-FO
solutions. Science of the Total Environment, 799:149366, doi:10.1016/j.scitotenv.2021.149366.
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- Zuo, Jingping, Xu, Jianhua, Chen, Yaning, and Li, Weihong, 2021. Downscaling simulation of groundwater storage in the Tarim
River basin in northwest China based on GRACE data. Physics and Chemistry of the Earth, 123:103042, doi:10.1016/j.pce.2021.103042.
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- Zwally, H. Jay, Robbins, John W., Luthcke, Scott B., Loomis, Bryant D., and Rémy, Frédérique, 2021. Mass
balance of the Antarctic ice sheet 1992–2016: reconciling results from GRACE gravimetry with ICESat, ERS1/2 and Envisat
altimetry. Journal of Glaciology, 67(263):533–559, doi:10.1017/jog.2021.8.
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- Abdelmohsen, Karem, Sultan, Mohamed, Save, Himanshu, Abotalib, Abotalib Z., and Yan, Eugene, 2020. What can the GRACE seasonal
cycle tell us about lake-aquifer interactions?. Earth Science Reviews, 211:103392, doi:10.1016/j.earscirev.2020.103392.
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- Ahmed, Mohamed, 2020. Sustainable management scenarios for northern Africa's fossil aquifer systems. Journal of Hydrology,
589:125196, doi:10.1016/j.jhydrol.2020.125196.
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- Alothman, A. O., Bos, M., Fernandes, R., Radwan, Ali M., and Rashwan, M., 2020. Annual sea level variations in the Red
Sea observed using GNSS. Geophysical Journal International, 221(2):826–834, doi:10.1093/gji/ggaa032.
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- Amin, H., Bagherbandi, M., and Sjöberg, L. E., 2020. Quantifying barystatic sea-level change from satellite altimetry,
GRACE and Argo observations over 2005-2016. Advances in Space Research, 65(8):1922–1940, doi:10.1016/j.asr.2020.01.029.
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- Argus, Donald F., Ratliff, Benjamin, DeMets, Charles, Borsa, Adrian A., Wiese, David N., Blewitt, Geoffrey, Crowley, John
W., Martens, Hilary R., Kreemer, Corné, and Landerer, Felix W., 2020. Rise of Great Lakes Surface Water, Sinking of
the Upper Midwest of the United States, and Viscous Collapse of the Forebulge of the Former Laurentide Ice Sheet. Journal
of Geophysical Research (Solid Earth), 125(9):e19739, doi:10.1029/2020JB019739.
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- Asoka, Akarsh and Mishra, Vimal, 2020. Anthropogenic and Climate Contributions on the Changes in Terrestrial Water Storage
in India. Journal of Geophysical Research (Atmospheres), 125(10):e32470, doi:10.1029/2020JD032470.
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- Asoka, Akarsh and Mishra, Vimal, 2020. A Strong Linkage between Seasonal Crop Growth and Groundwater Storage Variability in
India. Journal of Hydrometeorology, 22(1):125–138, doi:10.1175/JHM-D-20-0085.1.
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- Behrangi, Ali, Gardner, Alex S., and Wiese, David N., 2020. Comparative analysis of snowfall accumulation over Antarctica
in light of Ice discharge and gravity observations from space. Environmental Research Letters, 15(10):104010, doi:10.1088/1748-9326/ab9926.
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- Belonenko, T. V. and Koldunov, A. V., 2020. Trends of Steric Sea Level Oscillations in the North Atlantic. Izvestiya
Atmospheric and Oceanic Physics, 55(9):1106–1113, doi:10.1134/S0001433819090081.
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- Bertiger, Willy, Bar-Sever, Yoaz, Dorsey, Angie, Haines, Bruce, Harvey, Nate, Hemberger, Dan, Heflin, Michael, Lu, Wenwen,
Miller, Mark, Moore, Angelyn W., Murphy, Dave, Ries, Paul, Romans, Larry, Sibois, Aurore, Sibthorpe, Ant, Szilagyi, Bela,
Vallisneri, Michele, and Willis, Pascal, 2020. GipsyX/RTGx, a new tool set for space geodetic operations and research. Advances
in Space Research, 66(3):469–489, doi:10.1016/j.asr.2020.04.015.
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- Soumendra N. Bhanja, Abhijit Mukherjee, and Matthew Rodell, 2020. Groundwater storage change detection from in situ and GRACE-based
estimates in major river basins across India. Hydrological Sciences Journal, 65(4):650–659, doi:10.1080/02626667.2020.1716238.
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- Boergens, Eva, Güntner, Andreas, Dobslaw, Henryk, and Dahle, Christoph, 2020. Quantifying the Central European Droughts
in 2018 and 2019 With GRACE Follow-On. Geophysical Research Letters, 47(14):e87285, doi:10.1029/2020GL087285.
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- Bonin, Jennifer A. and Save, Himanshu, 2020. Evaluation of sub-monthly oceanographic signal in GRACE ``daily'' swath series
using altimetry. Ocean Science, 16(2):423–434, doi:10.5194/os-16-423-2020.
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- Burnett, Michael W., Quetin, Gregory R., and Konings, Alexandra G., 2020. Data-driven estimates of evapotranspiration and
its controls in the Congo Basin. Hydrology and Earth System Sciences, 24(8):4189–4211, doi:10.5194/hess-24-4189-2020.
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- Cáceres, Denise, Marzeion, Ben, Hendrik Malles, Jan, Gutknecht, Benjamin Daniel, Müller Schmied, Hannes, and Döll,
Petra, 2020. Assessing global water mass transfers from continents to oceans over the period 1948-2016. Hydrology and Earth
System Sciences, 24(10):4831–4851, doi:10.5194/hess-24-4831-2020.
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- Calabia, Andres, Tang, Geshi, and Jin, Shuanggen, 2020. Assessment of new thermospheric mass density model using NRLMSISE-00
model, GRACE, Swarm-C, and APOD observations. Journal of Atmospheric and Solar-Terrestrial Physics, 199:105207, doi:10.1016/j.jastp.2020.105207.
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- Cambiotti, Gabriele, Douch, Karim, Cesare, Stefano, Haagmans, Roger, Sneeuw, Nicolas, Anselmi, Alberto, Marotta, Anna Maria,
and Sabadini, Roberto, 2020. On Earthquake Detectability by the Next-Generation Gravity Mission. Surveys in Geophysics,
41(5):1049–1074, doi:10.1007/s10712-020-09603-7.
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- Cambiotti, G., 2020. Joint estimate of the co-seismic 2011 Tohoku earthquake fault slip and post-seismic viscoelastic relaxation
by GRACE data inversion. Geophysical Journal International, 220(2):1012–1022, doi:10.1093/gji/ggz485.
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- Caron, Lambert and Ivins, Erik R., 2020. A baseline Antarctic GIA correction for space gravimetry. Earth and Planetary
Science Letters, 531:115957, doi:10.1016/j.epsl.2019.115957.
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- Chang, Le and Sun, Wenke, 2020. Greening Trends of Southern China Confirmed by GRACE. Remote Sensing, 12(2):328, doi:10.3390/rs12020328.
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- Chang, Li-Ling, Yuan, Ruiqiang, Gupta, Hoshin V., Winter, C. Larrabee, and Niu, Guo-Yue, 2020. Why Is the Terrestrial Water
Storage in Dryland Regions Declining? A Perspective Based on Gravity Recovery and Climate Experiment Satellite Observations
and Noah Land Surface Model With Multiparameterization Schemes Model Simulations. Water Resources Research, 56(11):e27102,
doi:10.1029/2020WR027102.
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- Chanu, Ch Samurembi, Munagapati, Harika, Tiwari, V. M., Kumar, Arvind, and Elango, L., 2020. Use of GRACE time-series
data for estimating groundwater storage at small scale. Journal of Earth System Science, 129(1):215, doi:10.1007/s12040-020-01465-2.
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- Chao, B. F. and Yu, Y., 2020. Variation of the equatorial moments of inertia associated with a 6-year westward rotary
motion in the Earth. Earth and Planetary Science Letters, 542:116316, doi:10.1016/j.epsl.2020.116316.
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- Chen, Xuhui, Jiang, Jinbao, Lei, Tianjie, and Yue, Chong, 2020. GRACE satellite monitoring and driving factors analysis of
groundwater storage under high-intensity coal mining conditions: a case study of Ordos, northern Shaanxi and Shanxi, China.
Hydrogeology Journal, 28(2):673–686, doi:10.1007/s10040-019-02101-0.
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- Chen, Jianli, Tapley, Byron, Wilson, Clark, Cazenave, Anny, Seo, Ki-Weon, and Kim, Jae-Seung, 2020. Global Ocean Mass Change
From GRACE and GRACE Follow-On and Altimeter and Argo Measurements. Geophysical Research Letters, 47(22):e90656, doi:10.1029/2020GL090656.
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- Chen, Jianli, Tapley, Byron, Rodell, Matt, Seo, Ki-Weon, Wilson, Clark, Scanlon, Bridget R., and Pokhrel, Yadu, 2020. Basin-Scale
River Runoff Estimation From GRACE Gravity Satellites, Climate Models, and In Situ Observations: A Case Study in the Amazon
Basin. Water Resources Research, 56(10):e28032, doi:10.1029/2020WR028032.
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- Chen, Tianyi, Kusche, Jürgen, Shen, Yunzhong, and Chen, Qiujie, 2020. A Combined Use of TSVD and Tikhonov Regularization
for Mass Flux Solution in Tibetan Plateau. Remote Sensing, 12(12):2045, doi:10.3390/rs12122045.
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- Ciracì, E., Velicogna, I., and Swenson, S., 2020. Continuity of the Mass Loss of the World's Glaciers and Ice Caps
From the GRACE and GRACE Follow-On Missions. Geophysical Research Letters, 47(9):e86926, doi:10.1029/2019GL086926.
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- Croteau, M. J., Nerem, R. S., Loomis, B. D., and Sabaka, T. J., 2020. Development of a Daily GRACE Mascon
Solution for Terrestrial Water Storage. Journal of Geophysical Research (Solid Earth), 125(3):e18468, doi:10.1029/2019JB018468.
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- Crowley, John W. and Huang, Jianliang, 2020. A least-squares method for estimating the correlated error of GRACE models. Geophysical
Journal International, 221(3):1736–1749, doi:10.1093/gji/ggaa104.
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- Dembélé, Moctar, Hrachowitz, Markus, Savenije, Hubert H. G., Mariéthoz, Grégoire, and Schaefli,
Bettina, 2020. Improving the Predictive Skill of a Distributed Hydrological Model by Calibration on Spatial Patterns With
Multiple Satellite Data Sets. Water Resources Research, 56(1):e26085, doi:10.1029/2019WR026085.
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- Dembélé, Moctar, Ceperley, Natalie, Zwart, Sand er J., Salvadore, Elga, Mariethoz, Gregoire, and Schaefli, Bettina,
2020. Potential of satellite and reanalysis evaporation datasets for hydrological modelling under various model calibration
strategies. Advances in Water Resources, 143:103667, doi:10.1016/j.advwatres.2020.103667.
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- Dembélé, Moctar, Schaefli, Bettina, van de Giesen, Nick, and Mariéthoz, Grégoire, 2020. Suitability
of 17 gridded rainfall and temperature datasets for large-scale hydrological modelling in West Africa. Hydrology and Earth
System Sciences, 24(11):5379–5406, doi:10.5194/hess-24-5379-2020.
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- Deng, Shanshan, Liu, Suxia, and Mo, Xingguo, 2020. Assessment of Three Common Methods for Estimating Terrestrial Water Storage
Change with Three Reanalysis Datasets. Journal of Climate, 33(2):511–525, doi:10.1175/JCLI-D-18-0637.1.
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- Deng, Liansheng, Chen, Hua, Ma, Ailong, and Chen, Qusen, 2020. Non-tidal mass variations in the IGS second reprocessing campaign:
interpretations and noise analysis from GRACE and geophysical models. Remote Sensing, 12(15):2477, doi:10.3390/rs12152477.
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- Diament, Michel, Mikhailov, Valentin, and Timoshkina, Elena, 2020. Joint inversion of GPS and high-resolution GRACE gravity
data for the 2012 Wharton basin earthquakes. Journal of Geodynamics, 136:101722, doi:10.1016/j.jog.2020.101722.
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- Dobslaw, Henryk, Dill, Robert, Bagge, Meike, Klemann, Volker, Boergens, Eva, Thomas, Maik, Dahle, Christoph, and Flechtner,
Frank, 2020. Gravitationally Consistent Mean Barystatic Sea Level Rise From Leakage-Corrected Monthly GRACE Data. Journal
of Geophysical Research (Solid Earth), 125(11):e20923, doi:10.1029/2020JB020923.
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- Doumbia, Cheick, Castellazzi, Pascal, Rousseau, Alain N., and Amaya, Macarena, 2020. Corrigendum: High Resolution Mapping
of Ice Mass Loss in the Gulf of Alaska From Constrained Forward Modeling of GRACE Data. Frontiers in Earth Science,
8:57, doi:10.3389/feart.2020.00057.
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- Droppers, Bram, Franssen, Wietse H. P., van Vliet, Michelle T. H., Nijssen, Bart, and Ludwig, Fulco, 2020. Simulating
human impacts on global water resources using VIC-5. Geoscientific Model Development, 13(10):5029–5052, doi:10.5194/gmd-13-5029-2020.
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- Eicker, Annette, Jensen, Laura, Wöhnke, Viviana, Dobslaw, Henryk, Kvas, Andreas, Mayer-Gürr, Torsten, and Dill,
Robert, 2020. Daily GRACE satellite data evaluate short-term hydro-meteorological fluxes from global atmospheric reanalyses.
Scientific Reports, 10:4504, doi:10.1038/s41598-020-61166-0.
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- Eshagh, Mehdi, Fatolazadeh, Farzam, and Tenzer, Robert, 2020. Lithospheric stress, strain and displacement changes from GRACE-FO
time-variable gravity: case study for Sar-e-Pol Zahab Earthquake 2018. Geophysical Journal International, 223(1):379–397,
doi:10.1093/gji/ggaa313.
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- Falck, C., Rei\3land, S., Snopek, K., and Massmann, F.-H., 2020. Satellite data reception at Ny-Ålesund, Spitsbergen:
From CHAMP to GRACE Follow-On. Zeitschrift für Vermessungswesen, 145:111–117.
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- Farahmand, Alireza, Stavros, E. Natasha, Reager, John T., Behrangi, Ali, Randerson, James T., and Quayle, Brad, 2020. Satellite
hydrology observations as operational indicators of forecasted fire danger across the contiguous United States. Natural
Hazards and Earth System Sciences, 20(4):1097–1106, doi:10.5194/nhess-20-1097-2020.
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- Fatolazadeh, Farzam, Go\"ıta, Kalifa, and Javadi Azar, Rahim, 2020. Determination of earthquake epicentres based upon
invariant quantities of GRACE strain gravity tensors. Scientific Reports, 10:7636, doi:10.1038/s41598-020-64560-w.
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- Ferrándiz, José M., Modiri, Sadegh, Belda, Santiago, Barkin, Mikhail, Bloßfeld, Mathis, Heinkelmann, Robert,
and Schuh, Harald, 2020. Drift of the Earth's Principal Axes of Inertia from GRACE and Satellite Laser Ranging Data. Remote
Sensing, 12(2):314, doi:10.3390/rs12020314.
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- Ferreira, Vagner G., Yong, Bin, Seitz, Kurt, Heck, Bernhard, and Grombein, Thomas, 2020. Introducing an improved GRACE global
point-mass solution—A case study in Antarctica. Remote Sensing, 12(19):3197, doi:10.3390/rs12193197.
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- Fettweis, Xavier, Hofer, Stefan, Krebs-Kanzow, Uta, Amory, Charles, Aoki, Teruo, Berends, Constantijn J., Born, Andreas, Box,
Jason E., Delhasse, Alison, Fujita, Koji, Gierz, Paul, Goelzer, Heiko, Hanna, Edward, Hashimoto, Akihiro, Huybrechts, Philippe,
Kapsch, Marie-Luise, King, Michalea D., Kittel, Christoph, Lang, Charlotte, Langen, Peter L., Lenaerts, Jan T. M., Liston,
Glen E., Lohmann, Gerrit, Mernild, Sebastian H., Mikolajewicz, Uwe, Modali, Kameswarrao, Mottram, Ruth H., Niwano, Masashi,
Noël, Brice, Ryan, Jonathan C., Smith, Amy, Streffing, Jan, Tedesco, Marco, van de Berg, Willem Jan, van den Broeke,
Michiel, van de Wal, Roderik S. W., van Kampenhout, Leo, Wilton, David, Wouters, Bert, Ziemen, Florian, and Zolles, Tobias,
2020. GrSMBMIP: intercomparison of the modelled 1980-2012 surface mass balance over the Greenland Ice Sheet. The Cryosphere,
14(11):3935–3958, doi:10.5194/tc-14-3935-2020.
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- Forootan, Ehsan, Schumacher, Maike, Mehrnegar, Nooshin, Bezd\vek, Ales, Talpe, Matthieu J., Farzaneh, Saeed, Zhang, Chaoyang,
Zhang, Yu, and Shum, C. K., 2020. An Iterative ICA-based Reconstruction Method to Produce Consistent Time-Variable Total
Water Storage Fields using GRACE and Swarm Satellite Data. Remote Sensing, 12(10):1639, doi:10.3390/rs12101639.
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- Forootan, E., Farzaneh, S., Kosary, M., Schmidt, M., and Schumacher, M., 2020. A simultaneous calibration and data assimilation
(C/DA) to improve NRLMSISE00 using thermospheric neutral density (TND) from space-borne accelerometer measurements. Geophysical
Journal International, 224(2):1096–1115, doi:10.1093/gji/ggaa507.
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- Gao, Fei, Wang, Huixiao, and Liu, Changming, 2020. Long-term assessment of groundwater resources carrying capacity using GRACE
data and Budyko model. Journal of Hydrology, 588:125042, doi:10.1016/j.jhydrol.2020.125042.
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- Garc\'ıa-Garc\'ıa, David, Vigo, Isabel, and Trottini, Mario, 2020. Water transport among the world ocean basins
within the water cycle. Earth System Dynamics, 11(4):1089–1106, doi:10.5194/esd-11-1089-2020.
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- Gerdener, Helena, Engels, Olga, and Kusche, Jürgen, 2020. A framework for deriving drought indicators from the Gravity
Recovery and Climate Experiment (GRACE). Hydrology and Earth System Sciences, 24(1):227–248, doi:10.5194/hess-24-227-2020.
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- Getirana, Augusto, Rodell, Matthew, Kumar, Sujay, Beaudoing, Hiroko Kato, Arsenault, Kristi, Zaitchik, Benjamin, Save, Himanshu,
and Bettadpur, Srinivas, 2020. GRACE Improves Seasonal Groundwater Forecast Initialization over the United States. Journal
of Hydrometeorology, 21(1):59–71, doi:10.1175/JHM-D-19-0096.1.
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- Getirana, Augusto, Jung, Hahn Chul, Arsenault, Kristi, Shukla, Shraddhanand, Kumar, Sujay, Peters-Lidard, Christa, Maigari,
Issoufou, and Mamane, Bako, 2020. Satellite Gravimetry Improves Seasonal Streamflow Forecast Initialization in Africa. Water
Resources Research, 56(2):e26259, doi:10.1029/2019WR026259.
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- Ghobadi-Far, Khosro, Han, Shin-Chan, McCullough, Christopher M., Wiese, David N., Yuan, Dah-Ning, Landerer, Felix W., Sauber,
Jeanne, and Watkins, Michael M., 2020. GRACE Follow-On Laser Ranging Interferometer Measurements Uniquely Distinguish Short-Wavelength
Gravitational Perturbations. Geophysical Research Letters, 47(16):e89445, doi:10.1029/2020GL089445.
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- Ghobadi-Far, Khosro, Han, Shin-Chan, Allgeyer, Sébastien, Tregoning, Paul, Sauber, Jeanne, Behzadpour, Saniya, Mayer-Gürr,
Torsten, Sneeuw, Nico, and Okal, Emile, 2020. GRACE gravitational measurements of tsunamis after the 2004, 2010, and 2011
great earthquakes. Journal of Geodesy, 94(7):65, doi:10.1007/s00190-020-01395-3.
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- Gido, Nureldin A. A., Amin, Hadi, Bagherbandi, Mohammad, and Nilfouroushan, Faramarz, 2020. Satellite Monitoring of Mass
Changes and Ground Subsidence in Sudan's Oil Fields Using GRACE and Sentinel-1 Data. Remote Sensing, 12(11):1792, doi:10.3390/rs12111792.
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- Gleisner, Hans, Lauritsen, Kent B., Nielsen, Johannes K., and Syndergaard, Stig, 2020. Evaluation of the 15-year ROM SAF monthly
mean GPS radio occultation climate data record. Atmospheric Measurement Techniques, 13(6):3081–3098, doi:10.5194/amt-13-3081-2020.
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- Godah, Walyeldeen, Szelachowska, Malgorzata, Krynski, Jan, and Ray, Jagat Dwipendra, 2020. Assessment of temporal variations
of orthometric/normal heights induced by hydrological mass variations over large river basins using GRACE Mission Data. Remote
Sensing, 12(18):3070, doi:10.3390/rs12183070.
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- Godah, Walyeldeen, Ray, Jagat Dwipendra, Szelachowska, Malgorzata, and Krynski, Jan, 2020. The Use of National CORS Networks
for Determining Temporal Mass Variations within the Earth's System and for Improving GRACE/GRACE-FO Solutions. Remote Sensing,
12(20):3359, doi:10.3390/rs12203359.
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- Gonçalves, Roger D., Stollberg, Reiner, Weiss, Holger, and Chang, Hung K., 2020. Using GRACE to quantify the depletion
of terrestrial water storage in Northeastern Brazil: The Urucuia Aquifer System. Science of the Total Environment,
705:135845, doi:10.1016/j.scitotenv.2019.135845.
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- Gondelach, David J. and Linares, Richard, 2020. Real-Time Thermospheric Density Estimation via Two-Line Element Data Assimilation.
Space Weather, 18(2):e02356, doi:10.1002/(ISSN)1542-7390.
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- Guo, Xiang, Ditmar, Pavel, Zhao, Qile, and Xiao, Yun, 2020. Improved recovery of temporal variations of the Earth's gravity
field from satellite kinematic orbits using an epoch-difference scheme. Journal of Geodesy, 94(8):69, doi:10.1007/s00190-020-01392-6.
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- Gupta, Diksha and Dhanya, C. T., 2020. The potential of GRACE in assessing the flood potential of Peninsular Indian River
basins. International Journal of Remote Sensing, 41(23):9009–9038, doi:10.1080/01431161.2020.1797218.
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- Haagmans, Roger, Siemes, Christian, Massotti, Luca, Carraz, Olivier, and Silvestrin, Pierluigi, 2020. ESA's next-generation
gravity mission concepts. Rendiconti Lincei. Scienze Fisiche e Naturali, 31:15–25, doi:10.1007/s12210-020-00875-0.
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- Habibi, Hamid and Raoofian-Naeeni, Mehdi, 2020. Focal mechanism of the great 2004 Sumatra earthquake by joint inversion of
GPS deformation field and GRACE gravity change. Journal of Geodynamics, 140:101783, doi:10.1016/j.jog.2020.101783.
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- Hamlington, Benjamin D., Piecuch, Christopher G., Reager, John T., Chandanpurkar, Hrishi, Frederikse, Thomas, Nerem, R. Steven,
Fasullo, John T., and Cheon, Se-Hyeon, 2020. Origin of interannual variability in global mean sea level. Proceedings of
the National Academy of Science, 117(25):13983–13990, doi:10.1073/pnas.1922190117.
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- Han, Zhiming, Huang, Shengzhi, Huang, Qiang, Bai, Qingjun, Leng, Guoyong, Wang, Hao, Zhao, Jing, Wei, Xiaoting, and Zheng,
Xudong, 2020. Effects of vegetation restoration on groundwater drought in the Loess Plateau, China. Journal of Hydrology,
591:125566, doi:10.1016/j.jhydrol.2020.125566.
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- Han, Shin-Chan, Ghobadi-Far, Khosro, Ray, Richard D., and Papanikolaou, Thomas, 2020. Tidal Geopotential Dependence on Earth
Ellipticity and Seawater Density and Its Detection With the GRACE Follow-On Laser Ranging Interferometer. Journal of Geophysical
Research (Oceans), 125(12):e16774, doi:10.1029/2020JC016774.
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- Hasan, Emad and Tarhule, Aondover, 2020. GRACE: Gravity Recovery and Climate Experiment long-term trend investigation over
the Nile River Basin: Spatial variability drivers. Journal of Hydrology, 586:124870, doi:10.1016/j.jhydrol.2020.124870.
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- Hauk, M. and Wiese, D. N., 2020. New Methods for Linking Science Objectives to Remote Sensing Observations: A Concept
Study Using Single- and Dual-Pair Satellite Gravimetry Architectures. Earth and Space Science, 7(3):e00922, doi:10.1029/2019EA000922.
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- He, Qing, Chun, Kwok Pan, Sum Fok, Hok, Chen, Qiang, Dieppois, Bastien, and Massei, Nicolas, 2020. Water storage redistribution
over East China, between 2003 and 2015, driven by intra- and inter-annual climate variability. Journal of Hydrology,
583:124475, doi:10.1016/j.jhydrol.2019.124475.
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- Hinderer, J., Hector, B., Riccardi, U., Rosat, S., Boy, J. -P., Calvo, M., Littel, F., and Bernard, J. -D., 2020. A study
of the monsoonal hydrology contribution using a 8-yr record (2010-2018) from superconducting gravimeter OSG-060 at Djougou
(Benin, West Africa). Geophysical Journal International, 221(1):431–439, doi:10.1093/gji/ggaa027.
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- Hosseini-Moghari, Seyed-Mohammad, Araghinejad, Shahab, Tourian, Mohammad J., Ebrahimi, Kumars, and Döll, Petra, 2020.
Quantifying the impacts of human water use and climate variations on recent drying of Lake Urmia basin: the value of different
sets of spaceborne and in situ data for calibrating a global hydrological model. Hydrology and Earth System Sciences,
24(4):1939–1956, doi:10.5194/hess-24-1939-2020.
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- Hsu, Ya-Ju, Fu, Yuning, Bürgmann, Roland, Hsu, Shao-Yiu, Lin, Chin-Cheng, Tang, Chi-Hsien, and Wu, Yih-Min, 2020. Assessing
seasonal and interannual water storage variations in Taiwan using geodetic and hydrological data. Earth and Planetary Science
Letters, 550:116532, doi:10.1016/j.epsl.2020.116532.
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- Huang, Wen, Männel, Benjamin, Sakic, Pierre, Ge, Maorong, and Schuh, Harald, 2020. Integrated processing of ground- and
space-based GPS observations: improving GPS satellite orbits observed with sparse ground networks. Journal of Geodesy,
94(10):96, doi:10.1007/s00190-020-01424-1.
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- Huang, Qi, Qin, Guanghua, Zhang, Yongqiang, Tang, Qiuhong, Liu, Changming, Xia, Jun, Chiew, Francis H. S., and Post,
David, 2020. Using remote sensing data-based hydrological model calibrations for predicting runoff in ungauged or poorly gauged
catchments. Water Resources Research, 56(8):e28205, doi:10.1029/2020WR028205.
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- Hulsman, Petra, Winsemius, Hessel C., Michailovsky, Claire I., Savenije, Hubert H. G., and Hrachowitz, Markus, 2020.
Using altimetry observations combined with GRACE to select parameter sets of a hydrological model in a data-scarce region.
Hydrology and Earth System Sciences, 24(6):3331–3359, doi:10.5194/hess-24-3331-2020.
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- Irrgang, Christopher, Saynisch-Wagner, Jan, Dill, Robert, Boergens, Eva, and Thomas, Maik, 2020. Self-Validating Deep Learning
for Recovering Terrestrial Water Storage From Gravity and Altimetry Measurements. Geophysical Research Letters, 47(17):e89258,
doi:10.1029/2020GL089258.
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- Jensen, Laura, Eicker, Annette, Stacke, Tobias, and Dobslaw, Henryk, 2020. Predictive Skill Assessment for Land Water Storage
in CMIP5 Decadal Hindcasts by a Global Reconstruction of GRACE Satellite Data. Journal of Climate, 33(21):9497–9509,
doi:10.1175/JCLI-D-20-0042.1.
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- Jia, Binghao, Cai, Ximing, Zhao, Fang, Liu, Jianguo, Chen, Si, Luo, Xin, Xie, Zhenghui, and Xu, Jianhui, 2020. Potential future
changes of terrestrial water storage based on climate projections by ensemble model simulations. Advances in Water Resources,
142:103635, doi:10.1016/j.advwatres.2020.103635.
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- Jia, Yao, Lei, Huimin, Yang, Hanbo, and Hu, Qingfang, 2020. Terrestrial water storage change Retrieved by GRACE and its implication
in the Tibetan Plateau: estimating areal precipitation in Ungauged region. Remote Sensing, 12(19):3129, doi:10.3390/rs12193129.
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- Jiang, Liguang, Nielsen, Karina, Andersen, Ole B., and Bauer-Gottwein, Peter, 2020. A Bigger Picture of how the Tibetan Lakes
Have Changed Over the Past Decade Revealed by CryoSat-2 Altimetry. Journal of Geophysical Research (Atmospheres), 125(23):e33161,
doi:10.1029/2020JD033161.
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- Jiao, Jiashuang, Zhang, Yongzhi, Bilker-Koivula, Mirjam, Poutanen, Markku, Yin, Peng, and Zhang, Yingnan, 2020. Interannual
glacier and lake mass changes over Scandinavia from GRACE. Geophysical Journal International, 221(3):2126–2141,
doi:10.1093/gji/ggaa146.
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- Jin, Taoyong, Li, Xiaolong, Shum, C. Â. K., Ding, Hao, and Xu, Xinyu, 2020. The Balance and Abnormal Increase of Global
Ocean Mass Change From Land Using GRACE. Earth and Space Science, 7(5):e01104, doi:10.1029/2020EA001104.
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- Jing, Wenlong, Zhao, Xiaodan, Yao, Ling, Jiang, Hao, Xu, Jianhui, Yang, Ji, and Li, Yong, 2020. Variations in terrestrial
water storage in the Lancang-Mekong river basin from GRACE solutions and land surface model. Journal of Hydrology,
580:124258, doi:10.1016/j.jhydrol.2019.124258.
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- Jing, Wenlong, Zhao, Xiaodan, Yao, Ling, Di, Liping, Yang, Ji, Li, Yong, Guo, Liying, and Zhou, Chenghu, 2020. Can Terrestrial
Water Storage Dynamics be Estimated From Climate Anomalies?. Earth and Space Science, 7(3):e00959, doi:10.1029/2019EA000959.
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- Jing, Wenlong, Di, Liping, Zhao, Xiaodan, Yao, Ling, Xia, Xiaolin, Liu, Yangxiaoyue, Yang, Ji, Li, Yong, and Zhou, Chenghu,
2020. A data-driven approach to generate past GRACE-like terrestrial water storage solution by calibrating the land surface
model simulations. Advances in Water Resources, 143:103683, doi:10.1016/j.advwatres.2020.103683.
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- Jing, Wenlong, Zhang, Pengyan, Zhao, Xiaodan, Yang, Yaping, Jiang, Hao, Xu, Jianhui, Yang, Ji, and Li, Yong, 2020. Extending
GRACE terrestrial water storage anomalies by combining the random forest regression and a spatially moving window structure.
Journal of Hydrology, 590:125239, doi:10.1016/j.jhydrol.2020.125239.
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- Johnson, Christopher W., Fu, Yuning, and Bürgmann, Roland, 2020. Hydrospheric modulation of stress and seismicity on
shallow faults in southern Alaska. Earth and Planetary Science Letters, 530:115904, doi:10.1016/j.epsl.2019.115904.
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- Joseph, Naveen, Ryu, Dongryeol, Malano, Hector M., George, Biju, and Sudheer, K. P., 2020. Investigation into sustainable
water use in India using combined large-scale earth system-based modelling and census-based statistical data. Journal of
Hydrology, 587:124930, doi:10.1016/j.jhydrol.2020.124930.
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- Kang, Z., Bettadpur, S., Nagel, P., Save, H., Poole, S., and Pie, N., 2020. GRACE-FO precise orbit determination and gravity
recovery. Journal of Geodesy, 94(9):85, doi:10.1007/s00190-020-01414-3.
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- Knowles, L. A., Bennett, R. A., and Harig, C., 2020. Vertical Displacements of the Amazon Basin From GRACE and GPS.
Journal of Geophysical Research (Solid Earth), 125(2):e18105, doi:10.1029/2019JB018105.
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- Koch, Julian, Zhang, Wenmin, Martinsen, Grith, He, Xin, and Stisen, Simon, 2020. Estimating Net Irrigation Across the North
China Plain Through Dual Modeling of Evapotranspiration. Water Resources Research, 56(12):e27413, doi:10.1029/2020WR027413.
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- Koelling, Jannes, Send, Uwe, and Lankhorst, Matthias, 2020. Decadal Strengthening of Interior Flow of North Atlantic Deep
Water Observed by GRACE Satellites. Journal of Geophysical Research (Oceans), 125(11):e16217, doi:10.1029/2020JC016217.
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- Koukoula, Marika, Nikolopoulos, Efthymios I., Dokou, Zoi, and Anagnostou, Emmanouil N., 2020. Evaluation of Global Water Resources
Reanalysis Products in the Upper Blue Nile River Basin. Journal of Hydrometeorology, 21(5):935–952, doi:10.1175/JHM-D-19-0233.1.
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- Koulali, A. and Clarke, P. J., 2020. Effect of antenna snow intrusion on vertical GPS position time series in Antarctica.
Journal of Geodesy, 94(10):101, doi:10.1007/s00190-020-01403-6.
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- Krauss, S., Behzadpour, S., Temmer, M., and Lhotka, C., 2020. Exploring Thermospheric Variations Triggered by Severe Geomagnetic
Storm on 26 August 2018 Using GRACE Follow-On Data. Journal of Geophysical Research (Space Physics), 125(5):e27731,
doi:10.1029/2019JA027731.
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- Krishnamurthy R, P. Krishna, Fisher, Joshua B., Schimel, David S., and Kareiva, Peter M., 2020. Applying Tipping Point Theory
to Remote Sensing Science to Improve Early Warning Drought Signals for Food Security. Earth's Future, 8(3):e01456,
doi:10.1029/2019EF001456.
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- Landerer, Felix W., Flechtner, Frank M., Save, Himanshu, Webb, Frank H., Bandikova, Tamara, Bertiger, William I., Bettadpur,
Srinivas V., Byun, Sung Hun, Dahle, Christoph, Dobslaw, Henryk, Fahnestock, Eugene, Harvey, Nate, Kang, Zhigui, Kruizinga,
Gerhard L. H., Loomis, Bryant D., McCullough, Christopher, Murböck, Michael, Nagel, Peter, Paik, Meegyeong, Pie,
Nadege, Poole, Steve, Strekalov, Dmitry, Tamisiea, Mark E., Wang, Furun, Watkins, Michael M., Wen, Hui-Ying, Wiese, David
N., and Yuan, Dah-Ning, 2020. Extending the Global Mass Change Data Record: GRACE Follow-On Instrument and Science Data Performance.
Geophysical Research Letters, 47(12):e88306, doi:10.1029/2020GL088306.
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- Lasser, Martin, Meyer, Ulrich, Arnold, Daniel, and Jäggi, Adrian, 2020. Stochastic noise modelling of kinematic orbit
positions in the Celestial Mechanics Approach. Advances in Geosciences, 50:101–113, doi:10.5194/adgeo-50-101-2020.
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- Lasser, Martin, Meyer, Ulrich, Jäggi, Adrian, Mayer-Gürr, Torsten, Kvas, Andreas, Neumayer, Karl Hans, Dahle, Christoph,
Flechtner, Frank, Lemoine, Jean-Michel, Koch, Igor, Weigelt, Matthias, and Flury, Jakob, 2020. Benchmark data for verifying
background model implementations in orbit and gravity field determination software. Advances in Geosciences, 55:1–11,
doi:10.5194/adgeo-55-1-2020.
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- Lau, Nicholas, Borsa, Adrian A., and Becker, Thorsten W., 2020. Present-Day Crustal Vertical Velocity Field for the Contiguous
United States. Journal of Geophysical Research (Solid Earth), 125(10):e20066, doi:10.1029/2020JB020066.
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- Lazin, Rehenuma, Shen, Xinyi, Koukoula, Marika, and Anagnostou, Emmanouil, 2020. Evaluation of the Hyper-Resolution Model-Derived
Water Cycle Components Over the Upper Blue Nile Basin. Journal of Hydrology, 590:125231, doi:10.1016/j.jhydrol.2020.125231.
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- Lenczuk, Artur, Leszczuk, Grzegorz, Klos, Anna, Kosek, Wieslaw, and Bogusz, Janusz, 2020. Study on the inter-annual hydrology-induced
deformations in Europe using GRACE and hydrological models. Journal of Applied Geodesy, 14(4):393–403, doi:10.1515/jag-2020-0017.
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- Li, Tanghua, Wu, Patrick, Wang, Hansheng, Steffen, Holger, Khan, Nicole S., Engelhart, Simon E., Vacchi, Matteo, Shaw, Timothy
A., Peltier, W. Richard, and Horton, Benjamin P., 2020. Uncertainties of Glacial Isostatic Adjustment Model Predictions in
North America Associated With 3D Structure. Geophysical Research Letters, 47(10):e87944, doi:10.1029/2020GL087944.
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- Li, Wenhao, Shum, C. K., Li, Fei, Zhang, Shengkai, Ming, Feng, Chen, Wei, Zhang, Bao, Lei, Jintao, and Zhang, Qingchuan,
2020. Contributions of Greenland GPS Observed Deformation From Multisource Mass Loading Induced Seasonal and Transient Signals.
Geophysical Research Letters, 47(15):e88627, doi:10.1029/2020GL088627.
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- Li, Fupeng, Kusche, Jürgen, Rietbroek, Roelof, Wang, Zhengtao, Forootan, Ehsan, Schulze, Kerstin, and Lück, Christina,
2020. Comparison of Data-Driven Techniques to Reconstruct (1992-2002) and Predict (2017-2018) GRACE-Like Gridded Total Water
Storage Changes Using Climate Inputs. Water Resources Research, 56(5):e26551, doi:10.1029/2019WR026551.
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- Lin, Lu, Gao, Man, Liu, Jintao, Wang, Jiarong, Wang, Shuhong, Chen, Xi, and Liu, Hu, 2020. Understanding the effects of climate
warming on streamflow and active groundwater storage in an alpine catchment: the upper Lhasa River. Hydrology and Earth
System Sciences, 24(3):1145–1157, doi:10.5194/hess-24-1145-2020.
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- Lin, Peirong, Yang, Zong-Liang, Wei, Jiangfeng, Dickinson, Robert E., Zhang, Yongfei, and Zhao, Long, 2020. Assimilating multi-satellite
snow data in ungauged Eurasia improves the simulation accuracy of Asian monsoon seasonal anomalies. Environmental Research
Letters, 15(6):064033, doi:10.1088/1748-9326/ab80ef.
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- Liu, Yonghe, Yang, Zongliang, Lin, Peirong, Zheng, Ziyan, and Xie, Shengjin, 2020. Comparison and evaluation of multiple land
surface products for the water budget in the Yellow River Basin. Journal of Hydrology, 584:124534, doi:10.1016/j.jhydrol.2019.124534.
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- Liu, Xianfeng, Feng, Xiaoming, Ciais, Philippe, Fu, Bojie, Hu, Baoyi, and Sun, Zhangli, 2020. GRACE satellite-based drought
index indicating increased impact of drought over major basins in China during 2002─2017. Agricultural and Forest Meteorology,
291:108057, doi:10.1016/j.agrformet.2020.108057.
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- Liu, Xianfeng, Feng, Xiaoming, Ciais, Philippe, and Fu, Bojie, 2020. Widespread decline in terrestrial water storage and its
link to teleconnections across Asia and eastern Europe. Hydrology and Earth System Sciences, 24(7):3663–3676,
doi:10.5194/hess-24-3663-2020.
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- Liu, Mingming, Yuan, Yunbin, Huo, Xingliang, Li, Min, and Chai, Yanju, 2020. Simultaneous estimation of GPS P1-P2 differential
code biases using low earth orbit satellites data from two different orbit heights. Journal of Geodesy, 94(12):121,
doi:10.1007/s00190-020-01458-5.
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- Liu, Xiaomang, Liu, Changming, and Brutsaert, Wilfried, 2020. Mutual Consistency of Groundwater Storage Changes Derived From
GRACE and From Baseflow Recessions in the Central Yangtze River Basin. Journal of Geophysical Research (Atmospheres),
125(24):e31467, doi:10.1029/2019JD031467.
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- Loomis, Bryant D., Rachlin, Kenneth E., Wiese, David N., Landerer, Felix W., and Luthcke, Scott B., 2020. Replacing GRACE/GRACE-FO
C30 With Satellite Laser Ranging: Impacts on Antarctic Ice Sheet Mass Change. Geophysical Research Letters, 47(3):e85488,
doi:10.1029/2019GL085488.
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- Lopez, T., Al Bitar, A., Biancamaria, S., Güntner, A., and Jäggi, A., 2020. On the Use of Satellite Remote Sensing
to Detect Floods and Droughts at Large Scales. Surveys in Geophysics, 41(6):1461–1487, doi:10.1007/s10712-020-09618-0.
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- Lu, Biao, Förste, Christoph, Barthelmes, Franz, Petrovic, Svetozar, Flechtner, Frank, Luo, Zhicai, Zhong, Bo, Zhou, Hao,
Wang, Xiaolong, and Wu, Tangting, 2020. Using real polar ground gravimetry data to solve the GOCE polar gap problem in satellite-only
gravity field recovery. Journal of Geodesy, 94(3):34, doi:10.1007/s00190-020-01361-z.
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- Lucey, Joseph T. D., Reager, John T., and Lopez, Sonya R., 2020. Global partitioning of runoff generation mechanisms
using remote sensing data. Hydrology and Earth System Sciences, 24(3):1415–1427, doi:10.5194/hess-24-1415-2020.
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- Lv, Meixia, Ma, Zhuguo, and Yuan, Naiming, 2020. ?Attributing Terrestrial Water Storage Variations across China to Changes
in Groundwater and Human Water Use. Journal of Hydrometeorology, 22(1):3–21, doi:10.1175/JHM-D-20-0095.1.
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- Mandea, Mioara, Dehant, Véronique, and Cazenave, Anny, 2020. GRACE—Gravity Data for Understanding the Deep Earth's
Interior. Remote Sensing, 12(24):4186, doi:10.3390/rs12244186.
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- Marchesini, Victoria A., Nosetto, Marcelo D., Houspanossian, Javier, and Jobbágy, Esteban G., 2020. Contrasting hydrological
seasonality with latitude in the South American Chaco: The roles of climate and vegetation activity. Journal of Hydrology,
587:124933, doi:10.1016/j.jhydrol.2020.124933.
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- Mashtakov, Yaroslav, Ovchinnikov, Mikhail, Wöske, Florian, Rievers, Benny, and List, Meike, 2020. Attitude determination
& control system design for gravity recovery missions like GRACE. Acta Astronautica, 173:172–182, doi:10.1016/j.actaastro.2020.04.019.
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- Mehrnegar, Nooshin, Jones, Owen, Singer, Michael Bliss, Schumacher, Maike, Bates, Paul, and Forootan, Ehsan, 2020. Comparing
global hydrological models and combining them with GRACE by dynamic model data averaging (DMDA). Advances in Water Resources,
138:103528, doi:10.1016/j.advwatres.2020.103528.
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- Miao, Yue and Wang, Aihui, 2020. A daily 0.25° × 0.25° hydrologically based land surface flux dataset for conterminous
China, 1961-2017. Journal of Hydrology, 590:125413, doi:10.1016/j.jhydrol.2020.125413.
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- Mikhailov, V. O., Timoshkina, E. P., Smirnov, V. B., Khairetdinov, S. A., and Dmitriev, P. N., 2020.
On the Origin of Postseismic Deformation Processes in the Region of the Maule, Chile Earthquake of February 27, 2010. Izvestiya
Physics of the Solid Earth, 56(6):762–771, doi:10.1134/S106935132006004X.
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- Mishra, Vimal, 2020. Long-term (1870-2018) drought reconstruction in context of surface water security in India. Journal
of Hydrology, 580:124228, doi:10.1016/j.jhydrol.2019.124228.
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- Mohajerani, Yara, 2020. Record Greenland mass loss. Nature Climate Change, 10(9):803–804, doi:10.1038/s41558-020-0887-9.
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- Mohamed, Ahmed, 2020. Gravity based estimates of modern recharge of the Sudanese area. Journal of African Earth Sciences,
163:103740, doi:10.1016/j.jafrearsci.2019.103740.
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- Mohamed, Ahmed, 2020. Gravity applications to groundwater storage variations of the Nile Delta Aquifer. Journal of Applied
Geophysics, 182:104177, doi:10.1016/j.jappgeo.2020.104177.
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- Mu, Dapeng, Xu, Tianhe, and Xu, Guochang, 2020. An investigation of mass changes in the Bohai Sea observed by GRACE. Journal
of Geodesy, 94(9):79, doi:10.1007/s00190-020-01408-1.
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- Müller, Jürgen and Wu, Hu, 2020. Using quantum optical sensors for determining the Earth's gravity field from space.
Journal of Geodesy, 94(8):71, doi:10.1007/s00190-020-01401-8.
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- Nascimento, A. A., Awange, J. L., Gonçalves, R. M., and Khandu, 2020. South America's tropopause variability
in relation to global teleconnection (2001-2017): A GNSS-radio occultation assessment. Journal of Atmospheric and Solar-Terrestrial
Physics, 209:105379, doi:10.1016/j.jastp.2020.105379.
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- Ndehedehe, Christopher E. and Ferreira, Vagner G., 2020. Assessing land water storage dynamics over South America. Journal
of Hydrology, 580:124339, doi:10.1016/j.jhydrol.2019.124339.
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- Nicklaus, K., Cesare, S., Massotti, L., Bonino, L., Mottini, S., Pisani, M., and Silvestrin, P., 2020. Laser metrology concept
consolidation for NGGM. CEAS Space Journal, .
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- Ojha, Chandrakanta, Werth, Susanna, and Shirzaei, Manoochehr, 2020. Recovery of aquifer-systems in Southwest US following
2012-2015 drought: Evidence from InSAR, GRACE and groundwater level data. Journal of Hydrology, 587:124943, doi:10.1016/j.jhydrol.2020.124943.
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- Oliveira, Denny M., Zesta, Eftyhia, Hayakawa, Hisashi, and Bhaskar, Ankush, 2020. Estimating Satellite Orbital Drag During
Historical Magnetic Superstorms. Space Weather, 18(11):e02472, doi:10.1029/2020SW002472.
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- Opie, Simon, Taylor, Richard G., Brierley, Chris M., Shamsudduha, Mohammad, and Cuthbert, Mark O., 2020. Climate-groundwater
dynamics inferred from GRACE and the role of hydraulic memory. Earth System Dynamics, 11(3):775–791, doi:10.5194/esd-11-775-2020.
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- Park, Jaeheung, Stolle, Claudia, Yamazaki, Yosuke, Rauberg, Jan, Michaelis, Ingo, and Olsen, Nils, 2020. Diagnosing low-/mid-latitude
ionospheric currents using platform magnetometers: CryoSat-2 and GRACE-FO. Earth, Planets, and Space, 72(1):162, doi:10.1186/s40623-020-01274-3.
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- Pascolini-Campbell, Madeleine A., Reager, John T., and Fisher, Joshua B., 2020. GRACE-based Mass Conservation as a Validation
Target for Basin-Scale Evapotranspiration in the Contiguous United States. Water Resources Research, 56(2):e26594,
doi:10.1029/2019WR026594.
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- Peidou, Athina and Pagiatakis, Spiros, 2020. Stripe Mystery in GRACE Geopotential Models Revealed. Geophysical Research
Letters, 47(4):e85497, doi:10.1029/2019GL085497.
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- Pellet, Victor, Aires, Filipe, Papa, Fabrice, Munier, Simon, and Decharme, Bertrand, 2020. Long-term total water storage change
from a Satellite Water Cycle reconstruction over large southern Asian basins. Hydrology and Earth System Sciences,
24(6):3033–3055, doi:10.5194/hess-24-3033-2020.
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- Pilch Kedzierski, Robin, Matthes, Katja, and Bumke, Karl, 2020. New insights into Rossby wave packet properties in the extratropical
UTLS using GNSS radio occultations. Atmospheric Chemistry & Physics, 20(19):11569–11592, doi:10.5194/acp-20-11569-2020.
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- Piretzidis, Dimitrios and Sideris, Michael G., 2020. Additional methods for the stable calculation of isotropic Gaussian filter
coefficients: The case of a truncated filter kernel. Computers and Geosciences, 145:104594, doi:10.1016/j.cageo.2020.104594.
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- Poropat, Lea, Kvas, Andreas, Mayer-Gürr, Torsten, and Dobslaw, Henryk, 2020. Mitigating temporal aliasing effects of
high-frequency geophysical fluid dynamics in satellite gravimetry. Geophysical Journal International, 220(1):257–266,
doi:10.1093/gji/ggz439.
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- Powell, E., Gomez, N., Hay, C., Latychev, K., and Mitrovica, J. X., 2020. Viscous Effects in the Solid Earth Response
to Modern Antarctic Ice Mass Flux: Implications for Geodetic Studies of WAIS Stability in a Warming World. Journal of Climate,
33(2):443–459, doi:10.1175/JCLI-D-19-0479.1.
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- Preetha, Pooja P. and Al-Hamdan, Ashraf Z., 2020. Integrating finite-element-model and remote-sensing data into SWAT to estimate
transit times of nitrate in groundwater. Hydrogeology Journal, 28(6):2187–2205, doi:10.1007/s10040-020-02171-5.
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- Purkhauser, Anna F., Siemes, Christian, and Pail, Roland, 2020. Consistent quantification of the impact of key mission design
parameters on the performance of next-generation gravity missions. Geophysical Journal International, 221(2):1190–1210,
doi:10.1093/gji/ggaa070.
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- Qian, An, Yi, Shuang, Chang, Le, Sun, Guangtong, and Liu, Xiaoyang, 2020. Using GRACE Data to Study the Impact of Snow and
Rainfall on Terrestrial Water Storage in Northeast China. Remote Sensing, 12(24):4166, doi:10.3390/rs12244166.
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- Qiao, Jing, Xu, Guochang, Liu, Wanke, Fang, Peng, and Chen, Wu, 2020. Comparison of Beidou autonomous navigation performance
using the SRP model and onboard accelerometers. Acta Astronautica, 173:183–194, doi:10.1016/j.actaastro.2020.04.018.
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- Qu, Wei, Han, Yaxi, Lu, Zhong, An, Dongdong, Zhang, Qin, and Gao, Yuan, 2020. Co-seismic and post-seismic temporal and spatial
gravity changes of the 2010 Mw 8.8 Maule Chile earthquake observed by GRACE and GRACE Follow-on. Remote Sensing, 12(17):2768,
doi:10.3390/rs12172768.
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- Raj, Roshin P., Andersen, Ole B., Johannessen, Johnny A., Gutknecht, Benjamin D., Chatterjee, Sourav, Rose, Stine K., Bonaduce,
Antonio, Horwath, Martin, Ranndal, Heidi, Richter, Kristin, Palanisamy, Hindumathi, Ludwigsen, Carsten A., Bertino, Laurent,
Nilsen, J. Even Ø., Knudsen, Per, Hogg, Anna, Cazenave, Anny, and Benveniste, Jérôme, 2020. Arctic sea
level budget assessment during the GRACE/Argo time period. Remote Sensing, 12(17):2837, doi:10.3390/rs12172837.
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- Ramillien, Guillaume, Seoane, Luc\'ıa, Schumacher, Maike, Forootan, Ehsan, Frappart, Frédéric, and Darrozes,
José, 2020. Recovery of Rapid Water Mass Changes (RWMC) by Kalman filtering of GRACE observations. Remote Sensing,
12(8):1299, doi:10.3390/rs12081299.
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- Rateb, Ashraf, Scanlon, Bridget R., Pool, Donald R., Sun, Alexander, Zhang, Zizhan, Chen, Jianli, Clark, Brian, Faunt, Claudia
C., Haugh, Connor J., Hill, Mary, Hobza, Christopher, McGuire, Virginia L., Reitz, Meredith, Müller Schmied, Hannes,
Sutanudjaja, Edwin H., Swenson, Sean, Wiese, David, Xia, Youlong, and Zell, Wesley, 2020. Comparison of Groundwater Storage
Changes From GRACE Satellites With Monitoring and Modeling of Major U.S. Aquifers. Water Resources Research, 56(12):e27556,
doi:10.1029/2020WR027556.
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- Riegger, Johannes, 2020. Quantification of drainable water storage volumes on landmasses and in river networks based on GRACE
and river runoff using a cascaded storage approach - first application on the Amazon. Hydrology and Earth System Sciences,
24(3):1447–1465, doi:10.5194/hess-24-1447-2020.
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- Robinson, Emma L. and Clark, Douglas B., 2020. Using Gravity Recovery and Climate Experiment data to derive corrections to
precipitation data sets and improve modelled snow mass at high latitudes. Hydrology and Earth System Sciences, 24(4):1763–1779,
doi:10.5194/hess-24-1763-2020.
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- Ross, M. P., Hagedorn, C. A., Shaw, E. A., Lockwood, A. L., Iritani, B. M., Lee, J. G., Venkateswara,
K., and Gundlach, J. H., 2020. Limits on the stochastic gravitational wave background and prospects for single-source
detection with GRACE Follow-On. \prd, 101(10):102004, doi:10.1103/PhysRevD.101.102004.
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- Rovira-Navarro, Marc, van der Wal, Wouter, Barletta, Valentina R., Root, Bart C., and Sandberg Sørensen, Louise, 2020.
GRACE constraints on Earth rheology of the Barents Sea and Fennoscandia. Solid Earth, 11(2):379–395, doi:10.5194/se-11-379-2020.
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- Royston, Sam, Vishwakarma, Bramha Dutt, Westaway, Richard, Rougier, Jonathan, Sha, Zhe, and Bamber, Jonathan, 2020. Can We
Resolve the Basin-Scale Sea Level Trend Budget From GRACE Ocean Mass?. Journal of Geophysical Research (Oceans), 125(1):e15535,
doi:10.1029/2019JC015535.
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- Rummel, Reiner, 2020. Earth's gravity from space. Rendiconti Lincei. Scienze Fisiche e Naturali, 31:3–13, doi:10.1007/s12210-020-00889-8.
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- Rzepecka, Zofia and Birylo, Monika, 2020. Groundwater Storage Changes Derived from GRACE and GLDAS on Smaller River Basins—A
Case Study in Poland. Geosciences, 10(4):124, doi:10.3390/geosciences10040124.
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- Sadeghi, Morteza, Gao, Lun, Ebtehaj, Ardeshir, Wigneron, Jean-Pierre, Crow, Wade T., Reager, John T., and Warrick, Arthur
W., 2020. Retrieving global surface soil moisture from GRACE satellite gravity data. Journal of Hydrology, 584:124717,
doi:10.1016/j.jhydrol.2020.124717.
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- Sadeghi, Morteza, Ebtehaj, Ardeshir, Crow, Wade T., Gao, Lun, Purdy, Adam J., Fisher, Joshua B., Jones, Scott B., Babaeian,
Ebrahim, and Tuller, Markus, 2020. Global Estimates of Land Surface Water Fluxes from SMOS and SMAP Satellite Soil Moisture
Data. Journal of Hydrometeorology, 21(2):241–253, doi:10.1175/JHM-D-19-0150.1.
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- Sahour, Sultan, Vazifedan, Abdelmohsen, Karki, Yellich, Gebremichael, Alshehri, and Elbayoumi, 2020. Statistical Applications
to Downscale GRACE-Derived Terrestrial Water Storage Data and to Fill Temporal Gaps. Remote Sensing, 12(3):533, doi:10.3390/rs12030533.
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- Saji, Ajish P., Sunil, P. S., Sreejith, K. M., Gautam, Param K., Kumar, K. Vijay, Ponraj, M., Amirtharaj, S., Shaju,
Rose Mary, Begum, S. K., Reddy, C. D., and Ramesh, D. S., 2020. Surface Deformation and Influence of Hydrological
Mass Over Himalaya and North India Revealed From a Decade of Continuous GPS and GRACE Observations. Journal of Geophysical
Research (Earth Surface), 125(1):e04943, doi:10.1029/2018JF004943.
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- Sasgen, Ingo, Wouters, Bert, Gardner, Alex S., King, Michalea D., Tedesco, Marco, Landerer, Felix W., Dahle, Christoph, Save,
Himanshu, and Fettweis, Xavier, 2020. Return to rapid ice loss in Greenland and record loss in 2019 detected by the GRACE-FO
satellites. Communications Earth and Environment, 1(1):8, doi:10.1038/s43247-020-0010-1.
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- Schmidt, Amanda H., Lüdtke, Stefan, and Andermann, Christoff, 2020. Multiple measures of monsoon-controlled water storage
in Asia. Earth and Planetary Science Letters, 546:116415, doi:10.1016/j.epsl.2020.116415.
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- Seo, Ki-Weon, Oh, Seokhoon, Eom, Jooyoung, Chen, Jianli, and Wilson, Clark R., 2020. Constrained Linear Deconvolution of GRACE
Anomalies to Correct Spatial Leakage. Remote Sensing, 12(11):1798, doi:10.3390/rs12111798.
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- Shah, Deep and Mishra, Vimal, 2020. Integrated Drought Index (IDI) for Drought Monitoring and Assessment in India. Water
Resources Research, 56(2):e26284, doi:10.1029/2019WR026284.
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- Shamsudduha, Mohammad and Taylor, Richard G., 2020. Groundwater storage dynamics in the world's large aquifer systems from
GRACE: uncertainty and role of extreme precipitation. Earth System Dynamics, 11(3):755–774, doi:10.5194/esd-11-755-2020.
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- Sharafati, Ahmad, Asadollah, Seyed Babak Haji Seyed, and Neshat, Aminreza, 2020. A new artificial intelligence strategy for
predicting the groundwater level over the Rafsanjan aquifer in Iran. Journal of Hydrology, 591:125468, doi:10.1016/j.jhydrol.2020.125468.
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- Sharma, Durga, Patnaik, Swagat, Biswal, Basudev, and Reager, John T., 2020. Characterization of Basin-Scale Dynamic Storage—Discharge
Relationship Using Daily GRACE Based Storage Anomaly Data. Geosciences, 10(10):404, doi:10.3390/geosciences10100404.
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- Sjöberg, Lars E. and Bagherbandi, Mohammad, 2020. Upper mantle density and surface gravity change in Fennoscandia, determined
from GRACE monthly data. Tectonophysics, 782:228428, doi:10.1016/j.tecto.2020.228428.
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- Skaskevych, Alla, Lee, Jejung, Jung, Hahn Chul, Bolten, John, David, John L., Policelli, Frederick S., Goni, Ibrahim B., Favreau,
Guillaume, San, Soma, and Ichoku, Charles M., 2020. Application of GRACE to the estimation of groundwater storage change in
a data-poor region: A case study of Ngadda catchment in the Lake Chad Basin. Hydrological Processes, 34(4):941–955,
doi:10.1002/hyp.13613.
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- Sliwinska, Justyna, Nastula, Jolanta, Dobslaw, Henryk, and Dill, Robert, 2020. Evaluating Gravimetric Polar Motion Excitation
Estimates from the RL06 GRACE Monthly-Mean Gravity Field Models. Remote Sensing, 12(6):930, doi:10.3390/rs12060930.
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- Sliwinska, Justyna, Winska, Malgorzata, and Nastula, Jolanta, 2020. Preliminary Estimation and Validation of Polar Motion
Excitation from Different Types of the GRACE and GRACE Follow-On Missions Data. Remote Sensing, 12(21):3490, doi:10.3390/rs12213490.
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- Sohoulande, Clement D. D., Martin, Jerry, Szogi, Ariel, and Stone, Kenneth, 2020. Climate-driven prediction of land water
storage anomalies: An outlook for water resources monitoring across the conterminous United States. Journal of Hydrology,
588:125053, doi:10.1016/j.jhydrol.2020.125053.
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- Soltani, Samira Sadat, Ataie-Ashtiani, Behzad, Danesh-Yazdi, Mohammad, and Simmons, Craig T., 2020. A probabilistic framework
for water budget estimation in low runoff regions: A case study of the central Basin of Iran. Journal of Hydrology,
586:124898, doi:10.1016/j.jhydrol.2020.124898.
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- Song, Xin, Yang, Rong, and Zhan, Xingqun, 2020. An analysis of global ionospheric disturbances and scintillations during the
strong magnetic storm in September 2017. Aerospace Systems, 3(4):255–263, doi:10.1007/s42401-020-00067-6.
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- Su, Xiaoli, Guo, Junyi, Shum, C. K., Luo, Zhicai, and Zhang, Yu, 2020. Increased Low Degree Spherical Harmonic Influences
on Polar Ice Sheet Mass Change Derived from GRACE Mission. Remote Sensing, 12(24):4178, doi:10.3390/rs12244178.
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- Su, Youzhe, Guo, Bin, Zhou, Ziteng, Zhong, Yulong, and Min, Leilei, 2020. Spatio-Temporal Variations in Groundwater Revealed
by GRACE and Its Driving Factors in the Huang-Huai-Hai Plain, China. Sensors, 20(3):922, doi:10.3390/s20030922.
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- Sun, Yu and Riva, Riccardo E. M., 2020. A global semi-empirical glacial isostatic adjustment (GIA) model based on Gravity
Recovery and Climate Experiment (GRACE) data. Earth System Dynamics, 11(1):129–137, doi:10.5194/esd-11-129-2020.
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- Sutterley, Tyler C., Velicogna, Isabella, and Hsu, Chia-Wei, 2020. Self-Consistent Ice Mass Balance and Regional Sea Level
From Time-Variable Gravity. Earth and Space Science, 7(3):e00860, doi:10.1029/2019EA000860.
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- Suzuki, Kazuyoshi and Matsuo, Koji, 2020. GRACE-based terrestrial water storage anomaly estimation and its application in
hydrological science. Journal of Japanese Association of Hydrological Sciences, 50(2):39–53, doi:10.4145/jahs.50.39.
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- Szabó, Viktor and Marjanska, Dorota, 2020. Accuracy Analysis of Gravity Field Changes from Grace RL06 and RL05 Data
Compared to in Situ Gravimetric Measurements in the Context of Choosing Optimal Filtering Type. Artificial Satellites,
55(3):100–117, doi:10.2478/arsa-2020-0008.
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- Tang, Lu, Li, Jin, Chen, Jianli, Wang, Song-Yun, Wang, Rui, and Hu, Xiaogong, 2020. Seismic Impact of Large Earthquakes on
Estimating Global Mean Ocean Mass Change from GRACE. Remote Sensing, 12(6):935, doi:10.3390/rs12060935.
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- Tangdamrongsub, Natthachet, Han, Shin-Chan, Yeo, In-Young, Dong, Jianzhi, Steele-Dunne, Susan C., Willgoose, Garry, and Walker,
Jeffrey P., 2020. Multivariate data assimilation of GRACE, SMOS, SMAP measurements for improved regional soil moisture and
groundwater storage estimates. Advances in Water Resources, 135:103477, doi:10.1016/j.advwatres.2019.103477.
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- Teixeira da Encarna\ccão, João, Visser, Pieter, Arnold, Daniel, Bezdek, Ale\vs, Doornbos, Eelco, Ellmer, Matthias,
Guo, Junyi, van den IJssel, Jose, Iorfida, Elisabetta, Jäggi, Adrian, Klokocn\'ık, Jaroslav, Krauss, Sandro, Mao,
Xinyuan, Mayer-Gürr, Torsten, Meyer, Ulrich, Sebera, Josef, Shum, C. K., Zhang, Chaoyang, Zhang, Yu, and Dahle,
Christoph, 2020. Description of the multi-approach gravity field models from Swarm GPS data. Earth System Science Data,
12(2):1385–1417, doi:10.5194/essd-12-1385-2020.
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- Velicogna, Isabella, Mohajerani, Yara, Geruo, A., Landerer, Felix, Mouginot, Jeremie, Noel, Brice, Rignot, Eric, Sutterley,
Tyler, van den Broeke, Michiel, van Wessem, Melchior, and Wiese, David, 2020. Continuity of Ice Sheet Mass Loss in Greenland
and Antarctica From the GRACE and GRACE Follow-On Missions. Geophysical Research Letters, 47(8):e87291, doi:10.1029/2020GL087291.
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- Vielberg, Kristin and Kusche, Jürgen, 2020. Extended forward and inverse modeling of radiation pressure accelerations
for LEO satellites. Journal of Geodesy, 94(4):43, doi:10.1007/s00190-020-01368-6.
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- Vishwakarma, B. D., Royston, S., Riva, R. E. M., Westaway, R. M., and Bamber, J. L., 2020. Sea Level
Budgets Should Account for Ocean Bottom Deformation. Geophysical Research Letters, 47(3):e86492, doi:10.1002/(ISSN)1944-8007.
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- Wang, Jiarong, Chen, Xi, Hu, Qi, and Liu, Jintao, 2020. Responses of terrestrial water storage to climate variation in the
Tibetan Plateau. Journal of Hydrology, 584:124652, doi:10.1016/j.jhydrol.2020.124652.
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- Wang, Linsong, Chen, Chao, Ma, Xian, Fu, Zhengyan, Zheng, Yuhao, and Peng, Zhenran, 2020. Evaluation of GRACE mascon solutions
using in-situ geodetic data: The case of hydrologic-induced crust displacement in the Yangtze River Basin. Science of the
Total Environment, 707:135606, doi:10.1016/j.scitotenv.2019.135606.
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- Wang, Sijia, Liu, Hu, Yu, Yang, Zhao, Wenzhi, Yang, Qiyue, and Liu, Jintao, 2020. Evaluation of groundwater sustainability
in the arid Hexi Corridor of Northwestern China, using GRACE, GLDAS and measured groundwater data products. Science of
the Total Environment, 705:135829, doi:10.1016/j.scitotenv.2019.135829.
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- Wang, Fei, Wang, Zongmin, Yang, Haibo, Di, Danyang, Zhao, Yong, and Liang, Qiuhua, 2020. Utilizing GRACE-based groundwater
drought index for drought characterization and teleconnection factors analysis in the North China Plain. Journal of Hydrology,
585:124849, doi:10.1016/j.jhydrol.2020.124849.
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- Wang, Jielong, Chen, Yi, Wang, Zhanghui, and Shang, Pengfei, 2020. Drought evaluation over Yangtze River basin based on weighted
water storage deficit. Journal of Hydrology, 591:125283, doi:10.1016/j.jhydrol.2020.125283.
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- Wang, Fengwei, Shen, Yunzhong, Chen, Tianyi, Chen, Qiujie, and Li, Weiwei, 2020. Improved multichannel singular spectrum analysis
for post-processing GRACE monthly gravity field models. Geophysical Journal International, 223(2):825–839, doi:10.1093/gji/ggaa339.
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- Wegener, Henry, Müller, Vitali, Heinzel, Gerhard, and Misfeldt, Malte, 2020. Tilt-to-Length Coupling in the GRACE Follow-On
Laser Ranging Interferometer. Journal of Spacecraft and Rockets, 57(6):1362–1372, doi:10.2514/1.A34790.
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- Willen, Matthias O., Horwath, Martin, Schröder, Ludwig, Groh, Andreas, Ligtenberg, Stefan R. M., Kuipers Munneke,
Peter, and van den Broeke, Michiel R., 2020. Sensitivity of inverse glacial isostatic adjustment estimates over Antarctica.
The Cryosphere, 14(1):349–366, doi:10.5194/tc-14-349-2020.
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- Winter, Kate, Hill, Emily A., Hilmar Gudmundsson, G., and Woodward, John, 2020. Subglacial topography and ice flux along the
English Coast of Palmer Land, Antarctic Peninsula. Earth System Science Data, 12(4):3453–3467, doi:10.5194/essd-12-3453-2020.
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- Wu, Xiaoping, Haines, Bruce J., Heflin, Michael B., and Landerer, Felix W., 2020. Improved Global Nonlinear Surface Mass Variation
Estimates From Geodetic Displacements and Reconciliation With GRACE Data. Journal of Geophysical Research (Solid Earth),
125(2):e18355, doi:10.1029/2019JB018355.
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- Wu, Haonan, Lu, Xian, Lu, Gang, Chu, Xinzhao, Wang, Wenbin, Yu, Zhibin, Kilcommons, Liam M., Knipp, Delores J., Wang, Boyi,
and Nishimura, Yukitoshi, 2020. Importance of Regional-Scale Auroral Precipitation and Electrical Field Variability to the
Storm-Time Thermospheric Temperature Enhancement and Inversion Layer (TTEIL) in the Antarctic E Region. Journal of Geophysical
Research (Space Physics), 125(9):e28224, doi:10.1029/2020JA028224.
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- Wu, Tingtao, Zheng, Wei, Yin, Wenjie, and Zhang, Hanwei, 2020. Spatiotemporal Characteristics of Drought and Driving Factors
Based on the GRACE-Derived Total Storage Deficit Index: A Case Study in Southwest China. Remote Sensing, 13(1):79,
doi:10.3390/rs13010079.
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- Xu, Yuyue, Li, Jin, Wang, Jida, Chen, Jianli, Liu, Yuanbo, Ni, Shengnan, Zhang, Zizhan, and Ke, Changqing, 2020. Assessing
water storage changes of Lake Poyang from multi-mission satellite data and hydrological models. Journal of Hydrology,
590:125229, doi:10.1016/j.jhydrol.2020.125229.
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- Yang, Peng, Zhang, Yongyong, Xia, Jun, and Sun, Shangxin, 2020. Identification of drought events in the major basins of Central
Asia based on a combined climatological deviation index from GRACE measurements. Atmospheric Research, 244:105105,
doi:10.1016/j.atmosres.2020.105105.
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- Yang, Xinchun, Tian, Siyuan, Feng, Wei, Ran, Jiangjun, You, Wei, Jiang, Zhongshan, and Gong, Xiaoying, 2020. Spatio-Temporal
Evaluation of Water Storage Trends from Hydrological Models over Australia Using GRACE Mascon Solutions. Remote Sensing,
12(21):3578, doi:10.3390/rs12213578.
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- Yi, Shuang and Heki, Kosuke, 2020. Heterogeneous oceanic mass distribution in GRACE observations and its leakage effect. Geophysical
Journal International, 221(1):603–616, doi:10.1093/gji/ggaa022.
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- Yin, Z., Wang, X. H., Ottlé, C., Zhou, F., Guimberteau, M., Polcher, J., Peng, S. S., Piao, S. L., Li,
L., Bo, Y., Chen, X. L., Zhou, X. D., Kim, H., and Ciais, P., 2020. Improvement of the Irrigation Scheme in the
ORCHIDEE Land Surface Model and Impacts of Irrigation on Regional Water Budgets Over China. Journal of Advances in Modeling
Earth Systems, 12(4):e01770, doi:10.1029/2019MS001770.
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- Yin, Wenjie, Han, Shin-Chan, Zheng, Wei, Yeo, In-Young, Hu, Litang, Tangdamrongsub, Natthachet, and Ghobadi-Far, Khosro, 2020.
Improved water storage estimates within the North China Plain by assimilating GRACE data into the CABLE model. Journal
of Hydrology, 590:125348, doi:10.1016/j.jhydrol.2020.125348.
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- Yin, Wenjie, Li, Tongqing, Zheng, Wei, Hu, Litang, Han, Shin-Chan, Tangdamrongsub, Natthachet, \vSprlák, Michal, and
Huang, Zhiyong, 2020. Improving regional groundwater storage estimates from GRACE and global hydrological models over Tasmania,
Australia. Hydrogeology Journal, 28(5):1809–1825, doi:10.1007/s10040-020-02157-3.
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- Yin, Wenjie, Hu, Litang, Zheng, Wei, Jiao, Jiu Jimmy, Han, Shin-Chan, and Zhang, Menglin, 2020. Assessing Underground Water
Exchange Between Regions Using GRACE Data. Journal of Geophysical Research (Atmospheres), 125(17):e32570, doi:10.1029/2020JD032570.
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- Yin, Gaohong, Forman, Barton A., Loomis, Bryant D., and Luthcke, Scott B., 2020. Comparison of Vertical Surface Deformation
Estimates Derived From Space-Based Gravimetry, Ground-Based GPS, and Model-Based Hydrologic Loading Over Snow-Dominated Watersheds
in the United States. Journal of Geophysical Research (Solid Earth), 125(8):e19432, doi:10.1029/2020JB019432.
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- Zhan, Wei, Tian, Yunfeng, Zhang, Zhiwei, Zhu, Chuand ong, and Wang, Yong, 2020. Seasonal patterns of 3D crustal motions across
the seismically active southeastern Tibetan Plateau. Journal of Asian Earth Sciences, 192:104274, doi:10.1016/j.jseaes.2020.104274.
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- Zhang, Hong, Zhang, Ling Lei, Li, Jia, An, Rui Dong, and Deng, Yun, 2020. Monitoring the spatiotemporal terrestrial water
storage changes in the Yarlung Zangbo River Basin by applying the P-LSA and EOF methods to GRACE data. Science of the Total
Environment, 713:136274, doi:10.1016/j.scitotenv.2019.136274.
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- Zhang, Miao and Yuan, Xing, 2020. Crucial role of natural processes in detecting human influence on evapotranspiration by
multisource data analysis. Journal of Hydrology, 580:124350, doi:10.1016/j.jhydrol.2019.124350.
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- Zhang, Jianxin, Liu, Kai, and Wang, Ming, 2020. Seasonal and Interannual Variations in China's Groundwater Based on GRACE
Data and Multisource Hydrological Models. Remote Sensing, 12(5):845, doi:10.3390/rs12050845.
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- Zhang, Bao, Liu, Lin, Yao, Yibin, van Dam, Tonie, and Khan, Shfaqat Abbas, 2020. Improving the estimate of the secular variation
of Greenland ice mass in the recent decades by incorporating a stochastic process. Earth and Planetary Science Letters,
549:116518, doi:10.1016/j.epsl.2020.116518.
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- Zhang, Lan, Tang, He, Chang, Le, and Sun, Wenke, 2020. Performance of GRACE Mascon Solutions in Studying Seismic Deformations.
Journal of Geophysical Research (Solid Earth), 125(10):e19510, doi:10.1029/2020JB019510.
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- Zhong, Yulong, Zhong, Min, Mao, Yuna, and Ji, Bing, 2020. Evaluation of Evapotranspiration for Exorheic Catchments of China
during the GRACE Era: From a Water Balance Perspective. Remote Sensing, 12(3):511, doi:10.3390/rs12030511.
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- Zhong, Bo, Li, Xianpao, Chen, Jianli, Li, Qiong, and Liu, Tao, 2020. Surface Mass Variations from GPS and GRACE/GFO: A Case
Study in Southwest China. Remote Sensing, 12(11):1835, doi:10.3390/rs12111835.
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- Zhong, Bo, Li, Qiong, Chen, Jianli, Luo, Zhicai, and Zhou, Hao, 2020. Improved estimation of regional surface mass variations
from GRACE intersatellite geopotential differences using a priori constraints. Remote Sensing, 12(16):2553, doi:10.3390/rs12162553.
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- Zhou, Hao, Zhou, Zebing, Luo, Zhicai, Wang, Kang, and Wei, Min, 2020. What can be expected from GNSS tracking of satellite
constellations for temporal gravity field model determination?. Geophysical Journal International, 222:661–677,
doi:10.1093/gji/ggaa177.
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- Zhu, Chuandong, Zhan, Wei, Liu, Jinzhao, and Chen, Ming, 2020. Application of singular spectrum analysis in reconstruction
of the annual signal from GRACE. Journal of Applied Geodesy, 14(3):295–302, doi:10.1515/jag-2020-0005.
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- Zou, Fang, Tenzer, Robert, Fok, Hok Sum, and Nichol, Janet E., 2020. Recent climate change feedbacks to Greenland ice sheet
mass changes from GRACE. Remote Sensing, 12(19):3250, doi:10.3390/rs12193250.
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- Abd-Elmotaal, Hussein A., Makhloof, Atef, Hassan, Ayman A., and Mohasseb, Hussein, 2019. Preliminary Results on the Estimation
of Ground Water in Africa Using GRACE and Hydrological Models. In Vergos, Georgios S., Pail, Roland, and Barzaghi, Riccardo
(editors), International Symposium on Gravity, Geoid and Height Systems 2016, pp. 217–226, Springer International
Publishing, Cham.
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- Abdelmalik, Karim W. and Abdelmohsen, Karem, 2019. GRACE and TRMM mission: The role of remote sensing techniques for monitoring
spatio-temporal change in total water mass, Nile basin. Journal of African Earth Sciences, 160:103596, doi:10.1016/j.jafrearsci.2019.103596.
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- Abich, Klaus, Abramovici, Alexander, Amparan, Bengie, Baatzsch, Andreas, Okihiro, Brian Bachman, Barr, David C., Bize, Maxime
P., Bogan, Christina, Braxmaier, Claus, Burke, Michael J., Clark, Ken C., Dahl, Christian, Dahl, Katrin, Danzmann, Karsten,
Davis, Mike A., de Vine, Glenn, Dickson, Jeffrey A., Dubovitsky, Serge, Eckardt, Andreas, Ester, Thomas, Barranco, Germán
Fernández, Flatscher, Reinhold, Flechtner, Frank, Folkner, William M., Francis, Samuel, Gilbert, Martin S., Gilles,
Frank, Gohlke, Martin, Grossard, Nicolas, Guenther, Burghardt, Hager, Philipp, Hauden, Jerome, Heine, Frank, Heinzel, Gerhard,
Herding, Mark, Hinz, Martin, Howell, James, Katsumura, Mark, Kaufer, Marina, Klipstein, William, Koch, Alexander, Kruger,
Micah, Larsen, Kameron, Lebeda, Anton, Lebeda, Arnold, Leikert, Thomas, Liebe, Carl Christian, Liu, Jehhal, Lobmeyer, Lynette,
Mahrdt, Christoph, Mangoldt, Thomas, McKenzie, Kirk, Misfeldt, Malte, Morton, Phillip R., Müller, Vitali, Murray, Alexander
T., Nguyen, Don J., Nicklaus, Kolja, Pierce, Robert, Ravich, Joshua A., Reavis, Gretchen, Reiche, Jens, Sanjuan, Josep, Schütze,
Daniel, Seiter, Christoph, Shaddock, Daniel, Sheard, Benjamin, Sileo, Michael, Spero, Robert, Spiers, Gary, Stede, Gunnar,
Stephens, Michelle, Sutton, Andrew, Trinh, Joseph, Voss, Kai, Wang, Duo, Wang, Rabi T., Ware, Brent, Wegener, Henry, Windisch,
Steve, Woodruff, Christopher, Zender, Bernd, and Zimmermann, Marcus, 2019. In-Orbit Performance of the GRACE Follow-on Laser
Ranging Interferometer. Physical Review Letters, 123(3):031101, doi:10.1103/PhysRevLett.123.031101.
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- Abrykosov, P., Pail, R., Gruber, T., Zahzam, N., Bresson, A., Hardy, E., Christophe, B., Bidel, Y., Carraz, O., and Siemes,
C., 2019. Impact of a novel hybrid accelerometer on satellite gravimetry performance. Advances in Space Research, 63:3235–3248,
doi:10.1016/j.asr.2019.01.034.
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- Adhikari, Surendra, Ivins, Erik R., Frederikse, Thomas, Landerer, Felix W., and Caron, Lambert, 2019. Sea-level fingerprints
emergent from GRACE mission data. Earth System Science Data, 11(2):629–646, doi:10.5194/essd-11-629-2019.
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- Adusumilli, S., Borsa, A. A., Fish, M. A., McMillan, H. K., and Silverii, F., 2019. A Decade of Water Storage
Changes Across the Contiguous United States From GPS and Satellite Gravity. Geophysical Research Letters, 46(22):13,006–13,015,
doi:10.1029/2019GL085370.
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- Agutu, N. O., Awange, J. L., Ndehedehe, C., Kirimi, F., and Kuhn, M., 2019. GRACE-derived groundwater changes over
Greater Horn of Africa: Temporal variability and the potential for irrigated agriculture. Science of the Total Environment,
693:133467, doi:10.1016/j.scitotenv.2019.07.273.
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- Ahmed, Mohamed, Sultan, Mohamed, Elbayoumi, Tamer, and Tissot, Philippe, 2019. Forecasting GRACE Data over the African Watersheds
Using Artificial Neural Networks. Remote Sensing, 11(15):1769, doi:10.3390/rs11151769.
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- Ahmed, Kamal, Shahid, Shamsuddin, Demirel, Mehmet Cüneyd, Nawaz, Nadeem, and Khan, Najeebullah, 2019. The changing characteristics
of groundwater sustainability in Pakistan from 2002 to 2016. Hydrogeology Journal, 27(7):2485–2496, doi:10.1007/s10040-019-02023-x.
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- Andritsanos, Vassilios D., Arabatzi, Orthodoxia, Pagounis, Vassilios, and Tsakiri, Maria, 2019. Quality Control of Height
Benchmarks in Attica, Greece, Combining GOCE/GRACE Satellite Data, Global Geopotential Models and Detailed Terrain Information.
In Vergos, Georgios S., Pail, Roland, and Barzaghi, Riccardo (editors), International Symposium on Gravity, Geoid and Height
Systems 2016, pp. 149–156, Springer International Publishing, Cham.
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- Apel, Heiko, Gouweleeuw, Ben, Gafurov, Abror, and Güntner, Andreas, 2019. Forecast of seasonal water availability in
Central Asia with near-real time GRACE water storage anomalies. Environmental Research Communications, 1(3):031006,
doi:10.1088/2515-7620/ab1681.
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- Arnold, Daniel, Montenbruck, Oliver, Hackel, Stefan, and Sosnica, Krzysztof, 2019. Satellite laser ranging to low Earth orbiters:
orbit and network validation. Journal of Geodesy, 93(11):2315–2334, doi:10.1007/s00190-018-1140-4.
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- Bandikova, Tamara, McCullough, Christopher, Kruizinga, Gerhard L., Save, Himanshu, and Christophe, Bruno, 2019. GRACE accelerometer
data transplant. Advances in Space Research, 64(3):623–644, doi:10.1016/j.asr.2019.05.021.
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- Basha, G., Kishore, P., Ratnam, M. V., Ravindra Babu, S., Velicogna, I., Jiang, J. H., and Ao, C. O., 2019.
Global climatology of planetary boundary layer top obtained from multi-satellite GPS RO observations. Climate Dynamics,
52:2385–2398, doi:10.1007/s00382-018-4269-1.
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- Behrangi, Ali, Singh, Alka, Song, Yang, and Panahi, Milad, 2019. Assessing Gauge Undercatch Correction in Arctic Basins in
Light of GRACE Observations. Geophysical Research Letters, 46(20):11,358–11,366, doi:10.1029/2019GL084221.
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- Behzadpour, Saniya, Mayer-Gürr, Torsten, Flury, Jakob, Klinger, Beate, and Goswami, Sujata, 2019. Multiresolution wavelet
analysis applied to GRACE range-rate residuals. Geoscientific Instrumentation, Methods and Data Systems, 8(2):197–207,
doi:10.5194/gi-8-197-2019.
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- Bevis, Michael, Harig, Christopher, Khan, Shfaqat A., Brown, Abel, Simons, Frederik J., Willis, Michael, Fettweis, Xavier,
van den Broeke, Michiel R., Madsen, Finn Bo, Kendrick, Eric, Caccamise, Dana J., van Dam, Tonie, Knudsen, Per, and Nylen,
Thomas, 2019. Accelerating changes in ice mass within Greenland, and the ice sheet's sensitivity to atmospheric forcing. Proceedings
of the National Academy of Science, 116(6):1934–1939, doi:10.1073/pnas.1806562116.
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- Bezdek, A. and Letko, P., 2019. General relativistic effects and estimation of time-varying earth gravity field. Journal
of Applied Geophysics, 161:270–275, doi:10.1016/j.jappgeo.2018.12.004.
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- Bhanja, S. N. and Mukherjee, A., 2019. In situ and satellite-based estimates of usable groundwater storage across India:
Implications for drinking water supply and food security. Advances in Water Resources, 126:15–23, doi:10.1016/j.advwatres.2019.02.001.
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- Bibi, Sadia, Wang, Lei, Li, Xiuping, Zhang, Xiaotao, and Chen, Deliang, 2019. Response of Groundwater Storage and Recharge
in the Qaidam Basin (Tibetan Plateau) to Climate Variations From 2002 to 2016. Journal of Geophysical Research (Atmospheres),
124(9918):9918–9934, doi:10.1029/2019JD030411.
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- Bobojc, Andrzej, 2019. Assessment of chosen GRACE-related gravity models based on the GOCE satellite precise science orbit.
Acta Geophysica, 67(4):1265–1275, doi:10.1007/s11600-019-00317-y.
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- Bodart, J. A. and Bingham, R. J., 2019. The Impact of the Extreme 2015-2016 El Niño on the Mass Balance of
the Antarctic Ice Sheet. Geophysical Research Letters, 46(23):13,862–13,871, doi:10.1029/2019GL084466.
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- Calabia, Andres and Jin, Shuanggen, 2019. Solar cycle, seasonal, and asymmetric dependencies of thermospheric mass density
disturbances due to magnetospheric forcing. Annales Geophysicae, 37(5):989–1003, doi:10.5194/angeo-37-989-2019.
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- Cao, Q., Clark, E. A., Mao, Y., and Lettenmaier, D. P., 2019. Trends and Interannual Variability in Terrestrial
Water Storage Over the Eastern United States, 2003-2016. Water Resources Research, 55:1928–1950, doi:10.1029/2018WR023278.
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- Carvalho Resende, T., Longuevergne, L., Gurdak, J. J., Leblanc, M., Favreau, G., Ansems, N., Van der Gun, J., Gaye, C. B.,
and Aureli, A., 2019. Assessment of the impacts of climate variability on total water storage across Africa: implications
for groundwater resources management. Hydrogeology Journal, 27:493–512, doi:10.1007/s10040-018-1864-5.
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- Castellazzi, P., Burgess, D., Rivera, A., Huang, J., Longuevergne, L., and Demuth, M. N., 2019. Glacial Melt and Potential
Impacts on Water Resources in the Canadian Rocky Mountains. Water Resources Research, 55(12):10,191–10,217, doi:10.1029/2018WR024295.
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- Chang, L., Tang, H., Yi, S., and Sun, W., 2019. The Trend and Seasonal Change of Sediment in the East China Sea Detected by
GRACE. Geophysical Research Letters, 46:1250–1258, doi:10.1029/2018GL081652.
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- Chang, Le, Tang, He, Wang, Qiuyu, and Sun, Wenke, 2019. Global thermosteric sea level change contributed by the deep ocean
below 2000 m estimated by Argo and CTD data. Earth and Planetary Science Letters, 524:115727, doi:10.1016/j.epsl.2019.115727.
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- Chao, B. F. and Liau, J. R., 2019. Gravity Changes Due to Large Earthquakes Detected in GRACE Satellite Data via
Empirical Orthogonal Function Analysis. Journal of Geophysical Research (Solid Earth), 124(3):3024–3035, doi:10.1029/2018JB016862.
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- Chao, B. F. and Chung, C. H., 2019. On Estimating the Cross Correlation and Least Squares Fit of One Data Set to
Another With Time Shift. Earth and Space Science, 6(8):1409–1415, doi:10.1029/2018EA000548.
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- Chaudhari, Suyog, Pokhrel, Yadu, Moran, Emilio, and Miguez-Macho, Gonzalo, 2019. Multi-decadal hydrologic change and variability
in the Amazon River basin: understanding terrestrial water storage variations and drought characteristics. Hydrology and
Earth System Sciences, 23(7):2841–2862, doi:10.5194/hess-23-2841-2019.
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- Chen, Hao, Zhang, Wanchang, Nie, Ning, and Guo, Yuedong, 2019. Long-term groundwater storage variations estimated in the Songhua
River Basin by using GRACE products, land surface models, and in-situ observations. Science of the Total Environment,
649:372–387, doi:10.1016/j.scitotenv.2018.08.352.
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- Chen, Qiujie, Shen, Yunzhong, Chen, Wu, Francis, Olivier, Zhang, Xingfu, Chen, Qiang, Li, Weiwei, and Chen, Tianyi, 2019.
An Optimized Short-Arc Approach: Methodology and Application to Develop Refined Time Series of Tongji-Grace2018 GRACE Monthly
Solutions. Journal of Geophysical Research (Solid Earth), 124(6):6010–6038, doi:10.1029/2018JB016596.
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- Chen, He, Liu, Li, and Jing, 2019. Downscaling of GRACE-Derived Groundwater Storage Based on the Random Forest Model. Remote
Sensing, 11(24):2979, doi:10.3390/rs11242979.
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- Chen, Jianli, Tapley, Byron, Seo, Ki-Weon, Wilson, Clark, and Ries, John, 2019. Improved Quantification of Global Mean Ocean
Mass Change Using GRACE Satellite Gravimetry Measurements. Geophysical Research Letters, 46(23):13,984–13,991,
doi:10.1029/2019GL085519.
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- Chen, Ajiao, Guan, Huade, Batelaan, Okke, Zhang, Xinping, and He, Xinguang, 2019. Global Soil Moisture-Air Temperature Coupling
Based on GRACE-Derived Terrestrial Water Storage. Journal of Geophysical Research (Atmospheres), 124(14):7786–7796,
doi:10.1029/2019JD030324.
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- Christophe, B., Foulon, B., Liorzou, F., Lebat, V., Boulanger, D., Huynh, P.-A., Zahzam, N., Bidel, Y., and Bresson, A., 2019.
Status of Development of the Future Accelerometers for Next Generation Gravity Missions. In Freymueller, Jeffrey T. and Sánchez,
Laura (editors), International Symposium on Advancing Geodesy in a Changing World, pp. 85–89, Springer International
Publishing, Cham.
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- Ciufolini, Ignazio, Paolozzi, Antonio, Pavlis, Erricos C., Sindoni, Giampiero, Ries, John, Matzner, Richard, Koenig, Rolf,
Paris, Claudio, Gurzadyan, Vahe, and Penrose, Roger, 2019. An improved test of the general relativistic effect of frame-dragging
using the LARES and LAGEOS satellites. European Physical Journal C, 79(10):872, doi:10.1140/epjc/s10052-019-7386-z.
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- Croteau, Michael J., Daily GRACE Water Storage Estimates for Improving Hydrology Models and Forecasting. Ph.D. Thesis, University
of Colorado at Boulder, 2019.
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- Dahle, Christoph, Murböck, Michael, Flechtner, Frank, Dobslaw, Henryk, Michalak, Grzegorz, Neumayer, Karl Hans, Abrykosov,
Oleh, Reinhold, Anton, König, Rolf, Sulzbach, Roman, and Förste, Christoph, 2019. The GFZ GRACE RL06 Monthly Gravity
Field Time Series: Processing Details and Quality Assessment. Remote Sensing, 11(18):2116, doi:10.3390/rs11182116.
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- Dill, R. and Dobslaw, H., 2019. Seasonal variations in global mean sea level and consequences on the excitation of length-of-day
changes. Geophysical Journal International, 218(2):801–816, doi:10.1093/gji/ggz201.
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- Doumbia, Cheick, Castellazzi, Pascal, Rousseau, Alain N., and Amaya, Macarena, 2019. High resolution mapping of ice mass loss
in the Gulf of Alaska from constrained forward modelling of GRACE data. Frontiers in Earth Science, 7:360, doi:10.3389/feart.2019.00360.
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- Du, J., Kimball, J. S., Velicogna, I., Zhao, M., Jones, L. A., Watts, J. D., Kim, Y., and A, G., 2019. Multicomponent
Satellite Assessment of Drought Severity in the Contiguous United States From 2002 to 2017 Using AMSR-E and AMSR2. Water
Resources Research, 55(7):5394–5412, doi:10.1029/2018WR024633.
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- Ehalt Macedo, Heloisa, Beighley, Ralph Edward, David, Cédric H., and Reager, John T., 2019. Using GRACE in a streamflow
recession to determine drainable water storage in the Mississippi River basin. Hydrology and Earth System Sciences,
23(8):3269–3277, doi:10.5194/hess-23-3269-2019.
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- Exirifard, Qasem, 2019. Gravitomagnetism in modified theory of gravity. International Journal of Modern Physics D,
28(15):1950169, doi:10.1142/S0218271819501694.
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- Fallatah, Othman Abdurrahman, Ahmed, Mohamed, Cardace, Dawn, Boving, Thomas, and Akanda, Ali S., 2019. Assessment of modern
recharge to arid region aquifers using an integrated geophysical, geochemical, and remote sensing approach. Journal of
Hydrology, 569:600–611, doi:10.1016/j.jhydrol.2018.09.061.
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- Ferreira, Vagner G., Montecino, Henry D., Ndehedehe, Christopher E., del Rio, Rodrigo A., Cuevas, Aharon, and de Freitas,
Silvio R. C., 2019. Determining seasonal displacements of Earth's crust in South America using observations from space-borne
geodetic sensors and surface-loading models. Earth, Planets, and Space, 71(1):84, doi:10.1186/s40623-019-1062-2.
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- Fok, Hok Sum and Liu, Yongxin, 2019. An Improved GPS-Inferred Seasonal Terrestrial Water Storage Using Terrain-Corrected Vertical
Crustal Displacements Constrained by GRACE. Remote Sensing, 11(12):1433, doi:10.3390/rs11121433.
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- Forootan, E., Farzaneh, S., Lück, C., and Vielberg, K., 2019. Estimating and predicting corrections for empirical thermospheric
models. Geophysical Journal International, 218(1):479–493, doi:10.1093/gji/ggz163.
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- Frappart, F., Papa, F., Güntner, A., Tomasella, J., Pfeffer, J., Ramillien, G., Emilio, T., Schietti, J., Seoane, L.,
da Silva Carvalho, J., Medeiros Moreira, D., Bonnet, M.-P., and Seyler, F., 2019. The spatio-temporal variability of groundwater
storage in the Amazon River Basin. Advances in Water Resources, 124:41–52, doi:10.1016/j.advwatres.2018.12.005.
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- Frederikse, Thomas, Landerer, Felix W., and Caron, Lambert, 2019. The imprints of contemporary mass redistribution on local
sea level and vertical land motion observations. Solid Earth, 10(6):1971–1987, doi:10.5194/se-10-1971-2019.
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- Ghobadi-Far, Khosro, \vSprlák, Michal, and Han, Shin-Chan, 2019. Determination of ellipsoidal surface mass change from
GRACE time-variable gravity data. Geophysical Journal International, 219(1):248–259, doi:10.1093/gji/ggz292.
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- Ghobadi-Far, K., Han, S.-C., Loomis, B. D., and Luthcke, S. B., 2019. On Computation of Potential, Gravity and Gravity Gradient
from GRACE Inter-Satellite Ranging Data: A Systematic Study. In Freymueller, Jeffrey T.and Sánchez, Laura (editors),
International Symposium on Advancing Geodesy in a Changing World, pp. 91–96, Springer International Publishing,
Cham.
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- Gido, N. A. A., Bagherbandi, M., Sjöberg, L. E., and Tenzer, R., 2019. Studying permafrost by integrating
satellite and in situ data in the northern high-latitude regions. Acta Geophysica, 67:721–734, doi:10.1007/s11600-019-00276-4.
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- Girotto, Manuela, Reichle, Rolf H., Rodell, Matthew, Liu, Qing, Mahanama, Sarith, and De Lannoy, Gabriëlle J. M.,
2019. Multi-sensor assimilation of SMOS brightness temperature and GRACE terrestrial water storage observations for soil moisture
and shallow groundwater estimation. Remote Sensing of Environment, 227:12–27, doi:10.1016/j.rse.2019.04.001.
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- Godah, W., 2019. IGiK-TVGMF: A MATLAB package for computing and analysing temporal variations of gravity/mass functionals
from GRACE satellite based global geopotential models. Computers and Geosciences, 123:47–58, doi:10.1016/j.cageo.2018.11.008.
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- Göttl, Franziska, Murböck, Michael, Schmidt, Michael, and Seitz, Florian, 2019. Reducing filter effects in GRACE-derived
polar motion excitations. Earth, Planets, and Space, 71(1):117, doi:10.1186/s40623-019-1101-z.
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- Groh, Andreas, Horwath, Martin, Horvath, Alexander, Meister, Rakia, Sørensen, Louise Sandberg, Barletta, Valentina
R., Forsberg, René, Wouters, Bert, Ditmar, Pavel, Ran, Jiangjun, Klees, Roland, Su, Xiaoli, Shang, Kun, Guo, Junyi,
Shum, C. K., Schrama, Ernst, and Shepherd, Andrew, 2019. Evaluating GRACE Mass Change Time Series for the Antarctic and
Greenland Ice Sheet—Methods and Results. Geosciences, 9(10):415, doi:10.3390/geosciences9100415.
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- Gruber, C. and Gouweleeuw, B., 2019. Short-latency monitoring of continental, ocean- and atmospheric mass variations using
GRACE intersatellite accelerations. Geophysical Journal International, 217:714–728, doi:10.1093/gji/ggz042.
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- Gui, Zhou, Bai, Yongliang, Wang, Zhenjie, and Li, Tongfei, 2019. Seismic b-value anomalies in the Sumatran region: Seismotectonic
implications. Journal of Asian Earth Sciences, 173:29–41, doi:10.1016/j.jseaes.2019.01.015.
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- Hamlington, B. D., Cheon, S. H., Piecuch, C. G., Karnauskas, K. B., Thompson, P. R., Kim, K. -Y.,
Reager, J. T., Landerer, F. W., and Frederikse, T., 2019. The Dominant Global Modes of Recent Internal Sea Level
Variability. Journal of Geophysical Research (Oceans), 124(4):2750–2768, doi:10.1029/2018JC014635.
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- Hammond, W. C., Kreemer, C., Zaliapin, I., and Blewitt, G., 2019. Drought-Triggered Magmatic Inflation, Crustal Strain,
and Seismicity Near the Long Valley Caldera, Central Walker Lane. Journal of Geophysical Research (Solid Earth), 124(6):6072–6091,
doi:10.1029/2019JB017354.
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- Han, Shin-Chan, Sauber, Jeanne, Pollitz, Fred, and Ray, Richard, 2019. Sea Level Rise in the Samoan Islands Escalated by Viscoelastic
Relaxation After the 2009 Samoa-Tonga Earthquake. Journal of Geophysical Research (Solid Earth), 124(4):4142–4156,
doi:10.1029/2018JB017110.
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- Han, Zhiming, Huang, Shengzhi, Huang, Qiang, Leng, Guoyong, Wang, Hao, He, Li, Fang, Wei, and Li, Pei, 2019. Assessing GRACE-based
terrestrial water storage anomalies dynamics at multi-timescales and their correlations with teleconnection factors in Yunnan
Province, China. Journal of Hydrology, 574:836–850, doi:10.1016/j.jhydrol.2019.04.093.
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- Hardy, Ryan A., Combination of Geodetic Data Over the Antarctic Ice Sheet for Monthly Mass Variation Solutions. Ph.D. Thesis,
University of Colorado at Boulder, 2019.
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- Harvey, Nate and Sakumura, Carly, 2019. Results from a GRACE/GRACE-FO attitude reconstruction Kalman filter. Journal of
Geodesy, 93(10):1881–1896, doi:10.1007/s00190-019-01289-z.
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- Hasan, Emad, Tarhule, Aondover, Hong, Yang, and Moore, Berrien, III, 2019. Assessment of Physical Water Scarcity in Africa
Using GRACE and TRMM Satellite Data. Remote Sensing, 11(8):904, doi:10.3390/rs11080904.
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- Hasan, Emad, Tarhule, Aondover, Zume, Joseph T., and Kirstetter, Pierre-Emmanuel, 2019. +50 Years of Terrestrial Hydroclimatic
Variability in Africa's Transboundary Waters. Scientific Reports, 9:12327, doi:10.1038/s41598-019-48813-x.
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- Heimhuber, V., Tulbure, M. G., Broich, M., Xie, Z., and Hurriyet, M., 2019. The role of GRACE total water storage anomalies,
streamflow and rainfall in stream salinity trends across Australia's Murray-Darling Basin during and post the Millennium Drought.
International Journal of Applied Earth Observation and Geoinformation, 83:101927, doi:10.1016/j.jag.2019.101927.
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- Hong, S. H. and Conklin, J. W., 2019. Finding the suitable drag-free acceleration noise level for future low-low
satellite-to-satellite tracking geodesy missions. Advances in Space Research, 63:32–50, doi:10.1016/j.asr.2018.07.022.
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- Hu, Zengyun, Zhou, Qiming, Chen, Xi, Chen, Deliang, Li, Jianfeng, Guo, Meiyu, Yin, Gang, and Duan, Zheng, 2019. Groundwater
Depletion Estimated from GRACE: A Challenge of Sustainable Development in an Arid Region of Central Asia. Remote Sensing,
11(16):1908, doi:10.3390/rs11161908.
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- Huang, Zhiyong, Yeh, Pat J. -F., Pan, Yun, Jiao, Jiu Jimmy, Gong, Huili, Li, Xiaojuan, Güntner, Andreas, Zhu, Yunqiang,
Zhang, Chong, and Zheng, Longqun, 2019. Detection of large-scale groundwater storage variability over the karstic regions
in Southwest China. Journal of Hydrology, 569:409–422, doi:10.1016/j.jhydrol.2018.11.071.
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- Huang, Zhiyong, Jiao, Jiu Jimmy, Luo, Xin, Pan, Yun, and Zhang, Chong, 2019. Sensitivity Analysis of Leakage Correction of
GRACE Data in Southwest China Using A-Priori Model Simulations: Inter-Comparison of Spherical Harmonics, Mass Concentration
and In Situ Observations. Sensors, 19(14):3149, doi:10.3390/s19143149.
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- Humphrey, Vincent and Gudmundsson, Lukas, 2019. GRACE-REC: a reconstruction of climate-driven water storage changes over the
last century. Earth System Science Data, 11(3):1153–1170, doi:10.5194/essd-11-1153-2019.
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- Jäggi, Adrian, Weigelt, M., Flechtner, F., Güntner, A., Mayer-Gürr, T., Martinis, S., Bruinsma, S., Flury,
J., Bourgogne, S., Steffen, H., Meyer, U., Jean, Y., Su\vsnik, A., Grahsl, A., Arnold, D., Cann-Guthauser, K., Dach, R., Li,
Z., Chen, Q., van Dam, T., Gruber, C., Poropat, L., Gouweleeuw, B., Kvas, A., Klinger, B., Lemoine, J. -M., Biancale, R.,
Zwenzner, H., Band ikova, T., and Shabanloui, A., 2019. European Gravity Service for Improved Emergency Management (EGSIEM)—from
concept to implementation. Geophysical Journal International, 218(3):1572–1590, doi:10.1093/gji/ggz238.
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- Jensen, L., Eicker, A., Dobslaw, H., Stacke, T., and Humphrey, V., 2019. Long-Term Wetting and Drying Trends in Land Water
Storage Derived From GRACE and CMIP5 Models. Journal of Geophysical Research (Atmospheres), 124(9808):9808–9823,
doi:10.1029/2018JD029989.
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- Jiao, Jiashuang, Zhang, Yongzhi, Yin, Peng, Zhang, Kainan, Wang, Yipeng, and Bilker-Koivula, Mirjam, 2019. Changing Moho Beneath
the Tibetan Plateau Revealed by GRACE Observations. Journal of Geophysical Research (Solid Earth), 124(6):5907–5923,
doi:10.1029/2018JB016334.
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- Jimoh, Oluwaseyi, Lei, Jiuhou, Zhong, Jiahao, Owolabi, Charles, Luan, Xiaoli, and Dou, Xiankang, 2019. Topside Ionospheric
Conditions During the 7-8 September 2017 Geomagnetic Storm. Journal of Geophysical Research (Space Physics), 124(11):9381–9404,
doi:10.1029/2019JA026590.
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- Jing, Wenlong, Zhang, Pengyan, and Zhao, Xiaodan, 2019. A comparison of different GRACE solutions in terrestrial water storage
trend estimation over Tibetan Plateau. Scientific Reports, 9:1765, doi:10.1038/s41598-018-38337-1.
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- Jing, Wenlong, Yao, Ling, Zhao, Xiaodan, Zhang, Pengyan, Liu, Yangxiaoyue, Xia, Xiaolin, Song, Jia, Yang, Ji, Li, Yong, and
Zhou, Chenghu, 2019. Understanding Terrestrial Water Storage Declining Trends in the Yellow River Basin. Journal of Geophysical
Research (Atmospheres), 124(23):12,963–12,984, doi:10.1029/2019JD031432.
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- Jung, Hahn Chul, Getirana, Augusto, Arsenault, Kristi R., Kumar, Sujay, and Maigary, Issoufou, 2019. Improving surface soil
moisture estimates in West Africa through GRACE data assimilation. Journal of Hydrology, 575:192–201, doi:10.1016/j.jhydrol.2019.05.042.
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- Kang, Zhigui, Tapley, Byron, Chen, Jianli, Ries, John, and Bettadpur, Srinivas, 2019. Geocenter motion time series derived
from GRACE GPS and LAGEOS observations. Journal of Geodesy, 93(10):1931–1942, doi:10.1007/s00190-019-01292-4.
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- Keller, Wolfgang and Borkowski, Andrzej, 2019. Thin plate spline interpolation. Journal of Geodesy, 93(9):1251–1269,
doi:10.1007/s00190-019-01240-2.
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- Kim, Jae-Seung, Seo, Ki-Weon, Jeon, Taehwan, Chen, Jianli, and Wilson, Clark R., 2019. Missing Hydrological Contribution to
Sea Level Rise. Geophysical Research Letters, 46(21):12,049–12,055, doi:10.1029/2019GL085470.
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- Koch, Igor, Shabanloui, Akbar, and Flury, Jakob, 2019. Calibration of GRACE Accelerometers Using Two Types of Reference Accelerations.
In Freymueller, Jeffrey T. and Sánchez, Laura (editors), International Symposium on Advancing Geodesy in a Changing
World, pp. 97–104, Springer International Publishing, Cham.
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- Kordpour, I., Farzaneh, S., and Shahhoseini, R., 2019. Drought Assessment of Iran Using the MDI Index. ISPRS - International
Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 4218:659–663, doi:10.5194/isprs-archives-XLII-4-W18-659-2019.
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- Kornfeld, Richard P., Arnold, Bradford W., Gross, Michael A., Dahya, Neil T., Klipstein, William M., Gath, Peter F., and Bettadpur,
Srinivas, 2019. GRACE-FO: The Gravity Recovery and Climate Experiment Follow-On Mission. Journal of Spacecraft and Rockets,
56(3):931–951, doi:10.2514/1.A34326.
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- Kosek, Wieslaw, Popinski, Waldemar, Wnek, Agnieszka, Sosnica, Krzysztof, and Zbylut-Górska, Maria, 2019. Analysis of
Systematic Errors in Geocenter Coordinates Determined From GNSS, SLR, DORIS, and GRACE. Pure and Applied Geophysics,
177(2):867–888, doi:10.1007/s00024-019-02355-5.
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- Kuang, Da, Bertiger, Willy, Desai, Shailen D., Haines, Bruce J., and Yuan, Dah-Ning, 2019. Observed geocenter motion from
precise orbit determination of GRACE satellites using GPS tracking and accelerometer data. Journal of Geodesy, 93(10):1835–1844,
doi:10.1007/s00190-019-01283-5.
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- Kuczynska-Siehien, Joanna, Piretzidis, Dimitrios, Sideris, Michael G., Olszak, Tomasz, and Szabó, Viktor, 2019. Monitoring
of extreme land hydrology events in central Poland using GRACE, land surface models and absolute gravity data. Journal
of Applied Geodesy, 13(3):229–243, doi:10.1515/jag-2019-0003.
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- Kumar, Sujay V., Jasinski, Michael, Mocko, David M., Rodell, Matthew, Borak, Jordan, Li, Bailing, Beaudoing, Hiroko Kato,
and Peters-Lidard, Christa D., 2019. NCA-LDAS Land Analysis: Development and Performance of a Multisensor, Multivariate Land
Data Assimilation System for the National Climate Assessment. Journal of Hydrometeorology, 20(8):1571–1593, doi:10.1175/JHM-D-17-0125.1.
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- Kvas, Andreas, Behzadpour, Saniya, Ellmer, Matthias, Klinger, Beate, Strasser, Sebastian, Zehentner, Norbert, and Mayer-Gürr,
Torsten, 2019. ITSG-Grace2018: Overview and Evaluation of a New GRACE-Only Gravity Field Time Series. Journal of Geophysical
Research (Solid Earth), 124(8):9332–9344, doi:10.1029/2019JB017415.
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- Kvas, Andreas and Mayer-Gürr, Torsten, 2019. GRACE gravity field recovery with background model uncertainties. Journal
of Geodesy, 93(12):2543–2552, doi:10.1007/s00190-019-01314-1.
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- Lan Anh, Dinh Thi and Aires, Filipe, 2019. River Discharge Estimation based on Satellite Water Extent and Topography: An Application
over the Amazon. Journal of Hydrometeorology, 20(9):1851–1866, doi:10.1175/JHM-D-18-0206.1.
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- Li, Z., Ziebart, M., Bhattarai, S., and Harrison, D., 2019. A shadow function model based on perspective projection and atmospheric
effect for satellites in eclipse. Advances in Space Research, 63:1347–1359, doi:10.1016/j.asr.2018.10.027.
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- Li, W., Zhang, C., Wen, H., Feng, W., Wang, W., Zhong, Y., Li, Z., Yin, C., and Lu, Y., 2019. The effects of leakage error
on terrestrial water storage variations in the Yangtze River Basin measured by GRACE. Journal of Applied Geophysics,
160:264–272, doi:10.1016/j.jappgeo.2018.12.001.
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- Li, Bailing, Rodell, Matthew, Kumar, Sujay, Beaudoing, Hiroko Kato, Getirana, Augusto, Zaitchik, Benjamin F., de Goncalves,
Luis Gustavo, Cossetin, Camila, Bhanja, Soumendra, Mukherjee, Abhijit, Tian, Siyuan, Tangdamrongsub, Natthachet, Long, Di,
Nanteza, Jamiat, Lee, Jejung, Policelli, Frederick, Goni, Ibrahim B., Daira, Djoret, Bila, Mohammed, de Lannoy, Gabriëlle,
Mocko, David, Steele-Dunne, Susan C., Save, Himanshu, and Bettadpur, Srinivas, 2019. Global GRACE Data Assimilation for Groundwater
and Drought Monitoring: Advances and Challenges. Water Resources Research, 55(9):7564–7586, doi:10.1029/2018WR024618.
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- Li, Bailing, Rodell, Matthew, Sheffield, Justin, Wood, Eric, and Sutanudjaja, Edwin, 2019. Long-term, non-anthropogenic groundwater
storage changes simulated by three global-scale hydrological models. Scientific Reports, 9:10746, doi:10.1038/s41598-019-47219-z.
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- Liang, Jingjing, Yang, Zongliang, and Lin, Peirong, 2019. Systematic Hydrological Evaluation of the Noah-MP Land Surface Model
over China. Advances in Atmospheric Sciences, 36(11):1171–1187, doi:10.1007/s00376-019-9016-y.
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- Liu, Fok, Tenzer, Chen, and Chen, 2019. Akaike's Bayesian Information Criterion for the Joint Inversion of Terrestrial Water
Storage Using GPS Vertical Displacements, GRACE and GLDAS in Southwest China. Entropy, 21(7):664, doi:10.3390/e21070664.
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- Liu, Zhendi, Fang, Hanxian, Hoque, M. M., Weng, Libin, Yang, Shenggao, and Gao, Ze, 2019. A New Empirical Model of NmF2
Based on CHAMP, GRACE, and COSMIC Radio Occultation. Remote Sensing, 11(11):1386, doi:10.3390/rs11111386.
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- Liu, Zhen, Liu, Pang-Wei, Massoud, Elias, Farr, Tom G., Lundgren, Paul, and Famiglietti, James S., 2019. Monitoring Groundwater
Change in California's Central Valley Using Sentinel-1 and GRACE Observations. Geosciences, 9(10):436, doi:10.3390/geosciences9100436.
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- Llovel, William, Purkey, S., Meyssignac, B., Blazquez, A., Kolodziejczyk, N., and Bamber, J., 2019. Global ocean freshening,
ocean mass increase and global mean sea level rise over 2005-2015. Scientific Reports, 9:17717, doi:10.1038/s41598-019-54239-2.
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- Loomis, B. D., Rachlin, K. E., and Luthcke, S. B., 2019. Improved Earth Oblateness Rate Reveals Increased Ice
Sheet Losses and Mass-Driven Sea Level Rise. Geophysical Research Letters, 46(12):6910–6917, doi:10.1029/2019GL082929.
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- Loomis, B. D., Luthcke, S. B., and Sabaka, T. J., 2019. Regularization and error characterization of GRACE
mascons. Journal of Geodesy, 93(9):1381–1398, doi:10.1007/s00190-019-01252-y.
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- Loomis, Bryant D., Richey, Alexandra S., Arendt, Anthony A., Appana, Ravi, Deweese, Y. -J. C., Forman, Bart A., Kumar,
Sujay V., Sabaka, Terence J., and Shean, David E., 2019. Water storage trends in High Mountain Asia. Frontiers in Earth
Science, 7:235, doi:10.3389/feart.2019.00235.
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- Lv, M., Ma, Z., Li, M., and Zheng, Z., 2019. Quantitative Analysis of Terrestrial Water Storage Changes Under the Grain for
Green Program in the Yellow River Basin. Journal of Geophysical Research (Atmospheres), 124:1336–1351, doi:10.1029/2018JD029113.
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- Mahatsente, Rezene, 2019. Plate Coupling Mechanism of the Central Andes Subduction: Insight from Gravity Model. Journal
of Geodetic Science, 9(1):13–21, doi:10.1515/jogs-2019-0002.
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- Mao, X., Visser, P. N. A. M., and van den IJssel, Jose, 2019. Absolute and relative orbit determination for
the CHAMP/GRACE constellation. Advances in Space Research, 63(12):3816–3834, doi:10.1016/j.asr.2019.02.030.
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- March, G., Doornbos, E. N., and Visser, P. N. A. M., 2019. High-fidelity geometry models for improving
the consistency of CHAMP, GRACE, GOCE and Swarm thermospheric density data sets. Advances in Space Research, 63:213–238,
doi:10.1016/j.asr.2018.07.009.
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- Melati, Maur\'ıcio D., Fleischmann, Ayan S., Fan, Fernand o M., Paiva, Rodrigo C. D., and Athayde, Gustavo B.,
2019. Estimates of groundwater depletion under extreme drought in the Brazilian semi-arid region using GRACE satellite data:
application for a small-scale aquifer. Hydrogeology Journal, 27(8):2789–2802, doi:10.1007/s10040-019-02065-1.
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- Meng, F., Su, F., Li, Y., and Tong, K., 2019. Changes in Terrestrial Water Storage During 2003-2014 and Possible Causes in
Tibetan Plateau. Journal of Geophysical Research (Atmospheres), 124:2909–2931, doi:10.1029/2018JD029552.
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- Meyer, Ulrich, Sosnica, Krzysztof, Arnold, Daniel, Dahle, Christoph, Thaller, Daniela, Dach, Rolf, and Jäggi, Adrian,
2019. SLR, GRACE and Swarm Gravity Field Determination and Combination. Remote Sensing, 11(8):956, doi:10.3390/rs11080956.
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- Meyer, U., Jean, Y., Kvas, A., Dahle, Ch., Lemoine, J. M., and Jäggi, A., 2019. Combination of GRACE monthly gravity
fields on the normal equation level. Journal of Geodesy, 93(9):1645–1658, doi:10.1007/s00190-019-01274-6.
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- Migliaccio, Federica, Reguzzoni, Mirko, Batsukh, Khulan, Tino, Guglielmo Maria, Rosi, Gabriele, Sorrentino, Fiodor, Braitenberg,
Carla, Pivetta, Tommaso, Barbolla, Dora Francesca, and Zoffoli, Simona, 2019. MOCASS: A Satellite Mission Concept Using Cold
Atom Interferometry for Measuring the Earth Gravity Field. Surveys in Geophysics, 40(5):1029–1053, doi:10.1007/s10712-019-09566-4.
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- Mikhailov, V. O., Timoshkina, E. P., Kiseleva, E. A., Khairetdinov, S. A., Dmitriev, P. N., Kartashov,
I. M., and Smirnov, V. B., 2019. Problems of the Joint Inversion of Temporal Gravity Variations with the Data on
Land and Seafloor Displacements: a Case Study of the Tohoku-Oki Earthquake of March 11, 2011. Izvestiya Physics of the
Solid Earth, 55(5):746–752, doi:10.1134/S1069351319050070.
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- Milewski, Adam M., Thomas, Matthew B., Seyoum, Wondwosan M., and Rasmussen, Todd C., 2019. Spatial Downscaling of GRACE TWSA
Data to Identify Spatiotemporal Groundwater Level Trends in the Upper Floridan Aquifer, Georgia, USA. Remote Sensing,
11(23):2756, doi:10.3390/rs11232756.
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- Mohajerani, Yara, Velicogna, Isabella, and Rignot, Eric, 2019. Evaluation of Regional Climate Models Using Regionally Optimized
GRACE Mascons in the Amery and Getz Ice Shelves Basins, Antarctica. Geophysical Research Letters, 46(23):13,883–13,891,
doi:10.1029/2019GL084665.
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- Mohamed, Ahmed, 2019. Hydro-geophysical study of the groundwater storage variations over the Libyan area and its connection
to the Dakhla basin in Egypt. Journal of African Earth Sciences, 157:103508, doi:10.1016/j.jafrearsci.2019.05.016.
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- Moreira, Adriana Aparecida, Ruhoff, Anderson Luis, Roberti, Débora Regina, Souza, Vanessa de Arruda, da Rocha, Humberto
Ribeiro, and Paiva, Rodrigo Cauduro Dias de, 2019. Assessment of terrestrial water balance using remote sensing data in South
America. Journal of Hydrology, 575:131–147, doi:10.1016/j.jhydrol.2019.05.021.
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- Mu, D., Xu, T., and Xu, G., 2019. Detecting coastal ocean mass variations with GRACE mascons. Geophysical Journal International,
217:2071–2080, doi:10.1093/gji/ggz138.
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- Nastula, J., Winska, M., Sliwinska, J., and Salstein, D., 2019. Hydrological signals in polar motion excitation - Evidence
after fifteen years of the GRACE mission. Journal of Geodynamics, 124:119–132, doi:10.1016/j.jog.2019.01.014.
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- Nie, Y., Shen, Y., and Chen, Q., 2019. Combination Analysis of Future Polar-Type Gravity Mission and GRACE Follow-On. Remote
Sensing, 11:200, doi:10.3390/rs11020200.
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- Nie, Wanshu, Zaitchik, Benjamin F., Rodell, Matthew, Kumar, Sujay V., Arsenault, Kristi R., Li, Bailing, and Getirana, Augusto,
2019. Assimilating GRACE Into a Land Surface Model in the Presence of an Irrigation-Induced Groundwater Trend. Water Resources
Research, 55(12):11,274–11,294, doi:10.1029/2019WR025363.
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- Ojha, Chandrakanta, Werth, Susanna, and Shirzaei, Manoochehr, 2019. Groundwater Loss and Aquifer System Compaction in San
Joaquin Valley During 2012-2015 Drought. Journal of Geophysical Research (Solid Earth), 124(3):3127–3143, doi:10.1029/2018JB016083.
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- Okay Ahi, G. and Jin, S., 2019. Hydrologic Mass Changes and Their Implications in Mediterranean-Climate Turkey from GRACE
Measurements. Remote Sensing, 11:120, doi:10.3390/rs11020120.
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- Oliveira, D. M. and Zesta, E., 2019. Satellite Orbital Drag During Magnetic Storms. Space Weather, 17(11):1510–1533,
doi:10.1029/2019SW002287.
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- Pail, R., Bamber, J., Biancale, R., Bingham, R., Braitenberg, C., Eicker, A., Flechtner, F., Gruber, T., Güntner, A.,
Heinzel, G., Horwath, M., Longuevergne, L., Müller, J., Panet, I., Savenije, H., Seneviratne, S., Sneeuw, N., van Dam,
T., and Wouters, B., 2019. Mass variation observing system by high low inter-satellite links (MOBILE) - a new concept for
sustained observation of mass transport from space. Journal of Geodetic Science, 9(1):48–58, doi:10.1515/jogs-2019-0006.
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- Pan, Yuanjin, Chen, Ruizhi, Yi, Shuang, Wang, Wei, Ding, Hao, Shen, Wenbin, and Chen, Liang, 2019. Contemporary Mountain-Building
of the Tianshan and its Relevance to Geodynamics Constrained by Integrating GPS and GRACE Measurements. Journal of Geophysical
Research (Solid Earth), 124(11):12,171–12,188, doi:10.1029/2019JB017566.
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- Panahi, Milad and Behrangi, Ali, 2019. Comparative Analysis of Snowfall Accumulation and Gauge Undercatch Correction Factors
from Diverse Data Sets: In Situ, Satellite, and Reanalysis. Asia-Pacific Journal of Atmospheric Sciences, pp. 100,
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- Peidou, A. and Pagiatakis, S., 2019. Gravity Gradiometry With GRACE Space Missions: New Opportunities for the Geosciences.
Journal of Geophysical Research (Solid Earth), 124(8):9130–9147, doi:10.1029/2018JB016382.
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- Pellet, V., Aires, F., Munier, S., Fernández Prieto, D., Jordá, G., Arnoud Dorigo, W., Polcher, J., and Brocca,
L., 2019. Integrating multiple satellite observations into a coherent dataset to monitor the full water cycle - application
to the Mediterranean region. Hydrology and Earth System Sciences, 23:465–491, doi:10.5194/hess-23-465-2019.
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- Pereira, Ayelen, Cornero, Cecilia, Matos, Ana C. O. C., Pacino, M. Cristina, and Blitzkow, Denizar, 2019. Study
of water storage variations at the Pantanal wetlands area from GRACE monthly mass grids. Journal of Geodetic Science,
9(1):133–143, doi:10.1515/jogs-2019-0013.
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- Peters-Lidard, Christa D., Hossain, Faisal, Leung, L. Ruby, McDowell, Nate, Rodell, Matthew, Tapiador, Francisco J., Turk,
F. Joe, and Wood, Andrew, 2019. 100 Years of Progress in Hydrology, A Century of Progress in Atmospheric and Related Sciences.
In Celebrating the American Meteorological Society Centennial, Meteorological Monographs, pp. 25.1–25.51.
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- Piretzidis, Dimitrios and Sideris, Michael G., 2019. Stable recurrent calculation of isotropic Gaussian filter coefficients.
Computers and Geosciences, 133:104303, doi:10.1016/j.cageo.2019.07.007.
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- Prevost, Paoline, Chanard, Kristel, Fleitout, Luce, Calais, Eric, Walwer, Damian, van Dam, Tonie, and Ghil, Michael, 2019.
Data-adaptive spatio-temporal filtering of GRACE data. Geophysical Journal International, 219(3):2034–2055, doi:10.1093/gji/ggz409.
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- Purkhauser, A. F., Koch, J. A., and Pail, R., 2019. Applicability of NGGM near-real time simulations in flood detection.
Journal of Geodetic Science, 9(1):111–126, doi:10.1515/jogs-2019-0011.
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- Rahimzadegan, Majid and Entezari, Seyyed Ardalan, 2019. Performance of the Gravity Recovery and Climate Experiment (GRACE)
method in monitoring groundwater-level changes in local-scale study regions within Iran. Hydrogeology Journal, 27(7):2497–2509,
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- Rao Kolusu, S., Shamsudduha, M., Todd, M. C., Taylor, R. G., Seddon, D., Kashaigili, J. J., Ebrahim, G. Y.,
Cuthbert, M. O., Sorensen, J. P. R., Villholth, K. G., MacDonald, A. M., and MacLeod, D. A.,
2019. The El Niño event of 2015-2016: climate anomalies and their impact on groundwater resources in East and Southern
Africa. Hydrology and Earth System Sciences, 23:1751–1762, doi:10.5194/hess-23-1751-2019.
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- Ray, R. D., Loomis, B. D., Luthcke, S. B., and Rachlin, K. E., 2019. Tests of ocean-tide models by analysis
of satellite-to-satellite range measurements: an update. Geophysical Journal International, 217:1174–1178, doi:10.1093/gji/ggz062.
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- Razeghi, Mahdiyeh, Han, Shin-Chan, McClusky, Simon, and Sauber, Jeanne, 2019. A Joint Analysis of GPS Displacement and GRACE
Geopotential Data for Simultaneous Estimation of Geocenter Motion and Gravitational Field. Journal of Geophysical Research
(Solid Earth), 124(11):12,241–12,263, doi:10.1029/2019JB018289.
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- Richter, Andreas, Groh, Andreas, Horwath, Martin, Ivins, Erik, Marderwald, Eric, Hormaechea, José Luis, Perdomo, Raúl,
and Dietrich, Reinhard, 2019. The Rapid and Steady Mass Loss of the Patagonian Icefields throughout the GRACE Era: 2002-2017.
Remote Sensing, 11(8):909, doi:10.3390/rs11080909.
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- Riihelä, Aku, King, Michalea D., and Anttila, Kati, 2019. The surface albedo of the Greenland Ice Sheet between 1982
and 2015 from the CLARA-A2 dataset and its relationship to the ice sheet's surface mass balance. The Cryosphere, 13(10):2597–2614,
doi:10.5194/tc-13-2597-2019.
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- Ruan, Haibing and Lei, Jiuhou, 2019. Quantifying the Impact of Satellite Sampling on the Dynamic Modeling of the Upper Thermosphere.
Space Weather, 17(5):757–766, doi:10.1029/2018SW002120.
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- Sabzehee, F., Nafisi, V., Iran Pour, S., and Vishwakarma, B. D., 2019. Investigation of the Correlation Between GRACE
Tws and Soil Moisture in Sarakhs Catchment. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial
Information Sciences, 4218:931–934, doi:10.5194/isprs-archives-XLII-4-W18-931-2019.
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- Sastry, Rambhatla G. and Sonker, Mahendra Kumar, 2019. Co-seismic grace gravity-based 11-layered 3-D thrust fault model for
the Sumatra earthquake 2004. Journal of Earth System Science, 128(2):27, doi:10.1007/s12040-018-1050-0.
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- Scanlon, B. R., Zhang, Z., Rateb, A., Sun, A., Wiese, D., Save, H., Beaudoing, H., Lo, M. H., Müller-Schmied,
H., and Döll, P., 2019. Tracking Seasonal Fluctuations in Land Water Storage Using Global Models and GRACE Satellites.
Geophysical Research Letters, 46(10):5254–5264, doi:10.1029/2018GL081836.
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- Schaller, T., Scheinert, M., Barthelmes, F., and Förste, C., 2019. Inversion of GEOHALO aerogravimetry to infer ocean
bottom topography: application to the Tyrrhenian, Ionian and Adriatic seas. Geophysical Journal International, 216(2):840–850,
doi:10.1093/gji/ggy456.
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- Schreiter, L., Arnold, D., Sterken, V., and Jäggi, A., 2019. Mitigation of ionospheric signatures in Swarm GPS gravity
field estimation using weighting strategies. Annales Geophysicae, 37:111–127, doi:10.5194/angeo-37-111-2019.
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- Seyoum, W., Kwon, D., and Milewski, A., 2019. Downscaling GRACE TWSA Data into High-Resolution Groundwater Level Anomaly Using
Machine Learning-Based Models in a Glacial Aquifer System. Remote Sensing, 11:824, doi:10.3390/rs11070824.
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- Shami, S. and Ghorbani, Z., 2019. Investigating Water Storage Changes in Iran Using GRACE and Chirps Data in the Google Earth
Engine System. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences,
4218:981–984, doi:10.5194/isprs-archives-XLII-4-W18-981-2019.
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- Shang, Qi, Liu, Xiangnan, Deng, Xinyu, and Zhang, Biyao, 2019. Downscaling of GRACE datasets based on relevance vector machine
using InSAR time series to generate maps of groundwater storage changes at local scale. Journal of Applied Remote Sensing,
13:048503, doi:10.1117/1.JRS.13.048503.
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- Shao, Kai, Gu, Defeng, Chang, Xiao, Yi, Bin, and Wang, Zhengming, 2019. Impact of GPS receiver antenna GRAPHIC residual variations
on single-frequency orbit determination of LEO satellites. Advances in Space Research, 64(5):1166–1176, doi:10.1016/j.asr.2019.06.014.
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- Sheng, Michael B., Vaní\vcek, Petr, Kingdon, Robert, and Foroughi, Ismael, 2019. Rigorous Evaluation of Gravity Field
Functionals from Satellite-Only Gravitational Models Within Topography. In Vergos, Georgios S., Pail, Roland, and Barzaghi,
Riccardo (editors), International Symposium on Gravity, Geoid and Height Systems 2016, pp. 3–7, Springer International
Publishing, Cham.
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- Shokri, Ashkan, Walker, Jeffrey P., van Dijk, Albert I. J. M., and Pauwels, Valentijn R. N., 2019. On the Use
of Adaptive Ensemble Kalman Filtering to Mitigate Error Misspecifications in GRACE Data Assimilation. Water Resources Research,
55(9):7622–7637, doi:10.1029/2018WR024670.
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- Siemes, Christian, Rexer, Moritz, Schlicht, Anja, and Haagmans, Roger, 2019. GOCE gradiometer data calibration. Journal
of Geodesy, 93(9):1603–1630, doi:10.1007/s00190-019-01271-9.
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- Sinem Ince, E., Barthelmes, Franz, Reißland, Sven, Elger, Kirsten, Förste, Christoph, Flechtner, Frank, and Schuh,
Harald, 2019. ICGEM - 15 years of successful collection and distribution of global gravitational models, associated services,
and future plans. Earth System Science Data, 11(2):647–674, doi:10.5194/essd-11-647-2019.
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- Singh, Anil Kumar, Tripathi, Jayant Nath, Kotlia, Bahadur Singh, Singh, K. K., and Kumar, Amit, 2019. Monitoring groundwater
fluctuations over India during Indian Summer Monsoon (ISM) and Northeast monsoon using GRACE satellite: Impact on agriculture.
Quaternary International, 507:342–351, doi:10.1016/j.quaint.2018.10.036.
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- Sinha, D., Syed, T. H., and Reager, J. T., 2019. Utilizing combined deviations of precipitation and GRACE-based
terrestrial water storage as a metric for drought characterization: A case study over major Indian river basins. Journal
of Hydrology, 572:294–307, doi:10.1016/j.jhydrol.2019.02.053.
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- Sliwinska, J., Winska, M., and Nastula, J., 2019. Terrestrial water storage variations and their effect on polar motion. Acta
Geophysica, 67:17–39, doi:10.1007/s11600-018-0227-x.
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- Sliwinska, Birylo, Rzepecka, and Nastula, 2019. Analysis of Groundwater and Total Water Storage Changes in Poland Using GRACE
Observations, In-situ Data, and Various Assimilation and Climate Models. Remote Sensing, 11(24):2949, doi:10.3390/rs11242949.
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- Spada, Giorgio and Melini, Daniele, 2019. SELEN$^4$ (SELEN version 4.0): a Fortran program for solving the gravitationally
and topographically self-consistent sea-level equation in glacial isostatic adjustment modeling. Geoscientific Model Development,
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- Springer, Anne, Karegar, Makan A., Kusche, Jürgen, Keune, Jessica, Kurtz, Wolfgang, and Kollet, Stefan, 2019. Evidence
of daily hydrological loading in GPS time series over Europe. Journal of Geodesy, 93(10):2145–2153, doi:10.1007/s00190-019-01295-1.
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- Stampoulis, Dimitrios, Reager, John T., David, Cédric H., Andreadis, Konstantinos M., Famiglietti, James S., Farr,
Tom G., Trangsrud, Amy R., Basilio, Ralph R., Sabo, John L., and Osterman, Gregory B., 2019. Model-data fusion of hydrologic
simulations and GRACE terrestrial water storage observations to estimate changes in water table depth. Advances in Water
Resources, 128:13–27, doi:10.1016/j.advwatres.2019.04.004.
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- Stephens, Marric, 2019. Weighing water from space. Physics World, 32(5):28–31, doi:10.1088/2058-7058/32/5/27.
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- Sultan, Mohamed, Sturchio, Neil C., Alsefry, Saleh, Emil, Mustafa K., Ahmed, Mohamed, Abdelmohsen, Karem, AbuAbdullah, Mazen
M., Yan, Eugene, Save, Himanshu, Alharbi, Talal, Othman, Abdullah, and Chouinard, Kyle, 2019. Assessment of age, origin, and
sustainability of fossil aquifers: A geochemical and remote sensing-based approach. Journal of Hydrology, 576:325–341,
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- Sun, Y., Riva, R., Ditmar, P., and Rietbroek, R., 2019. Using GRACE to Explain Variations in the Earth's Oblateness. Geophysical
Research Letters, 46:158–168, doi:10.1029/2018GL080607.
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- Sun, A. Y., Scanlon, B. R., Zhang, Z., Walling, D., Bhanja, S. N., Mukherjee, A., and Zhong, Z., 2019. Combining
Physically Based Modeling and Deep Learning for Fusing GRACE Satellite Data: Can We Learn From Mismatch?. Water Resources
Research, 55:1179–1195, doi:10.1029/2018WR023333.
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- Tangdamrongsub, Natthachet, Han, Shin-Chan, Jasinski, Michael F., and \vSprlák, Michal, 2019. Quantifying water storage
change and land subsidence induced by reservoir impoundment using GRACE, Landsat, and GPS data. Remote Sensing of Environment,
233:111385, doi:10.1016/j.rse.2019.111385.
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- Tapley, Byron D., Watkins, Michael M., Flechtner, Frank, Reigber, Christoph, Bettadpur, Srinivas, Rodell, Matthew, Sasgen,
Ingo, Famiglietti, James S., Landerer, Felix W., Chambers, Don P., Reager, John T., Gardner, Alex S., Save, Himanshu, Ivins,
Erik R., Swenson, Sean C., Boening, Carmen, Dahle, Christoph, Wiese, David N., Dobslaw, Henryk, Tamisiea, Mark E., and Velicogna,
Isabella, 2019. Contributions of GRACE to understanding climate change. Nature Climate Change, 9(5):358–369,
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- Taylor, R. G., Favreau, G., Scanlon, B. R., and Villholth, K. G., 2019. Topical Collection: Determining groundwater
sustainability from long-term piezometry in Sub-Saharan Africa. Hydrogeology Journal, 27:443–446, doi:10.1007/s10040-019-01946-9.
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- Thomas, Brian F. and Famiglietti, James S., 2019. Identifying Climate-Induced Groundwater Depletion in GRACE Observations.
Scientific Reports, 9:4124, doi:10.1038/s41598-019-40155-y.
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- Tian, S., Renzullo, L. J., van Dijk, A. I. J. M., Tregoning, P., and Walker, J. P., 2019. Global
joint assimilation of GRACE and SMOS for improved estimation of root-zone soil moisture and vegetation response. Hydrology
and Earth System Sciences, 23:1067–1081, doi:10.5194/hess-23-1067-2019.
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- Uebbing, B., Kusche, J., Rietbroek, R., and Landerer, F. W., 2019. Processing Choices Affect Ocean Mass Estimates From
GRACE. Journal of Geophysical Research (Oceans), 124:1029–1044, doi:10.1029/2018JC014341.
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- Vasco, Donald W., Farr, Tom G., Jeanne, Pierre, Doughty, Christine, and Nico, Peter, 2019. Satellite-based monitoring of groundwater
depletion in California's Central Valley. Scientific Reports, 9:16053, doi:10.1038/s41598-019-52371-7.
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- Velpuri, Naga Manohar, Senay, Gabriel B., Driscoll, Jessica M., Saxe, Samuel, Hay, Lauren, Farmer, William, and Kiang, Julie,
2019. Gravity Recovery and Climate Experiment (GRACE) Storage Change Characteristics (2003-2016) over Major Surface Basins
and Principal Aquifers in the Conterminous United States. Remote Sensing, 11(8):936, doi:10.3390/rs11080936.
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- Vissa, Naresh Krishna, Anandh, P. C., Behera, Mama Manjali, and Mishra, Sameeksha, 2019. ENSO-induced groundwater changes
in India derived from GRACE and GLDAS. Journal of Earth System Science, 128(5):115, doi:10.1007/s12040-019-1148-z.
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- von Hippel, Max and Harig, Christopher, 2019. Long-term and inter-annual mass changes in the Iceland ice cap determined from
GRACE gravity using Slepian functions. Frontiers in Earth Science, 7:171, doi:10.3389/feart.2019.00171.
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- Wang, L., Kaban, M., Thomas, M., Chen, C., and Ma, X., 2019. The Challenge of Spatial Resolutions for GRACE-Based Estimates
Volume Changes of Larger Man-Made Lake: The Case of China's Three Gorges Reservoir in the Yangtze River. Remote Sensing,
11:99, doi:10.3390/rs11010099.
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- Wang, X., Luo, Z., Zhong, B., Wu, Y., Huang, Z., Zhou, H., and Li, Q., 2019. Separation and Recovery of Geophysical Signals
Based on the Kalman Filter with GRACE Gravity Data. Remote Sensing, 11:393, doi:10.3390/rs11040393.
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- Wang, Lei and Burgmann, Roland, 2019. Statistical Significance of Precursory Gravity Changes Before the 2011 M$_w$ 9.0 Tohoku-Oki
Earthquake. Geophysical Research Letters, 46(13):7323–7332, doi:10.1029/2019GL082682.
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- Wang, Linsong, Khan, Shfaqat A., Bevis, Michael, van den Broeke, Michiel R., Kaban, Mikhail K., Thomas, Maik, and Chen, Chao,
2019. Downscaling GRACE Predictions of the Crustal Response to the Present-Day Mass Changes in Greenland. Journal of Geophysical
Research (Solid Earth), 124(5):5134–5152, doi:10.1029/2018JB016883.
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- Wang, Shusen, 2019. Freezing Temperature Controls Winter Water Discharge for Cold Region Watershed. Water Resources Research,
55(12):10,479–10,493, doi:10.1029/2019WR026030.
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- Wang, Tian-Ye, Wang, Ping, Zhang, Yi-Chi, Yu, Jing-Jie, Du, Chao-Yang, and Fang, Yuan-Hao, 2019. Contrasting groundwater depletion
patterns induced by anthropogenic and climate-driven factors on Alxa Plateau, northwestern China. Journal of Hydrology,
576:262–272, doi:10.1016/j.jhydrol.2019.06.057.
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- Wang, H., Xiang, L., Steffen, H., Wu, P., Jiang, L., Shen, Q., Piretzidis, D., Sideris, M. G., Hayashi, M., and Jia,
L., 2019. Converse Trends of the Terrestrial and Ground Water Storage Changes in Canada and the United States. ISPRS -
International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 4213:1793–1796, doi:10.5194/isprs-archives-XLII-2-W13-1793-2019.
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- Worthington, E. L., Frajka-Williams, E., and McCarthy, G. D., 2019. Estimating the Deep Overturning Transport Variability
at 26\degN Using Bottom Pressure Recorders. Journal of Geophysical Research (Oceans), 124:335–348, doi:10.1029/2018JC014221.
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- Wöske, F., Kato, T., Rievers, B., and List, M., 2019. GRACE accelerometer calibration by high precision non-gravitational
force modeling. Advances in Space Research, 63:1318–1335, doi:10.1016/j.asr.2018.10.025.
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- Wouters, Bert, Gardner, Alex S., and Moholdt, Geir, 2019. Global glacier mass loss during the GRACE satellite mission (2002-2016).
Frontiers in Earth Science, 7:96, doi:10.3389/feart.2019.00096.
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- Wu, Q., Si, B., He, H., and Wu, P., 2019. Determining Regional-Scale Groundwater Recharge with GRACE and GLDAS. Remote
Sensing, 11:154, doi:10.3390/rs11020154.
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- Xi, Hui, Zhang, Zizhan, Lu, Yang, and Li, Yan, 2019. Mass sea level variation in the South China Sea from GRACE, altimetry
and model and the connection with ENSO. Advances in Space Research, 64(1):117–128, doi:10.1016/j.asr.2019.03.027.
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- Xiang, Yunfei, Yue, Jianping, Cong, Kanglin, Xing, Yin, and Cai, Dongjian, 2019. Characterizing the Seasonal Hydrological
Loading Over the Asian Continent Using GPS, GRACE, and Hydrological Model. Pure and Applied Geophysics, 176(11):5051–5068,
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- Xie, Jingkai, Xu, Yue-Ping, Wang, Yitong, Gu, Haiting, Wang, Fumin, and Pan, Suli, 2019. Influences of climatic variability
and human activities on terrestrial water storage variations across the Yellow River basin in the recent decade. Journal
of Hydrology, 579:124218, doi:10.1016/j.jhydrol.2019.124218.
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- Xie, Jingkai, Xu, Yue-Ping, Gao, Chao, Xuan, Weidong, and Bai, Zhixu, 2019. Total Basin Discharge From GRACE and Water Balance
Method for the Yarlung Tsangpo River Basin, Southwestern China. Journal of Geophysical Research (Atmospheres), 124(14):7617–7632,
doi:10.1029/2018JD030025.
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- Xu, Lei, Chen, Nengcheng, Zhang, Xiang, and Chen, Zeqiang, 2019. Spatiotemporal Changes in China's Terrestrial Water Storage
From GRACE Satellites and Its Possible Drivers. Journal of Geophysical Research (Atmospheres), 124(22):11,976–11,993,
doi:10.1029/2019JD031147.
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- Yang, Yuande, Li, Fei, Hwang, Cheinway, Ding, Minghu, and Ran, Jiangjun, 2019. Space-Time Evolution of Greenland Ice Sheet
Elevation and Mass From Envisat and GRACE Data. Journal of Geophysical Research (Earth Surface), 124(8):2079–2100,
doi:10.1029/2018JF004765.
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- Yang, Linqiang and Francis, Oceana Puananilei, 2019. Sea-level rise and vertical land motion on the Islands of Oahu and Hawaii,
Hawaii. Advances in Space Research, 64(11):2221–2232, doi:10.1016/j.asr.2019.08.028.
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- Yuan, L., Jin, S., and Calabia, A., 2019. Distinct thermospheric mass density variations following the September 2017 geomagnetic
storm from GRACE and Swarm. Journal of Atmospheric and Solar-Terrestrial Physics, 184:30–36, doi:10.1016/j.jastp.2019.01.007.
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- Yuan, Rui-Qiang, Chang, Li-Ling, Gupta, Hoshin, and Niu, Guo-Yue, 2019. Climatic forcing for recent significant terrestrial
drying and wetting. Advances in Water Resources, 133:103425, doi:10.1016/j.advwatres.2019.103425.
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- Zeng, T., Sui, L., Jia, X., Lv, Z., Ji, G., Dai, Q., and Zhang, Q., 2019. Validation of enhanced orbit determination for GPS
satellites with LEO GPS data considering multi ground station networks. Advances in Space Research, 63:2938–2951,
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- Zhang, D., Liu, X., and Bai, P., 2019. Assessment of hydrological drought and its recovery time for eight tributaries of the
Yangtze River (China) based on downscaled GRACE data. Journal of Hydrology, 568:592–603, doi:10.1016/j.jhydrol.2018.11.030.
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- Zhang, B., Liu, L., Khan, S. A., van Dam, T., Bjørk, A. A., Peings, Y., Zhang, E., Bevis, M., Yao, Y., and
Noël, B., 2019. Geodetic and model data reveal different spatio-temporal patterns of transient mass changes over Greenland
from 2007 to 2017. Earth and Planetary Science Letters, 515:154–163, doi:10.1016/j.epsl.2019.03.028.
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- Zhang, Lan, Yi, Shuang, Wang, Qiuyu, Chang, Le, Tang, He, and Sun, Wenke, 2019. Evaluation of GRACE mascon solutions for small
spatial scales and localized mass sources. Geophysical Journal International, 218(2):1307–1321, doi:10.1093/gji/ggz198.
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- Zhang, Yafeng, He, Bin, Guo, Lanlan, and Liu, Daochen, 2019. Differences in Response of Terrestrial Water Storage Components
to Precipitation over 168 Global River Basins. Journal of Hydrometeorology, 20(9):1981–1999, doi:10.1175/JHM-D-18-0253.1.
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- Zhang, Yafeng, He, Bin, Guo, Lanlan, Liu, Junjie, and Xie, Xiaoming, 2019. The relative contributions of precipitation, evapotranspiration,
and runoff to terrestrial water storage changes across 168 river basins. Journal of Hydrology, 579:124194, doi:10.1016/j.jhydrol.2019.124194.
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- Zhang, Yongjun, Lin, Xiaomao, Gowda, Prasanna, Brown, David, Zambreski, Zachary, and Kutikoff, Seth, 2019. Recent Ogallala
Aquifer Region Drought Conditions as Observed by Terrestrial Water Storage Anomalies from GRACE. Journal of the American
Water Resources Association, 55(6):1370–1381, doi:10.1111/1752-1688.12798.
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- Zhao, Qian, Zhang, Bao, Yao, Yibin, Wu, Weiwei, Meng, Guojie, and Chen, Qiang, 2019. Geodetic and hydrological measurements
reveal the recent acceleration of groundwater depletion in North China Plain. Journal of Hydrology, 575:1065–1072,
doi:10.1016/j.jhydrol.2019.06.016.
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- Zhou, Hao, Zhou, Zebing, and Luo, Zhicai, 2019. A New Hybrid Processing Strategy to Improve Temporal Gravity Field Solution.
Journal of Geophysical Research (Solid Earth), 124(8):9415–9432, doi:10.1029/2019JB017752.
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- Zhou, Xingyu, Jiang, Weiping, Chen, Hua, Li, Zhao, and Liu, Xuexi, 2019. Improving the GRACE Kinematic Precise Orbit Determination
Through Modified Clock Estimating. Sensors, 19(19):4347, doi:10.3390/s19194347.
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- Zou, Fang, Tenzer, Robert, and Jin, Shuanggen, 2019. Water Storage Variations in Tibet from GRACE, ICESat, and Hydrological
Data. Remote Sensing, 11(9):1103, doi:10.3390/rs11091103.
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- Zou, Fang, Tenzer, Robert, and Rathnayake, Samurdhika, 2019. Monitoring changes of the Antarctic Ice sheet by GRACE, ICESat
and GNSS. Contributions to Geophysics and Geodesy, 49(4):403–424, doi:10.2478/congeo-2019-0021.
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- Ahmed, M. and Abdelmohsen, K., 2018. Quantifying Modern Recharge and Depletion Rates of the Nubian Aquifer in Egypt. Surveys
in Geophysics, 39:729–751, doi:10.1007/s10712-018-9465-3.
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- anonymous, 2018. GRACE Follow-On vor dem Start. Physik in unserer Zeit, 49:61–61, doi:10.1002/piuz.201870207.
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- Anyah, R. O., Forootan, E., Awange, J. L., and Khaki, M., 2018. Understanding linkages between global climate indices
and terrestrial water storage changes over Africa using GRACE products. Science of the Total Environment, 635:1405–1416,
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- Bai, P., Liu, X., and Liu, C., 2018. Improving hydrological simulations by incorporating GRACE data for model calibration.
Journal of Hydrology, 557:291–304, doi:10.1016/j.jhydrol.2017.12.025.
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- Bamber, J. L., Westaway, R. M., Marzeion, B., and Wouters, B., 2018. The land ice contribution to sea level during
the satellite era. Environmental Research Letters, 13(6):063008, doi:10.1088/1748-9326/aac2f0.
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- Banerjee, C. and Kumar, D. N., 2018. Assessment of Surface Water Storage trends for increasing groundwater areas in India.
Journal of Hydrology, 562:780–788, doi:10.1016/j.jhydrol.2018.05.052.
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- Becker, M., Papa, F., Frappart, F., Alsdorf, D., Calmant, S., da Silva, J. S., Prigent, C., and Seyler, F., 2018. Satellite-based
estimates of surface water dynamics in the Congo River Basin. International Journal of Applied Earth Observation and Geoinformation,
66:196–209, doi:10.1016/j.jag.2017.11.015.
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- Behrangi, A., Gardner, A., Reager, J. T., Fisher, J. B., Yang, D., Huffman, G. J., and Adler, R. F., 2018.
Using GRACE to Estimate Snowfall Accumulation and Assess Gauge Undercatch Corrections in High Latitudes. Journal of Climate,
31:8689–8704, doi:10.1175/JCLI-D-18-0163.1.
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- Belonenko, T. V. and Fedorov, A. M., 2018. Steric Level Fluctuations and Deep Convection in the Labrador and Irminger
Seas. Izvestiya Atmospheric and Oceanic Physics, 54:1039–1049, doi:10.1134/S0001433818090086.
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- Bernknopf, R., Brookshire, D., Kuwayama, Y., Macauley, M., Rodell, M., Thompson, A., Vail, P., and Zaitchik, B., 2018. The
value of remotely sensed information: the case of a GRACE-enhanced drought severity index. Weather, Climate, and Society,
10(1):187–203, doi:10.1175/WCAS-D-16-0044.1.
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- Beveridge, A. K., Harig, C., and Simons, F. J., 2018. The changing mass of glaciers on the Tibetan Plateau, 2002-2016,
using time-variable gravity from the GRACE satellite mission. Journal of Geodetic Science, 8:83–97, doi:10.1515/jogs-2018-0010.
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- Bhanja, S. N., Zhang, X., and Wang, J., 2018. Estimating long-term groundwater storage and its controlling factors in
Alberta, Canada. Hydrology and Earth System Sciences, 22:6241–6255, doi:10.5194/hess-22-6241-2018.
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- Blazquez, A., Meyssignac, B., Lemoine, J., Berthier, E., Ribes, A., and Cazenave, A., 2018. Exploring the uncertainty in GRACE
estimates of the mass redistributions at the Earth surface: implications for the global water and sea level budgets. Geophysical
Journal International, 215:415–430, doi:10.1093/gji/ggy293.
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- Bonin, J. A., Chambers, D. P., and Cheng, M., 2018. Using satellite laser ranging to measure ice mass change in
Greenland and Antarctica. The Cryosphere, 12:71–79, doi:10.5194/tc-12-71-2018.
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- Bonsor, H., Shamsudduha, M., Marchant, B., MacDonald, A., and Taylor, R., 2018. Seasonal and Decadal Groundwater Changes in
African Sedimentary Aquifers Estimated Using GRACE Products and LSMs. Remote Sensing, 10:904, doi:10.3390/rs10060904.
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- Brookfield, A. E., Hill, M. C., Rodell, M., Loomis, B. D., Stotler, R. L., Porter, M. E., and Bohling,
G. C., 2018. In Situ and GRACE-Based Groundwater Observations: Similarities, Discrepancies, and Evaluation in the High
Plains Aquifer in Kansas. Water Resources Research, 54:8034–8044, doi:10.1029/2018WR023836.
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- Bruinsma, S., Sutton, E., Solomon, S. C., Fuller-Rowell, T., and Fedrizzi, M., 2018. Space Weather Modeling Capabilities
Assessment: Neutral Density for Orbit Determination at low Earth orbit. Space Weather, 16:1806–1816, doi:10.1029/2018SW002027.
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- Burke, W. J., 2018. TheThermospheric Dynamics during the March 1989 Magnetic Storm. Sun and Geosphere, 13:163–168,
doi:10.31401/SunGeo.2018.02.07.
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- Caron, L., Ivins, E. R., Larour, E., Adhikari, S., Nilsson, J., and Blewitt, G., 2018. GIA Model Statistics for GRACE
Hydrology, Cryosphere, and Ocean Science. Geophysical Research Letters, 45:2203–2212, doi:10.1002/2017GL076644.
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- Carter, Elizabeth, Hain, Christopher, Anderson, Martha, and Steinschneider, Scott, 2018. A Water Balance-Based, Spatiotemporal
Evaluation of Terrestrial Evapotranspiration Products across the Contiguous United States. Journal of Hydrometeorology,
19(5):891–905, doi:10.1175/JHM-D-17-0186.1.
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- Castellazzi, P., Longuevergne, L., Martel, R., Rivera, A., Brouard, C., and Chaussard, E., 2018. Quantitative mapping of groundwater
depletion at the water management scale using a combined GRACE/InSAR approach. Remote Sensing of Environment, 205:408–418,
doi:10.1016/j.rse.2017.11.025.
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- Cazenave, A., Palanisamy, H., and Ablain, M., 2018. Contemporary sea level changes from satellite altimetry: What have we
learned? What are the new challenges?. Advances in Space Research, 62:1639–1653, doi:10.1016/j.asr.2018.07.017.
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- Chanard, K., Fleitout, L., Calais, E., Rebischung, P., and Avouac, J.-P., 2018. Toward a Global Horizontal and Vertical Elastic
Load Deformation Model Derived from GRACE and GNSS Station Position Time Series. Journal of Geophysical Research (Solid
Earth), 123:3225–3237, doi:10.1002/2017JB015245.
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- Chen, W., Braitenberg, C., and Serpelloni, E., 2018. Interference of tectonic signals in subsurface hydrologic monitoring
through gravity and GPS due to mountain building. Global and Planetary Change, 167:148–159, doi:10.1016/j.gloplacha.2018.05.003.
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- Chen, X., Jiang, J., and Li, H., 2018. Drought and Flood Monitoring of the Liao River Basin in Northeast China Using Extended
GRACE Data. Remote Sensing, 10:1168, doi:10.3390/rs10081168.
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- Chen, Q., Shen, Y., Francis, O., Chen, W., Zhang, X., and Hsu, H., 2018. Tongji-Grace02s and Tongji-Grace02k: High-Precision
Static GRACE-Only Global Earth's Gravity Field Models Derived by Refined Data Processing Strategies. Journal of Geophysical
Research (Solid Earth), 123:6111–6137, doi:10.1029/2018JB015641.
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- Chen, Q., Poropat, L., Zhang, L., Dobslaw, H., Weigelt, M., and van Dam, T., 2018. Validation of the EGSIEM GRACE Gravity
Fields Using GNSS Coordinate Timeseries and In-Situ Ocean Bottom Pressure Records. Remote Sensing, 10:1976, doi:10.3390/rs10121976.
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- Chen, J., Tapley, B., Save, H., Tamisiea, M. E., Bettadpur, S., and Ries, J., 2018. Quantification of Ocean Mass Change
Using Gravity Recovery and Climate Experiment, Satellite Altimeter, and Argo Floats Observations. Journal of Geophysical
Research (Solid Earth), 123(B12):10, doi:10.1029/2018JB016095.
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- Ciracì, E., Velicogna, I., and Sutterley, T., 2018. Mass Balance of Novaya Zemlya Archipelago, Russian High Arctic,
Using Time-Variable Gravity from GRACE and Altimetry Data from ICESat and CryoSat-2. Remote Sensing, 10:1817, doi:10.3390/rs10111817.
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- Ciufolini, I., Pavlis, E. C., Ries, J., Matzner, R., Koenig, R., Paolozzi, A., Sindoni, G., Gurzadyan, V., Penrose, R.,
and Paris, C., 2018. Reply to ``A comment on ''A test of general relativity using the LARES and LAGEOS satellites and a GRACE
Earth gravity model, by I. Ciufolini et al.``''. European Physical Journal C, 78:880, doi:10.1140/epjc/s10052-018-6303-1.
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- Codrescu, S. M., Codrescu, M. V., and Fedrizzi, M., 2018. An Ensemble Kalman Filter for the Thermosphere-Ionosphere.
Space Weather, 16:57–68, doi:10.1002/2017SW001752.
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- Dai, C., Guo, J., Shang, K., Shum, C., and Wang, R., 2018. The effect of Earth's oblateness on the seismic moment estimation
from satellite gravimetry. Geophysical Journal International, .
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- Darbeheshti, N., Wöske, F., Weigelt, M., Mccullough, C., and Wu, H., 2018. GRACETOOLS—GRACE Gravity Field Recovery
Tools. Geosciences, 8:350, doi:10.3390/geosciences8090350.
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- Ditmar, P., Tangdamrongsub, N., Ran, J., and Klees, R., 2018. Estimation and reduction of random noise in mass anomaly time-series
from satellite gravity data by minimization of month-to-month year-to-year double differences. Journal of Geodynamics,
119:9–22, doi:10.1016/j.jog.2018.05.003.
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- Ditmar, P., 2018. Conversion of time-varying Stokes coefficients into mass anomalies at the Earth's surface considering the
Earth's oblateness. Journal of Geodesy, 92:1401–1412, doi:10.1007/s00190-018-1128-0.
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- Engels, O., Gunter, B., Riva, R., and Klees, R., 2018. Separating Geophysical Signals Using GRACE and High-Resolution Data:
A Case Study in Antarctica. Geophysical Research Letters, 45:12, doi:10.1029/2018GL079670.
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- Enzminger, T. L., Small, E. E., and Borsa, A. A., 2018. Accuracy of Snow Water Equivalent Estimated From GPS
Vertical Displacements: A Synthetic Loading Case Study for Western U.S. Mountains. Water Resources Research, 54:581–599,
doi:10.1002/2017WR021521.
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- Francis, S. P., Lam, T. T.-Y., McClelland, D. E., and Shaddock, D. A., 2018. Multi-link laser interferometry
architecture for interspacecraft displacement metrology. Journal of Geodesy, 92:241–251, doi:10.1007/s00190-017-1059-1.
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- Frappart, F. and Ramillien, G., 2018. Monitoring Groundwater Storage Changes Using the Gravity Recovery and Climate Experiment
(GRACE) Satellite Mission: A Review. Remote Sensing, 10:829, doi:10.3390/rs10060829.
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- Gemitzi, A. and Lakshmi, V., 2018. Estimating Groundwater Abstractions at the Aquifer Scale Using GRACE Observations. Geosciences,
8:419, doi:10.3390/geosciences8110419.
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- Gong, H., Pan, Y., Zheng, L., Li, X., Zhu, L., Zhang, C., Huang, Z., Li, Z., Wang, H., and Zhou, C., 2018. Long-term groundwater
storage changes and land subsidence development in the North China Plain (1971-2015). Hydrogeology Journal, 26:1417–1427,
doi:10.1007/s10040-018-1768-4.
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- Goswami, S., Devaraju, B., Weigelt, M., and Mayer-Gürr, T., 2018. Analysis of GRACE range-rate residuals with focus on
KBR instrument system noise. Advances in Space Research, 62:304–316, doi:10.1016/j.asr.2018.04.036.
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- Göttl, F., Schmidt, M., and Seitz, F., 2018. Mass-related excitation of polar motion: an assessment of the new RL06 GRACE
gravity field models. Earth, Planets, and Space, 70:195, doi:10.1186/s40623-018-0968-4.
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- Gouweleeuw, B. T., Kvas, A., Gruber, C., Gain, A. K., Mayer-Gürr, T., Flechtner, F., and Güntner, A.,
2018. Daily GRACE gravity field solutions track major flood events in the Ganges-Brahmaputra Delta. Hydrology and Earth
System Sciences, 22:2867–2880, doi:10.5194/hess-22-2867-2018.
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- Gruber, C., Rudenko, S., Groh, A., Ampatzidis, D., and Fagiolini, E., 2018. Earth's surface mass transport derived from GRACE,
evaluated by GPS, ICESat, hydrological modeling and altimetry satellite orbits. Earth Surface Dynamics, 6:1203–1218,
doi:10.5194/esurf-6-1203-2018.
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- Guo, J., Li, W., Chang, X., Zhu, G., Liu, X., and Guo, B., 2018. Terrestrial water storage changes over Xinjiang extracted
by combining Gaussian filter and multichannel singular spectrum analysis from GRACE. Geophysical Journal International,
213:397–407, doi:10.1093/gji/ggy006.
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- Guo, N.-n., Zhou, X.-h., Li, K., and Wu, B., 2018. Research on the impact factors of GRACE precise orbit determination by
dynamic method. Journal of Applied Geodesy, 12:249–257, doi:10.1515/jag-2018-0008.
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- Guo, J., Wang, Y., Shen, Y., Liu, X., Sun, Y., and Kong, Q., 2018. Estimation of SLR station coordinates by means of SLR measurements
to kinematic orbit of LEO satellites. Earth, Planets, and Space, 70:201, doi:10.1186/s40623-018-0973-7.
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- Guo, X., Zhao, Q., Ditmar, P., Sun, Y., and Liu, J., 2018. Improvements in the Monthly Gravity Field Solutions Through Modeling
the Colored Noise in the GRACE Data. Journal of Geophysical Research (Solid Earth), 123:7040–7054, doi:10.1029/2018JB015601.
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- Han, D. and Cao, G., 2018. Phase difference between groundwater storage changes and groundwater level fluctuations due to
compaction of an aquifer-aquitard system. Journal of Hydrology, 566:89–98, doi:10.1016/j.jhydrol.2018.09.010.
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- Hanasaki, N., Yoshikawa, S., Pokhrel, Y., and Kanae, S., 2018. A global hydrological simulation to specify the sources of
water used by humans. Hydrology and Earth System Sciences, 22:789–817, doi:10.5194/hess-22-789-2018.
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- Hauk, M. and Pail, R., 2018. Treatment of ocean tide aliasing in the context of a next generation gravity field mission. Geophysical
Journal International, 214:345–365, doi:10.1093/gji/ggy145.
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- Hirt, C. and Wildermann, E., 2018. Reactivation of the Venezuelan vertical deflection data set from classical astrogeodetic
observations. Journal of South American Earth Sciences, 85:97–107, doi:10.1016/j.jsames.2018.05.003.
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- Horvath, A., Murböck, M., Pail, R., and Horwath, M., 2018. Decorrelation of GRACE Time Variable Gravity Field Solutions
Using Full Covariance Information. Geosciences, 8:323, doi:10.3390/geosciences8090323.
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- Jean, Y., Meyer, U., and Jäggi, A., 2018. Combination of GRACE monthly gravity field solutions from different processing
strategies. Journal of Geodesy, 92:1313–1328, doi:10.1007/s00190-018-1123-5.
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- Jensen, D., Reager, J. T., Zajic, B., Rousseau, N., Rodell, M., and Hinkley, E., 2018. The sensitivity of US wildfire
occurrence to pre-season soil moisture conditions across ecosystems. Environmental Research Letters, 13(1):014021,
doi:10.1088/1748-9326/aa9853.
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- Jeon, Taehwan, Seo, Ki-Weon, Youm, Kookhyoun, Chen, Jianli, and Wilson, Clark R., 2018. Global sea level change signatures
observed by GRACE satellite gravimetry. Scientific Reports, 8:13519, doi:10.1038/s41598-018-31972-8.
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- Karegar, M. A., Dixon, T. H., Kusche, J., and Chambers, D. P., 2018. A New Hybrid Method for Estimating Hydrologically
Induced Vertical Deformation From GRACE and a Hydrological Model: An Example From Central North America. Journal of Advances
in Modeling Earth Systems, 10:1196–1217, doi:10.1029/2017MS001181.
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- Katpatal, Y. B., Rishma, C., and Singh, C. K., 2018. Sensitivity of the Gravity Recovery and Climate Experiment
(GRACE) to the complexity of aquifer systems for monitoring of groundwater. Hydrogeology Journal, 26:933–943,
doi:10.1007/s10040-017-1686-x.
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- Khaki, M., Forootan, E., Kuhn, M., Awange, J., van Dijk, A. I. J. M., Schumacher, M., and Sharifi, M. A.,
2018. Determining water storage depletion within Iran by assimilating GRACE data into the W3RA hydrological model. Advances
in Water Resources, 114:1–18, doi:10.1016/j.advwatres.2018.02.008.
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- Khaki, M., Forootan, E., Kuhn, M., Awange, J., Longuevergne, L., and Wada, Y., 2018. Efficient basin scale filtering of GRACE
satellite products. Remote Sensing of Environment, 204:76–93, doi:10.1016/j.rse.2017.10.040.
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- Khaki, M., Ait-El-Fquih, B., Hoteit, I., Forootan, E., Awange, J., and Kuhn, M., 2018. Unsupervised ensemble Kalman filtering
with an uncertain constraint for land hydrological data assimilation. Journal of Hydrology, 564:175–190, doi:10.1016/j.jhydrol.2018.06.080.
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- Kim, P., Park, S.-Y., Kang, D.-E., and Lee, Y., 2018. Analysis of Inter-satellite Ranging Precision for Gravity Recovery in
a Satellite Gravimetry Mission. Journal of Astronomy and Space Sciences, 35:243–252, doi:10.5140/JASS.2018.35.4.243.
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- Kittel, C. M. M., Nielsen, K., Tøttrup, C., and Bauer-Gottwein, P., 2018. Informing a hydrological model
of the Ogooué with multi-mission remote sensing data. Hydrology and Earth System Sciences, 22:1453–1472,
doi:10.5194/hess-22-1453-2018.
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- Klokocn\'ık, J., Kostelecký, J., C\'ılek, V., Bezdek, A., and Pesek, I., 2018. Gravito-topographic signal
of the Lake Vostok area, Antarctica, with the most recent data. Polar Science, 17:59–74, doi:10.1016/j.polar.2018.05.002.
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- Klokocn\'ık, J., Kostelecký, J., and Bezdek, A., 2018. On the detection of the Wilkes Land impact crater. Earth,
Planets, and Space, 70:135, doi:10.1186/s40623-018-0904-7.
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- Koch, A., Sanjuan, J., Gohlke, M., Mahrdt, C., Brause, N., Braxmaier, C., and Heinzel, G., 2018. Line of sight calibration
for the laser ranging interferometer on-board the GRACE Follow-On mission: on-ground experimental validation. Optics Express,
26:25892, doi:10.1364/OE.26.025892.
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- Koenig, D., 2018. A Terrestrial Reference Frame realised on the observation level using a GPS-LEO satellite constellation.
Journal of Geodesy, 92:1299–1312, doi:10.1007/s00190-018-1121-7.
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- Lakshmi, V., Fayne, J., and Bolten, J., 2018. A comparative study of available water in the major river basins of the world.
Journal of Hydrology, 567:510–532, doi:10.1016/j.jhydrol.2018.10.038.
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- Lezzaik, K. and Milewski, A., 2018. A quantitative assessment of groundwater resources in the Middle East and North Africa
region. Hydrogeology Journal, 26:251–266, doi:10.1007/s10040-017-1646-5.
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- Li, T., Wu, P., Wang, H., Jia, L., and Steffen, H., 2018. Hydrology signal from GRACE gravity data in the Nelson River basin,
Canada: a comparison of two approaches. Earth, Planets, and Space, 70:41, doi:10.1186/s40623-018-0804-x.
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- Li, T., Wu, P., Steffen, H., and Wang, H., 2018. In search of laterally heterogeneous viscosity models of Glacial Isostatic
Adjustment with the ICE-6G_C global ice history model. Geophysical Journal International, .
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- Liu, Y., Zhou, C., Tang, Q., Li, Z., Song, Y., Qing, H., Ni, B., and Zhao, Z., 2018. The seasonal distribution of sporadic
E layers observed from radio occultation measurements and its relation with wind shear measured by TIMED/TIDI. Advances
in Space Research, 62:426–439, doi:10.1016/j.asr.2018.04.026.
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- Llubes, M., Seoane, L., Bruinsma, S., and Rémy, F., 2018. Crustal thickness of Antarctica estimated using data from
gravimetric satellites. Solid Earth, 9:457–467, doi:10.5194/se-9-457-2018.
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- Lopez, T., Ramillien, G., Antoine, R., Darrozes, J., Cui, Y.-J., and Kerr, Y., 2018. Investigation of Short-Term Evolution
of Soil Characteristics over the Lake Chad Basin Using GRACE Data. Remote Sensing, 10:924, doi:10.3390/rs10060924.
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- Lück, C., Kusche, J., Rietbroek, R., and Löcher, A., 2018. Time-variable gravity fields and ocean mass change from
37 months of kinematic Swarm orbits. Solid Earth, 9:323–339, doi:10.5194/se-9-323-2018.
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- Massoud, Elias C., Purdy, Adam J., Miro, Michelle E., and Famiglietti, James S., 2018. Projecting groundwater storage changes
in California's Central Valley. Scientific Reports, 8:12917, doi:10.1038/s41598-018-31210-1.
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- Milyukov, V. K. and Yeh, H.-C., 2018. Next Generation Space Gravimetry: Scientific Tasks, Concepts, and Realization.
Astronomy Reports, 62:1003–1012, doi:10.1134/S1063772918120090.
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- Miro, M. and Famiglietti, J., 2018. Downscaling GRACE Remote Sensing Datasets to High-Resolution Groundwater Storage Change
Maps of California's Central Valley. Remote Sensing, 10:143, doi:10.3390/rs10010143.
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- Mohajerani, Y., Velicogna, I., and Rignot, E., 2018. Mass Loss of Totten and Moscow University Glaciers, East Antarctica,
Using Regionally Optimized GRACE Mascons. Geophysical Research Letters, 45:7010–7018, doi:10.1029/2018GL078173.
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- Mouyen, Maxime, Longuevergne, Laurent, Steer, Philippe, Crave, Alain, Lemoine, Jean-Michel, Save, Himanshu, and Robin, Cécile,
2018. Assessing modern river sediment discharge to the ocean using satellite gravimetry. Nature Communications, 9:3384,
doi:10.1038/s41467-018-05921-y.
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- Mukherjee, A. and Ramachandran, P., 2018. Prediction of GWL with the help of GRACE TWS for unevenly spaced time series data
in India : Analysis of comparative performances of SVR, ANN and LRM. Journal of Hydrology, 558:647–658, doi:10.1016/j.jhydrol.2018.02.005.
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- Nair, A. S. and Indu, J., 2018. Utilizing GRACE and GLDAS data for estimating groundwater storage variability over the
Krishna Basin. ISPRS Annals of Photogrammetry, Remote Sensing and Spatial Information Sciences, 45:129–136, doi:10.5194/isprs-annals-IV-5-129-2018.
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- Ndehedehe, C. E., Awange, J. L., Agutu, N. O., and Okwuashi, O., 2018. Changes in hydro-meteorological conditions
over tropical West Africa (1980-2015) and links to global climate. Global and Planetary Change, 162:321–341,
doi:10.1016/j.gloplacha.2018.01.020.
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- Ni, S., Chen, J., Wilson, C. R., Li, J., Hu, X., and Fu, R., 2018. Global Terrestrial Water Storage Changes and Connections
to ENSO Events. Surveys in Geophysics, 39:1–22, doi:10.1007/s10712-017-9421-7.
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- Nie, W., Zaitchik, B. F., Rodell, M., Kumar, S. V., Anderson, M. C., and Hain, C., 2018. Groundwater Withdrawals
Under Drought: Reconciling GRACE and Land Surface Models in the United States High Plains Aquifer. Water Resources Research,
54:5282–5299, doi:10.1029/2017WR022178.
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- Ospina M., D. L. and Vargas J., C. A., 2018. Monitoring runoff coefficients and groundwater levels using data from
GRACE, GLDAS, and hydrometeorological stations: analysis of a Colombian foreland basin. Hydrogeology Journal, 26:2769–2779,
doi:10.1007/s10040-018-1824-0.
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- Othman, A., Sultan, M., Becker, R., Alsefry, S., Alharbi, T., Gebremichael, E., Alharbi, H., and Abdelmohsen, K., 2018. Use
of Geophysical and Remote Sensing Data for Assessment of Aquifer Depletion and Related Land Deformation. Surveys in Geophysics,
.
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- Pan, Y., Shen, W.-B., Shum, C. K., and Chen, R., 2018. Spatially varying surface seasonal oscillations and 3-D crustal
deformation of the Tibetan Plateau derived from GPS and GRACE data. Earth and Planetary Science Letters, 502:12–22,
doi:10.1016/j.epsl.2018.08.037.
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- Panet, I., Bonvalot, S., Narteau, C., Remy, D., and Lemoine, J.-M., 2018. Migrating pattern of deformation prior to the Tohoku-Oki
earthquake revealed by GRACE data. Nature Geoscience, 11:367–373, doi:10.1038/s41561-018-0099-3.
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- Papanikolaou, T. D. and Tsoulis, D., 2018. Assessment of Earth Gravity Field Models in the Medium to High Frequency Spectrum
Based on GRACE and GOCE Dynamic Orbit Analysis. Geosciences, 8:441, doi:10.3390/geosciences8120441.
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- Peltier, R. W., Argus, D. F., and Drummond, R., 2018. Comment on ``An Assessment of the ICE-6G_C (VM5a) Glacial
Isostatic Adjustment Model'' by Purcell et al.. Journal of Geophysical Research (Solid Earth), 123:2019–2028,
doi:10.1002/2016JB013844.
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- Philipp, D., Woeske, F., Biskupek, L., Hackmann, E., Mai, E., List, M., Lämmerzahl, C., and Rievers, B., 2018. Modeling
approaches for precise relativistic orbits: Analytical, Lie-series, and pN approximation. Advances in Space Research,
62:921–934, doi:10.1016/j.asr.2018.05.020.
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- Piecuch, C. G., Landerer, F. W., and Ponte, R. M., 2018. Tide gauge records reveal improved processing of gravity
recovery and climate experiment time-variable mass solutions over the coastal ocean. Geophysical Journal International,
214:1401–1412, doi:10.1093/gji/ggy207.
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- Piretzidis, D., Sra, G., Karantaidis, G., Sideris, M. G., and Kabirzadeh, H., 2018. Identifying presence of correlated
errors using machine learning algorithms for the selective de-correlation of GRACE harmonic coefficients. Geophysical Journal
International, 215:375–388, doi:10.1093/gji/ggy272.
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- Piretzidis, D. and Sideris, M. G., 2018. SHADE: A MATLAB toolbox and graphical user interface for the empirical de-correlation
of GRACE monthly solutions. Computers and Geosciences, 119:137–150, doi:10.1016/j.cageo.2018.06.012.
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- Poropat, L., Dobslaw, H., Zhang, L., Macrander, A., Boebel, O., and Thomas, M., 2018. Time Variations in Ocean Bottom Pressure
from a Few Hours to Many Years: In Situ Data, Numerical Models, and GRACE Satellite Gravimetry. Journal of Geophysical
Research (Oceans), 123:5612–5623, doi:10.1029/2018JC014108.
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- Rahimi, A., Li, J., Raoofian Naeeni, M., Shahrisvand, M., and Fatolazadeh, F., 2018. On the extraction of co-seismic signal
for the Kuril Island earthquakes using GRACE observations. Geophysical Journal International, 215:346–362, doi:10.1093/gji/ggy287.
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- Ran, J., Ditmar, P., Klees, R., and Farahani, H. H., 2018. Statistically optimal estimation of Greenland Ice Sheet mass
variations from GRACE monthly solutions using an improved mascon approach. Journal of Geodesy, 92:299–319, doi:10.1007/s00190-017-1063-5.
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- Ran, J., Ditmar, P., and Klees, R., 2018. Optimal mascon geometry in estimating mass anomalies within Greenland from GRACE.
Geophysical Journal International, 214:2133–2150, doi:10.1093/gji/ggy242.
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- Ran, J., Vizcaino, M., Ditmar, P., van den Broeke, M. R., Moon, T., Steger, C. R., Enderlin, E. M., Wouters,
B., Noël, B., Reijmer, C. H., Klees, R., Zhong, M., Liu, L., and Fettweis, X., 2018. Seasonal mass variations show
timing and magnitude of meltwater storage in the Greenland Ice Sheet. The Cryosphere, 12:2981–2999, doi:10.5194/tc-12-2981-2018.
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- Ren, L. and Schön, S., 2018. PPP-based Swarm kinematic orbit determination. Annales Geophysicae, 36:1227–1241,
doi:10.5194/angeo-36-1227-2018.
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- Rodell, M., Famiglietti, J. S., Wiese, D. N., Reager, J. T., Beaudoing, H. K., Landerer, F. W., and
Lo, M. -H., 2018. Emerging trends in global freshwater availability. Nature, 557(7707):651–659, doi:10.1038/s41586-018-0123-1.
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- Sabadini, R. and Cambiotti, G., 2018. The physics of earthquakes from space gravity missions. Nuovo Cimento Rivista Serie,
41(11):575–623, doi:10.1393/ncr/i2018-10153-y.
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- Sadri, S., Wood, E. F., and Pan, M., 2018. Developing a drought-monitoring index for the contiguous US using SMAP. Hydrology
and Earth System Sciences, 22:6611–6626, doi:10.5194/hess-22-6611-2018.
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- Sasgen, I., Martín-Español, A., Horvath, A., Klemann, V., Petrie, E. J., Wouters, B., Horwath, M., Pail,
R., Bamber, J. L., Clarke, P. J., Konrad, H., Wilson, T., and Drinkwater, M. R., 2018. Altimetry, gravimetry,
GPS and viscoelastic modeling data for the joint inversion for glacial isostatic adjustment in Antarctica (ESA STSE Project
REGINA). Earth System Science Data, 10:493–523, doi:10.5194/essd-10-493-2018.
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- Scanlon, Bridget R., Zhang, Zizhan, Save, Himanshu, Sun, Alexander Y., Müller Schmied, Hannes, van Beek, Ludovicus P. H.,
Wiese, David N., Wada, Yoshihide, Long, Di, Reedy, Robert C., Longuevergne, Laurent, Döll, Petra, and Bierkens, Marc
F. P., 2018. Global models underestimate large decadal declining and rising water storage trends relative to GRACE satellite
data. Proceedings of the National Academy of Science, 115(6):E1080–E1089, doi:10.1073/pnas.1704665115.
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- Schrama, E., 2018. Precision orbit determination performance for CryoSat-2. Advances in Space Research, 61:235–247,
doi:10.1016/j.asr.2017.11.001.
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- Schumacher, M., Forootan, E., van Dijk, A. I. J. M., Müller Schmied, H., Crosbie, R. S., Kusche,
J., and Döll, P., 2018. Improving drought simulations within the Murray-Darling Basin by combined calibration/assimilation
of GRACE data into the WaterGAP Global Hydrology Model. Remote Sensing of Environment, 204:212–228, doi:10.1016/j.rse.2017.10.029.
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- Seyoum, W. M., 2018. Characterizing water storage trends and regional climate influence using GRACE observation and satellite
altimetry data in the Upper Blue Nile River Basin. Journal of Hydrology, 566:274–284, doi:10.1016/j.jhydrol.2018.09.025.
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- Shokri, A., Walker, J. P., van Dijk, A. I. J. M., and Pauwels, V. R. N., 2018. Performance of
Different Ensemble Kalman Filter Structures to Assimilate GRACE Terrestrial Water Storage Estimates Into a High-Resolution
Hydrological Model: A Synthetic Study. Water Resources Research, 54:8931–8951, doi:10.1029/2018WR022785.
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- Simon, K. M., Riva, R. E. M., Kleinherenbrink, M., and Frederikse, T., 2018. The glacial isostatic adjustment
signal at present day in northern Europe and the British Isles estimated from geodetic observations and geophysical models.
Solid Earth, 9:777–795, doi:10.5194/se-9-777-2018.
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- Sizemore, A., Improved Atmospheric Density Estimation and Characterization of Uncertainty. Ph.D. Thesis, University of Kansas,
2018.
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- Su, X., Shum, C. K., Guo, J., Howat, I. M., Kuo, C., Jezek, K. C., Duan, J., and Yi, Y., 2018. High-Resolution
Interannual Mass Anomalies of the Antarctic Ice Sheet by Combining GRACE Gravimetry and ENVISAT Altimetry. IEEE Transactions
on Geoscience and Remote Sensing, 56:539–546, doi:10.1109/TGRS.2017.2751070.
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- Sun, Z., Zhu, X., Pan, Y., Zhang, J., and Liu, X., 2018. Drought evaluation using the GRACE terrestrial water storage deficit
over the Yangtze River Basin, China. Science of the Total Environment, 634:727–738, doi:10.1016/j.scitotenv.2018.03.292.
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- Sun, M., Dong, Q., Jiao, M., Zhao, X., Gao, X., Wu, P., and Wang, A., 2018. Estimation of Actual Evapotranspiration in a Semiarid
Region Based on GRACE Gravity Satellite Data—A Case Study in Loess Plateau. Remote Sensing, 10:2032, doi:10.3390/rs10122032.
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- Sutanudjaja, E. H., van Beek, R., Wanders, N., Wada, Y., Bosmans, J. H. C., Drost, N., van der Ent, R. J.,
de Graaf, I. E. M., Hoch, J. M., de Jong, K., Karssenberg, D., López López, P., Peßenteiner,
S., Schmitz, O., Straatsma, M. W., Vannametee, E., Wisser, D., and Bierkens, M. F. P., 2018. PCR-GLOBWB 2:
a 5 arcmin global hydrological and water resources model. Geoscientific Model Development, 11:2429–2453, doi:10.5194/gmd-11-2429-2018.
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- Sutton, E. K., 2018. A New Method of Physics-Based Data Assimilation for the Quiet and Disturbed Thermosphere. Space
Weather, 16:736–753, doi:10.1002/2017SW001785.
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- Szilagyi, J., 2018. Anthropogenic hydrological cycle disturbance at a regional scale: State-wide evapotranspiration trends
(1979-2015) across Nebraska, USA. Journal of Hydrology, 557:600–612, doi:10.1016/j.jhydrol.2017.12.062.
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- Tangdamrongsub, N., Han, S.-C., Tian, S., Müller Schmied, H., Sutanudjaja, E. H., Ran, J., and Feng, W., 2018. Evaluation
of Groundwater Storage Variations Estimated from GRACE Data Assimilation and State-of-the-Art Land Surface Models in Australia
and the North China Plain. Remote Sensing, 10:483, doi:10.3390/rs10030483.
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- Tangdamrongsub, N., Han, S.-C., Decker, M., Yeo, I.-Y., and Kim, H., 2018. On the use of the GRACE normal equation of inter-satellite
tracking data for estimation of soil moisture and groundwater in Australia. Hydrology and Earth System Sciences, 22:1811–1829,
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- Tourian, M. J., Reager, J. T., and Sneeuw, N., 2018. The Total Drainable Water Storage of the Amazon River Basin:
A First Estimate Using GRACE. Water Resources Research, 54:3290–3312, doi:10.1029/2017WR021674.
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- Trautmann, T., Koirala, S., Carvalhais, N., Eicker, A., Fink, M., Niemann, C., and Jung, M., 2018. Understanding terrestrial
water storage variations in northern latitudes across scales. Hydrology and Earth System Sciences, 22:4061–4082,
doi:10.5194/hess-22-4061-2018.
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- Tulasi Ram, S., Sai Gowtam, V., Mitra, A., and Reinisch, B., 2018. The Improved Two-Dimensional Artificial Neural Network-Based
Ionospheric Model (ANNIM). Journal of Geophysical Research (Space Physics), 123:5807–5820, doi:10.1029/2018JA025559.
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- Vielberg, K., Forootan, E., Lück, C., Löcher, A., Kusche, J., and Börger, K., 2018. Comparison of accelerometer
data calibration methods used in thermospheric neutral density estimation. Annales Geophysicae, 36:761–779, doi:10.5194/angeo-36-761-2018.
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- Wang, S.-Y., Chen, J. L., Wilson, C. R., Li, J., and Hu, X., 2018. Reconciling GRACE and GPS estimates of long-term
load deformation in southern Greenland. Geophysical Journal International, 212:1302–1313, doi:10.1093/gji/ggx473.
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- Wang, W., Li, J., Yu, Z., Ding, Y., Xing, W., and Lu, W., 2018. Satellite retrieval of actual evapotranspiration in the Tibetan
Plateau: Components partitioning, multidecadal trends and dominated factors identifying. Journal of Hydrology, 559:471–485,
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- Wang, S.-Y., Chen, J. L., Wilson, C. R., Li, J., and Hu, X.-G., 2018. Vertical motion at TEHN (Iran) from Caspian
Sea and other environmental loads. Journal of Geodynamics, 122:17–24, doi:10.1016/j.jog.2018.10.003.
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- WCRP Global Sea Level Budget Group, '', 2018. Global sea-level budget 1993-present. Earth System Science Data, 10:1551–1590,
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- Weise, A. and Jahr, T., 2018. The Improved Hydrological Gravity Model for Moxa Observatory, Germany. Pure and Applied Geophysics,
175:1755–1763, doi:10.1007/s00024-017-1546-6.
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- Xie, X., Xu, C., Wen, Y., and Li, W., 2018. Monitoring Groundwater Storage Changes in the Loess Plateau Using GRACE Satellite
Gravity Data, Hydrological Models and Coal Mining Data. Remote Sensing, 10:605, doi:10.3390/rs10040605.
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- Xie, Y., Huang, S., Liu, S., Leng, G., Peng, J., Huang, Q., and Li, P., 2018. GRACE-Based Terrestrial Water Storage in Northwest
China: Changes and Causes. Remote Sensing, 10:1163, doi:10.3390/rs10071163.
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- Xing, W., Wang, W., Shao, Q., Yong, B., Liu, C., Feng, X., and Dong, Q., 2018. Estimating monthly evapotranspiration by assimilating
remotely sensed water storage data into the extended Budyko framework across different climatic regions. Journal of Hydrology,
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- Xu, P., 2018. Measurement-based perturbation theory and differential equation parameter estimation with applications to satellite
gravimetry. Communications in Nonlinear Science and Numerical Simulations, 59:515–543, doi:10.1016/j.cnsns.2017.11.021.
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- Yang, F., Forootan, E., Schumacher, M., Shum, C., and Zhong, M., 2018. Evaluating non-tidal atmospheric products by measuring
GRACE K-band range rate residuals. Geophysical Journal International, 215:1132–1147, doi:10.1093/gji/ggy340.
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- Yasyukevich, Y. V., Yasyukevich, A. S., Ratovsky, K. G., Klimenko, M. V., Klimenko, V. V., and Chirik,
N. V., 2018. Winter anomaly in N$_m$F$_2$ and TEC: when and where it can occur. Journal of Space Weather and Space
Climate, 8(27):A45, doi:10.1051/swsc/2018036.
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- Yin, W., Hu, L., Zhang, M., Wang, J., and Han, S.-C., 2018. Statistical Downscaling of GRACE-Derived Groundwater Storage Using
ET Data in the North China Plain. Journal of Geophysical Research (Atmospheres), 123:5973–5987, doi:10.1029/2017JD027468.
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- Yu, Y., Chao, B. F., Garc\'ıa-Garc\'ıa, D., and Luo, Z., 2018. Variations of the Argentine Gyre Observed
in the GRACE Time-Variable Gravity and Ocean Altimetry Measurements. Journal of Geophysical Research (Oceans), 123:5375–5387,
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- Zhang, T., Shen, W., Pan, Y., and Luan, W., 2018. Study of seasonal and long-term vertical deformation in Nepal based on GPS
and GRACE observations. Advances in Space Research, 61:1005–1016, doi:10.1016/j.asr.2017.10.049.
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- Zhang, H. and Sun, Y., 2018. Climate-driven seasonal geocenter motion during the GRACE period. Acta Geophysica, .
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- Zhang, B., Zhang, E., Liu, L., Khan, S. A., van Dam, T., Yao, Y., Bevis, M., and Helm, V., 2018. Geodetic measurements
reveal short-term changes of glacial mass near Jakobshavn Isbræ (Greenland) from 2007 to 2017. Earth and Planetary
Science Letters, 503:216–226, doi:10.1016/j.epsl.2018.09.029.
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- Zhao, C., Huang, Y., Li, Z., and Chen, M., 2018. Drought Monitoring of Southwestern China Using Insufficient GRACE Data for
the Long-Term Mean Reference Frame under Global Change. Journal of Climate, 31:6897–6911, doi:10.1175/JCLI-D-17-0869.1.
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- Zheng, Z., Jin, S., and Fan, L., 2018. Co-seismic deformation following the 2007 Bengkulu earthquake constrained by GRACE
and GPS observations. Physics of the Earth and Planetary Interiors, 280:20–31, doi:10.1016/j.pepi.2018.04.009.
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- Zheng, W. and Li, Z., 2018. Preferred design and error analysis for the future dedicated deep-space Mars-SST satellite gravity
mission. Astrophysics and Space Science, 363:172, doi:10.1007/s10509-018-3392-0.
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- Zheng, M., Deng, K., Fan, H., and Du, S., 2018. Monitoring and Analysis of Surface Deformation in Mining Area Based on InSAR
and GRACE. Remote Sensing, 10:1392, doi:10.3390/rs10091392.
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- Zhong, Y., Zhong, M., Feng, W., Zhang, Z., Shen, Y., and Wu, D., 2018. Groundwater Depletion in the West Liaohe River Basin,
China and Its Implications Revealed by GRACE and In Situ Measurements. Remote Sensing, 10:493, doi:10.3390/rs10040493.
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- A, G., Velicogna, I., Kimball, J. S., Du, J., Kim, Y., Colliander, A., and Njoku, E., 2017. Satellite-observed changes
in vegetation sensitivities to surface soil moisture and total water storage variations since the 2011 Texas drought. Environmental
Research Letters, 12(5):054006, doi:10.1088/1748-9326/aa6965.
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- Abbondanza, C., Chin, T. M., Gross, R. S., Heflin, M. B., Parker, J. W., Soja, B. S., vanÂ
Dam, T., and Wu, X., 2017. JTRF2014, the JPL Kalman filter and smoother realization of the International Terrestrial Reference
System. Journal of Geophysical Research (Solid Earth), 122:8474–8510, doi:10.1002/2017JB014360.
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- Abera, W., Formetta, G., Brocca, L., and Rigon, R., 2017. Modeling the water budget of the Upper Blue Nile basin using the
JGrass-NewAge model system and satellite data. Hydrology and Earth System Sciences, 21:3145–3165, doi:10.5194/hess-21-3145-2017.
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- Allende-Alba, G., Montenbruck, O., Ardaens, J.-S., Wermuth, M., and Hugentobler, U., 2017. Estimating maneuvers for precise
relative orbit determination using GPS. Advances in Space Research, 59:45–62, doi:10.1016/j.asr.2016.08.039.
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- Álvarez, O., Pesce, A., Gimenez, M., Folguera, A., Soler, S., and Chen, W., 2017. Analysis of the Illapel Mw = 8.3
Thrust Earthquake Rupture Zone Using GOCE-Derived Gradients. Pure and Applied Geophysics, 174:47–75, doi:10.1007/s00024-016-1376-y.
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- Andrew, R., Guan, H., and Batelaan, O., 2017. Estimation of GRACE water storage components by temporal decomposition. Journal
of Hydrology, 552:341–350, doi:10.1016/j.jhydrol.2017.06.016.
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- Andrew, R. L., Guan, H., and Batelaan, O., 2017. Large-scale vegetation responses to terrestrial moisture storage changes.
Hydrology and Earth System Sciences, 21:4469–4478, doi:10.5194/hess-21-4469-2017.
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- Angerer, B., Ladstädter, F., Scherllin-Pirscher, B., Schwärz, M., Steiner, A. K., Foelsche, U., and Kirchengast,
G., 2017. Quality aspects of the Wegener Center multi-satellite GPS radio occultation record OPSv5.6. Atmospheric Measurement
Techniques, 10:4845–4863, doi:10.5194/amt-10-4845-2017.
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- Apollinaire, B., Joseph, K., Tabod, T. C., Loudi, Y., Robert, N., Ludovic, K. H., and Valentin, O., 2017. Subsurface
Structural Mapping Using Combined Terrestrial and Grace Gravity Data of the Adamawa Plateau (North-Cameroon). International
Journal of Geosciences, 8:869–887, doi:10.4236/ijg.2017.87050.
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- Argus, D. F., Landerer, F. W., Wiese, D. N., Martens, H. R., Fu, Y., Famiglietti, J. S., Thomas,
B. F., Farr, T. G., Moore, A. W., and Watkins, M. M., 2017. Sustained Water Loss in California's Mountain
Ranges During Severe Drought From 2012 to 2015 Inferred From GPS. Journal of Geophysical Research (Solid Earth), 122(B11):10,
doi:10.1002/2017JB014424.
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- Barik, B., Ghosh, S., Saheer Sahana, A., Pathak, A., and Sekhar, M., 2017. Water-food-energy nexus with changing agricultural
scenarios in India during recent decades. Hydrology and Earth System Sciences, 21:3041–3060, doi:10.5194/hess-21-3041-2017.
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- Behrangi, A., Gardner, A. S., Reager, J. T., and Fisher, J. B., 2017. Using GRACE to constrain precipitation
amount over cold mountainous basins. Geophysical Research Letters, 44:219–227, doi:10.1002/2016GL071832.
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- Bhanja, S. N., Mukherjee, A., Rodell, M., Wada, Y., Chattopadhyay, S., Velicogna, I., Pangaluru, K., and Famiglietti,
J. S., 2017. Groundwater rejuvenation in parts of India influenced by water-policy change implementation. Scientific
Reports, 7:7453, doi:10.1038/s41598-017-07058-2.
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- Calabia, A. and Jin, S., 2017. Thermospheric density estimation and responses to the March 2013 geomagnetic storm from GRACE
GPS-determined precise orbits. Journal of Atmospheric and Solar-Terrestrial Physics, 154:167–179, doi:10.1016/j.jastp.2016.12.011.
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- Carret, A., Johannessen, J. A., Andersen, O. B., Ablain, M., Prandi, P., Blazquez, A., and Cazenave, A., 2017. Arctic
Sea Level During the Satellite Altimetry Era. Surveys in Geophysics, 38:251–275, doi:10.1007/s10712-016-9390-2.
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- Chandanpurkar, Hrishikesh A., Reager, John T., Famiglietti, James S., and Syed, Tajdarul H., 2017. Satellite- and Reanalysis-Based
Mass Balance Estimates of Global Continental Discharge (1993-2015). Journal of Climate, 30(21):8481–8495, doi:10.1175/JCLI-D-16-0708.1.
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- Chen, X., Long, D., Hong, Y., Zeng, C., and Yan, D., 2017. Improved modeling of snow and glacier melting by a progressive
two-stage calibration strategy with GRACE and multisource data: How snow and glacier meltwater contributes to the runoff of
the Upper Brahmaputra River basin?. Water Resources Research, 53:2431–2466, doi:10.1002/2016WR019656.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Save, H., and Cretaux, J.-F., 2017. Long-term and seasonal Caspian
Sea level change from satellite gravity and altimeter measurements. Journal of Geophysical Research (Solid Earth),
122:2274–2290, doi:10.1002/2016JB013595.
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- Chen, Zheng, Jiang, Weiguo, Wu, Jianjun, Chen, Kun, Deng, Yue, Jia, Kai, and Mo, Xinyu, 2017. Detection of the spatial patterns
of water storage variation over China in recent 70 years. Scientific Reports, 7:6423, doi:10.1038/s41598-017-06558-5.
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- Cheng, M. and Ries, J., 2017. The unexpected signal in GRACE estimates of C_$\$20$\$. Journal of Geodesy, 91:897–914,
doi:10.1007/s00190-016-0995-5.
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- Colangelo, L., Massotti, L., Canuto, E., and Novara, C., 2017. Embedded model control GNC for the Next Generation Gravity
Mission. Acta Astronautica, 140:497–508, doi:10.1016/j.actaastro.2017.09.016.
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- Dahle, C., Arnold, D., and Jäggi, A., 2017. Impact of tracking loop settings of the Swarm GPS receiver on gravity field
recovery. Advances in Space Research, 59:2843–2854, doi:10.1016/j.asr.2017.03.003.
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- Dalin, C., Wada, Y., Kastner, T., and Puma, M. J., 2017. Groundwater depletion embedded in international food trade.
Nature, 543:700–704, doi:10.1038/nature21403.
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- Darbeheshti, N., Wegener, H., Müller, V., Naeimi, M., Heinzel, G., and Hewitson, M., 2017. Instrument data simulations
for GRACE Follow-on: observation and noise models. Earth System Science Data, 9:833–848, doi:10.5194/essd-9-833-2017.
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- Davis, J. L. and Vinogradova, N. T., 2017. Causes of accelerating sea level on the East Coast of North America.
Geophysical Research Letters, 44:5133–5141, doi:10.1002/2017GL072845.
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- Deng, H. and Chen, Y., 2017. Influences of recent climate change and human activities on water storage variations in Central
Asia. Journal of Hydrology, 544:46–57, doi:10.1016/j.jhydrol.2016.11.006.
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- Devaraju, B. and Sneeuw, N., 2017. The polar form of the spherical harmonic spectrum: implications for filtering grace data.
Journal of Geodesy, 91:1475–1489, doi:10.1007/s00190-017-1037-7.
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- Dobslaw, H., Bergmann-Wolf, I., Dill, R., Poropat, L., Thomas, M., Dahle, C., Esselborn, S., König, R., and Flechtner,
F., 2017. A new high-resolution model of non-tidal atmosphere and ocean mass variability for de-aliasing of satellite gravity
observations: AOD1B RL06. Geophysical Journal International, 211:263–269, doi:10.1093/gji/ggx302.
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- Du, Z., Ge, L., Ng, A. H.-M., and Li, X., 2017. Satellite-based Estimates of Ground Subsidence in Ordos Basin, China.
Journal of Applied Geodesy, 11:9–20, doi:10.1515/jag-2016-0025.
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- Ebead, B., Ahmed, M., Niu, Z., and Huang, N., 2017. Quantifying the anthropogenic impact on groundwater resources of North
China using Gravity Recovery and Climate Experiment data and land surface models. Journal of Applied Remote Sensing,
11(2):026029, doi:10.1117/1.JRS.11.026029.
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- Ellmer, M. and Mayer-Gürr, T., 2017. High precision dynamic orbit integration for spaceborne gravimetry in view of GRACE
Follow-on. Advances in Space Research, 60:1–13, doi:10.1016/j.asr.2017.04.015.
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- Eom, J., Seo, K.-W., and Ryu, D., 2017. Estimation of Amazon River discharge based on EOF analysis of GRACE gravity data.
Remote Sensing of Environment, 191:55–66, doi:10.1016/j.rse.2017.01.011.
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- Eom, J., Seo, K.-W., Lee, C.-K., and Wilson, C. R., 2017. Correlated error reduction in GRACE data over Greenland using
extended empirical orthogonal functions. Journal of Geophysical Research (Solid Earth), 122:5578–5590, doi:10.1002/2017JB014379.
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- Fang, K. and Shen, C., 2017. Full-flow-regime storage-streamflow correlation patterns provide insights into hydrologic functioning
over the continental US. Water Resources Research, 53:8064–8083, doi:10.1002/2016WR020283.
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- Farahani, H. H., Ditmar, P., Inácio, P., Didova, O., Gunter, B., Klees, R., Guo, X., Guo, J., Sun, Y., Liu, X.,
Zhao, Q., and Riva, R., 2017. A high resolution model of linear trend in mass variations from DMT-2: Added value of accounting
for coloured noise in GRACE data. Journal of Geodynamics, 103:12–25, doi:10.1016/j.jog.2016.10.005.
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- Farahani, H. H., Slobbe, D. C., Klees, R., and Seitz, K., 2017. Impact of accounting for coloured noise in radar
altimetry data on a regional quasi-geoid model. Journal of Geodesy, 91:97–112, doi:10.1007/s00190-016-0941-6.
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- Fatolazadeh, F., Naeeni, M. R., Voosoghi, B., and Rahimi, A., 2017. Estimation of fault parameters using GRACE observations
and analytical model. Case study: The 2010 Chile earthquake. Journal of Geodynamics, 108:26–39, doi:10.1016/j.jog.2017.05.004.
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- Felfelani, F., Wada, Y., Longuevergne, L., and Pokhrel, Y. N., 2017. Natural and human-induced terrestrial water storage
change: A global analysis using hydrological models and GRACE. Journal of Hydrology, 553:105–118, doi:10.1016/j.jhydrol.2017.07.048.
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- Forootan, E., Safari, A., Mostafaie, A., Schumacher, M., Delavar, M., and Awange, J. L., 2017. Large-Scale Total Water
Storage and Water Flux Changes over the Arid and Semiarid Parts of the Middle East from GRACE and Reanalysis Products. Surveys
in Geophysics, 38:591–615, doi:10.1007/s10712-016-9403-1.
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- Forootan, E., Kusche, J., Talpe, M., Shum, C. K., and Schmidt, M., 2017. Developing a Complex Independent Component Analysis
(CICA) Technique to Extract Non-stationary Patterns from Geophysical Time Series. Surveys in Geophysics, .
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- Forsberg, R., Sørensen, L., and Simonsen, S., 2017. Greenland and Antarctica Ice Sheet Mass Changes and Effects on
Global Sea Level. Surveys in Geophysics, 38:89–104, doi:10.1007/s10712-016-9398-7.
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- Francis, S. P., Multi-link laser interferometer architecture for a next generation GRACE. Ph.D. Thesis, The Australian
National University (Australia), 2017.
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- Gasparin, F. and Roemmich, D., 2017. The seasonal march of the equatorial Pacific upper-ocean and its El Niño variability.
Progress in Oceanography, 156:1–16, doi:10.1016/j.pocean.2017.05.010.
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- Getirana, A., Kumar, S., Girotto, M., and Rodell, M., 2017. Rivers and Floodplains as Key Components of Global Terrestrial
Water Storage Variability. Geophysical Research Letters, 44:10, doi:10.1002/2017GL074684.
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- Girotto, M., De Lannoy, G. J. M., Reichle, R. H., Rodell, M., Draper, C., Bhanja, S. N., and Mukherjee,
A., 2017. Benefits and pitfalls of GRACE data assimilation: A case study of terrestrial water storage depletion in India.
Geophysical Research Letters, 44:4107–4115, doi:10.1002/2017GL072994.
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- Godah, W., Szelachowska, M., and Krynski, J., 2017. On the analysis of temporal geoid height variations obtained from GRACE-based
GGMs over the area of Poland. Acta Geophysica, 65:713–725, doi:10.1007/s11600-017-0064-3.
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- Godah, W., Szelachowska, M., and Krynski, J., 2017. On the estimation of physical height changes using GRACE satellite mission
data - A case study of Central Europe. Geodesy and Cartography, 66:211–226, doi:10.1515/geocart-2017-0013.
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- Gu, Y., Yuan, L., Fan, D., You, W., and Su, Y., 2017. Seasonal crustal vertical deformation induced by environmental mass
loading in mainland China derived from GPS, GRACE and surface loading models. Advances in Space Research, 59:88–102,
doi:10.1016/j.asr.2016.09.008.
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- Gu, D., Ju, B., Liu, J., and Tu, J., 2017. Enhanced GPS-based GRACE baseline determination by using a new strategy for ambiguity
resolution and relative phase center variation corrections. Acta Astronautica, 138:176–184, doi:10.1016/j.actaastro.2017.05.022.
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- Gu, Y., Fan, D., and You, W., 2017. Comparison of observed and modeled seasonal crustal vertical displacements derived from
multi-institution GPS and GRACE solutions. Geophysical Research Letters, 44:7219–7227, doi:10.1002/2017GL074264.
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- Gurzadyan, V. G., Ciufolini, I., Paolozzi, A., Kashin, A. L., Khachatryan, H. G., Mirzoyan, S., and Sindoni,
G., 2017. Satellites testing general relativity: Residuals versus perturbations. International Journal of Modern Physics
D, 26:1741020, doi:10.1142/S0218271817410206.
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- Hachborn, E., Berg, A., Levison, J., and Ambadan, J. T., 2017. Sensitivity of GRACE-derived estimates of groundwater-level
changes in southern Ontario, Canada. Hydrogeology Journal, 25:2391–2402, doi:10.1007/s10040-017-1612-2.
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- Han, S.-C., 2017. Elastic deformation of the Australian continent induced by seasonal water cycles and the 2010-2011 La Niña
determined using GPS and GRACE. Geophysical Research Letters, 44:2763–2772, doi:10.1002/2017GL072999.
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- Han, J., Tangdamrongsub, N., Hwang, C., and Abidin, H. Z., 2017. Intensified water storage loss by biomass burning in
Kalimantan: Detection by GRACE. Journal of Geophysical Research (Solid Earth), 122:2409–2430, doi:10.1002/2017JB014129.
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- Han, S.-C. and Razeghi, S. M., 2017. GPS Recovery of Daily Hydrologic and Atmospheric Mass Variation: A Methodology and
Results From the Australian Continent. Journal of Geophysical Research (Solid Earth), 122:9328–9343, doi:10.1002/2017JB014603.
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- Hardy, R. A., Nerem, R. S., and Wiese, D. N., 2017. The Impact of Atmospheric Modeling Errors on GRACE Estimates
of Mass Loss in Greenland and Antarctica. Journal of Geophysical Research (Solid Earth), 122(B11):10, doi:10.1002/2017JB014556.
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- Harvey, N., Dunn, C. E., Kruizinga, G. L., and Young, L. E., 2017. Triggering Conditions for GRACE Ranging
Measurement Signal-to-Noise Ratio Dips. Journal of Spacecraft and Rockets, 54:327–330, doi:10.2514/1.A33578.
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- Horvath, I. and Lovell, B. C., 2017. Investigating the Development of Localized Neutral Density Increases During the
24 August 2005 Geomagnetic Storm. Journal of Geophysical Research (Space Physics), 122(A11):11, doi:10.1002/2017JA024362.
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- Hsu, C.-W., A Study of Ocean Mass and Transport with Remote Sensing. Ph.D. Thesis, University of California, Irvine, 2017.
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- Hsu, C.-W. and Velicogna, I., 2017. Detection of sea level fingerprints derived from GRACE gravity data. Geophysical Research
Letters, 44:8953–8961, doi:10.1002/2017GL074070.
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- Huang, C. Y., Huang, Y., Su, Y.-J., Huang, T., and Sutton, E. K., 2017. High-Latitude Neutral Mass Density Maxima.
Journal of Geophysical Research (Space Physics), 122(A11):10, doi:10.1002/2017JA024334.
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- Humphrey, V., Gudmundsson, L., and Seneviratne, S. I., 2017. A global reconstruction of climate-driven subdecadal water
storage variability. Geophysical Research Letters, 44:2300–2309, doi:10.1002/2017GL072564.
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- Ince, E. S. and Pagiatakis, S. D., 2017. GOCE Gradiometer Measurements Response to Ionospheric Dynamics. Journal
of Geophysical Research (Space Physics), 122(A11):10, doi:10.1002/2017JA023890.
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- Iorio, L., 2017. A comment on ``A test of general relativity using the LARES and LAGEOS satellites and a GRACE Earth gravity
model'', by I. Ciufolini et al.. European Physical Journal C, 77:73, doi:10.1140/epjc/s10052-017-4607-1.
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- Jiang, Weiping, Yuan, Peng, Chen, Hua, Cai, Jianqing, Li, Zhao, Chao, Nengfang, and Sneeuw, Nico, 2017. Annual variations
of monsoon and drought detected by GPS: A case study in Yunnan, China. Scientific Reports, 7:5874, doi:10.1038/s41598-017-06095-1.
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- Jin, S., Zhang, T. Y., and Zou, F., 2017. Glacial density and GIA in Alaska estimated from ICESat, GPS and GRACE measurements.
Journal of Geophysical Research (Earth Surface), 122:76–90, doi:10.1002/2016JF003926.
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- Jung, H. C., Getirana, A., Policelli, F., McNally, A., Arsenault, K. R., Kumar, S., Tadesse, T., and Peters-Lidard,
C. D., 2017. Upper Blue Nile basin water budget from a multi-model perspective. Journal of Hydrology, 555:535–546,
doi:10.1016/j.jhydrol.2017.10.040.
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- Khaki, M., Schumacher, M., Forootan, E., Kuhn, M., Awange, J. L., and van Dijk, A. I. J. M., 2017. Accounting
for spatial correlation errors in the assimilation of GRACE into hydrological models through localization. Advances in
Water Resources, 108:99–112, doi:10.1016/j.advwatres.2017.07.024.
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- Khaki, M., Hoteit, I., Kuhn, M., Awange, J., Forootan, E., van Dijk, A. I. J. M., Schumacher, M., and Pattiaratchi,
C., 2017. Assessing sequential data assimilation techniques for integrating GRACE data into a hydrological model. Advances
in Water Resources, 107:301–316, doi:10.1016/j.advwatres.2017.07.001.
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- Khaki, M., Ait-El-Fquih, B., Hoteit, I., Forootan, E., Awange, J., and Kuhn, M., 2017. A two-update ensemble Kalman filter
for land hydrological data assimilation with an uncertain constraint. Journal of Hydrology, 555:447–462, doi:10.1016/j.jhydrol.2017.10.032.
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- Kleinherenbrink, M., Riva, R., Frederikse, T., Merrifield, M., and Wada, Y., 2017. Trends and interannual variability of mass
and steric sea level in the Tropical Asian Seas. Journal of Geophysical Research (Oceans), 122:6254–6276, doi:10.1002/2017JC012792.
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- Kuppel, S., Fan, Y., and Jobbágy, E. G., 2017. Seasonal hydrologic buffer on continents: Patterns, drivers and
ecological benefits. Advances in Water Resources, 102:178–187, doi:10.1016/j.advwatres.2017.01.004.
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- Li, K., Zhou, X., Guo, N., Zhao, G., Xu, K., and Lei, W., 2017. Comparison of precise orbit determination methods of zero-difference
kinematic, dynamic and reduced-dynamic of GRACE-A satellite using SHORDE software. Journal of Applied Geodesy, 11:157–165,
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- Li, H., Reubelt, T., Antoni, M., and Sneeuw, N., 2017. Gravity field error analysis for pendulum formations by a semi-analytical
approach. Journal of Geodesy, 91:233–251, doi:10.1007/s00190-016-0958-x.
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- Li, J., Chen, J., Li, Z., Wang, S.-Y., and Hu, X., 2017. Ellipsoidal Correction in GRACE Surface Mass Change Estimation. Journal
of Geophysical Research (Solid Earth), 122:9437–9460, doi:10.1002/2017JB014033.
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- Liau, J.-R. and Chao, B. F., 2017. Variation of Antarctic circumpolar current and its intensification in relation to
the southern annular mode detected in the time-variable gravity signals by GRACE satellite. Earth, Planets, and Space,
69:93, doi:10.1186/s40623-017-0678-3.
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- Long, D., Pan, Y., Zhou, J., Chen, Y., Hou, X., Hong, Y., Scanlon, B. R., and Longuevergne, L., 2017. Global analysis
of spatiotemporal variability in merged total water storage changes using multiple GRACE products and global hydrological
models. Remote Sensing of Environment, 192:198–216, doi:10.1016/j.rse.2017.02.011.
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- Loomis, B. D. and Luthcke, S. B., 2017. Mass evolution of Mediterranean, Black, Red, and Caspian Seas from GRACE
and altimetry: accuracy assessment and solution calibration. Journal of Geodesy, 91:195–206, doi:10.1007/s00190-016-0952-3.
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- López, O., Houborg, R., and McCabe, M. F., 2017. Evaluating the hydrological consistency of evaporation products
using satellite-based gravity and rainfall data. Hydrology and Earth System Sciences, 21:323–343, doi:10.5194/hess-21-323-2017.
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- Luo, W., Zhu, Z., Xiong, C., and Chang, S., 2017. The Response of Equatorial Ionization Anomaly in 120\degE to the Geomagnetic
Storm of 18 August 2003 at Different Altitudes From Multiple Satellite Observations. Space Weather, 15:1588–1601,
doi:10.1002/2017SW001710.
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- Lv, M., Ma, Z., Yuan, X., Lv, M., Li, M., and Zheng, Z., 2017. Water budget closure based on GRACE measurements and reconstructed
evapotranspiration using GLDAS and water use data for two large densely-populated mid-latitude basins. Journal of Hydrology,
547:585–599, doi:10.1016/j.jhydrol.2017.02.027.
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- Ma, S., Wu, Q., Wang, J., and Zhang, S., 2017. Temporal Evolution of Regional Drought Detected from GRACE TWSA and CCI SM
in Yunnan Province, China. Remote Sensing, 9:1124, doi:10.3390/rs9111124.
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- Männel, B. and Rothacher, M., 2017. Geocenter variations derived from a combined processing of LEO- and ground-based
GPS observations. Journal of Geodesy, 91:933–944, doi:10.1007/s00190-017-0997-y.
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- Mao, X., Visser, P. N. A. M., and van den IJssel, J., 2017. Impact of GPS antenna phase center and code residual
variation maps on orbit and baseline determination of GRACE. Advances in Space Research, 59:2987–3002, doi:10.1016/j.asr.2017.03.019.
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- McCabe, M. F., Rodell, M., Alsdorf, D. E., Miralles, D. G., Uijlenhoet, R., Wagner, W., Lucieer, A., Houborg,
R., Verhoest, N. E. C., Franz, T. E., Shi, J., Gao, H., and Wood, E. F., 2017. The future of Earth observation
in hydrology. Hydrology and Earth System Sciences, 21:3879–3914, doi:10.5194/hess-21-3879-2017.
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- Mehta, P. M., Walker, A. C., Sutton, E. K., and Godinez, H. C., 2017. New density estimates derived using
accelerometers on board the CHAMP and GRACE satellites. Space Weather, 15:558–576, doi:10.1002/2016SW001562.
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- Mehta, P. M. and Linares, R., 2017. A methodology for reduced order modeling and calibration of the upper atmosphere.
Space Weather, 15:1270–1287, doi:10.1002/2017SW001642.
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- Melzer, B. A. and Subrahmanyam, B., 2017. Evaluation of GRACE Mascon Gravity Solution in Relation to Interannual Oceanic
Water Mass Variations. IEEE Transactions on Geoscience and Remote Sensing, 55:907–914, doi:10.1109/TGRS.2016.2616760.
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- Meyrath, T., Rebischung, P., and van Dam, T., 2017. GRACE era variability in the Earth's oblateness: a comparison of estimates
from six different sources. Geophysical Journal International, 208:1126–1138, doi:10.1093/gji/ggw441.
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- Meyrath, T., van Dam, T., Collilieux, X., and Rebischung, P., 2017. Seasonal low-degree changes in terrestrial water mass
load from global GNSS measurements. Journal of Geodesy, 91:1329–1350, doi:10.1007/s00190-017-1028-8.
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- Mircheva, B., Tsekov, M., Meyer, U., and Guerova, G., 2017. Anomalies of hydrological cycle components during the 2007 heat
wave in Bulgaria. Journal of Atmospheric and Solar-Terrestrial Physics, 165:1–9, doi:10.1016/j.jastp.2017.10.005.
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- Mishra, U. N. and Ghosh, J. K., 2017. Development of a Geoid Model by Geometric Method. Journal of The Institution
of Engineers (India): Series A, 98:437–442, doi:10.1007/s40030-017-0250-y.
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- Mitsui, Y. and Yamada, K., 2017. Possible correlation between annual gravity change and shallow background seismicity rate
at subduction zone by surface load. Earth, Planets, and Space, 69:166, doi:10.1186/s40623-017-0753-9.
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- Montecino, H. D., de Freitas, S. R. C., Báez, J. C., and Ferreira, V. G., 2017. Effects on
Chilean Vertical Reference Frame due to the Maule Earthquake co-seismic and post-seismic effects. Journal of Geodynamics,
112:22–30, doi:10.1016/j.jog.2017.07.006.
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- Mu, D., Yan, H., Feng, W., and Peng, P., 2017. GRACE leakage error correction with regularization technique: Case studies
in Greenland and Antarctica. Geophysical Journal International, 208:1775–1786, doi:10.1093/gji/ggw494.
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- Naeimi, M. and Flury, J. (editors), 2017. Global Gravity Field Modeling from Satellite-to-Satellite Tracking Data, Lecture
Notes in Earth System Sciences, Lecture Notes in Earth System Sciences, pp. 168, Springer, Berlin, Heidelberg.
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- Ni, S., Chen, J., Wilson, C., and Hu, X., 2017. Long-Term Water Storage Changes of Lake Volta from GRACE and Satellite Altimetry
and Connections with Regional Climate. Remote Sensing, 9:842, doi:10.3390/rs9080842.
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- Oliveira, D. M., Zesta, E., Schuck, P. W., and Sutton, E. K., 2017. Thermosphere Global Time Response to Geomagnetic
Storms Caused by Coronal Mass Ejections. Journal of Geophysical Research (Space Physics), 122(A11):10, doi:10.1002/2017JA024006.
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- Pan, Y., Zhang, C., Gong, H., Yeh, P. J.-F., Shen, Y., Guo, Y., Huang, Z., and Li, X., 2017. Detection of human-induced
evapotranspiration using GRACE satellite observations in the Haihe River basin of China. Geophysical Research Letters,
44:190–199, doi:10.1002/2016GL071287.
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- Pavlis, N. K. and Weiss, M. A., 2017. A re-evaluation of the relativistic redshift on frequency standards at NIST,
Boulder, Colorado, USA. Metrologia, 54:535, doi:10.1088/1681-7575/aa765c.
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- Peidou, A. C., Fotopoulos, G., and Pagiatakis, S., 2017. On the feasibility of using satellite gravity observations for
detecting large-scale solid mass transfer events. Journal of Geodesy, .
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- Peralta-Ferriz, C. and Woodgate, R. A., 2017. The Dominant Role of the East Siberian Sea in Driving the Oceanic Flow
Through the Bering Strait—Conclusions From GRACE Ocean Mass Satellite Data and In Situ Mooring Observations Between
2002 and 2016. Geophysical Research Letters, 44:11, doi:10.1002/2017GL075179.
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- Pohl, E., Gloaguen, R., Andermann, C., and Knoche, M., 2017. Glacier melt buffers river runoff in the Pamir Mountains. Water
Resources Research, 53:2467–2489, doi:10.1002/2016WR019431.
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- Rahimi, A. and Shahrisvand, M., 2017. Co-Seismic Gravity Gradient Changes of the 2006-2007 Great Earthquakes in the Central
Kuril Islands from GRACE Observations. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial
Information Sciences, 42W4:517–522, doi:10.5194/isprs-archives-XLII-4-W4-517-2017.
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- Sørensen, L. S., Jarosch, A. H., Aðalgeirsdóttir, G., Barletta, V. R., Forsberg, R., Pálsson,
F., Björnsson, H., and Jóhannesson, T., 2017. The effect of signal leakage and glacial isostatic rebound on GRACE-derived
ice mass changes in Iceland. Geophysical Journal International, 209:226–233, doi:10.1093/gji/ggx008.
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- Sai Gowtam, V. and Tulasi Ram, S., 2017. An Artificial Neural Network-Based Ionospheric Model to Predict N$_m$F$_2$ and h$_m$F$_2$
Using Long-Term Data Set of FORMOSAT-3/COSMIC Radio Occultation Observations: Preliminary Results. Journal of Geophysical
Research (Space Physics), 122(A11):11, doi:10.1002/2017JA024795.
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- Sasgen, I., Martín-Español, A., Horvath, A., Klemann, V., Petrie, E. J., Wouters, B., Horwath, M., Pail,
R., Bamber, J. L., Clarke, P. J., Konrad, H., and Drinkwater, M. R., 2017. Joint inversion estimate of regional
glacial isostatic adjustment in Antarctica considering a lateral varying Earth structure (ESA STSE Project REGINA). Geophysical
Journal International, 211:1534–1553, doi:10.1093/gji/ggx368.
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- Sastry, R. G. and Sonker, M. K., 2017. 3-D GRACE gravity model for the 2011 Japan earthquake. Journal of Earth
System Science, 126:4, doi:10.1007/s12040-016-0781-z.
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- Seyoum, W. M. and Milewski, A. M., 2017. Improved methods for estimating local terrestrial water dynamics from GRACE
in the Northern High Plains. Advances in Water Resources, 110:279–290, doi:10.1016/j.advwatres.2017.10.021.
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- Shafiei Joud, M. S., Sjöberg, L. E., and Bagherbandi, M., 2017. Use of GRACE data to detect the present land
uplift rate in Fennoscandia. Geophysical Journal International, 209:909–922, doi:10.1093/gji/ggx063.
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- Shamsudduha, M., Taylor, R. G., Jones, D., Longuevergne, L., Owor, M., and Tindimugaya, C., 2017. Recent changes in terrestrial
water storage in the Upper Nile Basin: an evaluation of commonly used gridded GRACE products. Hydrology and Earth System
Sciences, 21:4533–4549, doi:10.5194/hess-21-4533-2017.
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- Sharifi, M. A. and Shahamat, A., 2017. Detection of co-seismic earthquake gravity field signals using GRACE-like mission
simulations. Advances in Space Research, 59:2623–2635, doi:10.1016/j.asr.2017.02.031.
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- Sheng, C., Lu, G., Solomon, S. C., Wang, W., Doornbos, E., Hunt, L. A., and Mlynczak, M. G., 2017. Thermospheric
recovery during the 5 April 2010 geomagnetic storm. Journal of Geophysical Research (Space Physics), 122:4588–4599,
doi:10.1002/2016JA023520.
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- Shi, Y., Zesta, E., Connor, H. K., Su, Y.-J., Sutton, E. K., Huang, C. Y., Ober, D. M., Christodoulou,
C., Delay, S., and Oliveira, D. M., 2017. High-Latitude Thermosphere Neutral Density Response to Solar Wind Dynamic Pressure
Enhancement. Journal of Geophysical Research (Space Physics), 122(A11):11, doi:10.1002/2017JA023889.
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- Simon, K. M., Riva, R. E. M., Kleinherenbrink, M., and Tangdamrongsub, N., 2017. A data-driven model for constraint
of present-day glacial isostatic adjustment in North America. Earth and Planetary Science Letters, 474:322–333,
doi:10.1016/j.epsl.2017.06.046.
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- Singh, A. K., Jasrotia, A. S., Taloor, A. K., Kotlia, B. S., Kumar, V., Roy, S., Ray, P. K. C.,
Singh, K. K., Singh, A. K., and Sharma, A. K., 2017. Estimation of quantitative measures of total water storage
variation from GRACE and GLDAS-NOAH satellites using geospatial technology. Quaternary International, 444:191–200,
doi:10.1016/j.quaint.2017.04.014.
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- Sinha, D., Syed, T. H., Famiglietti, J. S., Reager, J. T., and Thomas, R. C., 2017. Characterizing Drought
in India Using GRACE Observations of Terrestrial Water Storage Deficit. Journal of Hydrometeorology, 18:381–396,
doi:10.1175/JHM-D-16-0047.1.
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- Solander, Kurt C., Reager, John T., Wada, Yoshihide, Famiglietti, James S., and Middleton, Richard S., 2017. GRACE satellite
observations reveal the severity of recent water over-consumption in the United States. Scientific Reports, 7:8723,
doi:10.1038/s41598-017-07450-y.
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- Steger, C. R., Reijmer, C. H., and van den Broeke, M. R., 2017. The modelled liquid water balance of the Greenland
Ice Sheet. The Cryosphere, 11:2507–2526, doi:10.5194/tc-11-2507-2017.
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- Sun, Y., Ditmar, P., and Riva, R., 2017. Statistically optimal estimation of degree-1 and C$_20$ coefficients based on GRACE
data and an ocean bottom pressure model. Geophysical Journal International, 210:1305–1322, doi:10.1093/gji/ggx241.
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- Sun, Z., Zhu, X., Pan, Y., and Zhang, J., 2017. Assessing Terrestrial Water Storage and Flood Potential Using GRACE Data in
the Yangtze River Basin, China. Remote Sensing, 9:1011, doi:10.3390/rs9101011.
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- Sun, A., Scanlon, B., AghaKouchak, A., and Zhang, Z., 2017. Using GRACE Satellite Gravimetry for Assessing Large-Scale Hydrologic
Extremes. Remote Sensing, 9:1287, doi:10.3390/rs9121287.
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- Talpe, M. J., Nerem, R. S., Forootan, E., Schmidt, M., Lemoine, F. G., Enderlin, E. M., and Landerer,
F. W., 2017. Ice mass change in Greenland and Antarctica between 1993 and 2013 from satellite gravity measurements. Journal
of Geodesy, 91:1283–1298, doi:10.1007/s00190-017-1025-y.
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- Talpe, M. J., Extending the Record of Time-Variable Gravity by Combining GRACE and Conventional Tracking Data. Ph.D.
Thesis, University of Colorado at Boulder, 2017.
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- Tang, Y., Hooshyar, M., Zhu, T., Ringler, C., Sun, A. Y., Long, D., and Wang, D., 2017. Reconstructing annual groundwater
storage changes in a large-scale irrigation region using GRACE data and Budyko model. Journal of Hydrology, 551:397–406,
doi:10.1016/j.jhydrol.2017.06.021.
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- Tangdamrongsub, N., Steele-Dunne, S. C., Gunter, B. C., Ditmar, P. G., Sutanudjaja, E. H., Sun, Y., Xia,
T., and Wang, Z., 2017. Improving estimates of water resources in a semi-arid region by assimilating GRACE data into the PCR-GLOBWB
hydrological model. Hydrology and Earth System Sciences, 21:2053–2074, doi:10.5194/hess-21-2053-2017.
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- Thomas, B. F., Famiglietti, J. S., Landerer, F. W., Wiese, D. N., Molotch, N. P., and Argus, D. F.,
2017. GRACE Groundwater Drought Index: Evaluation of California Central Valley groundwater drought. Remote Sensing of Environment,
198:384–392, doi:10.1016/j.rse.2017.06.026.
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- Thomas, B. F., Caineta, J., and Nanteza, J., 2017. Global Assessment of Groundwater Sustainability Based On Storage Anomalies.
Geophysical Research Letters, 44:11, doi:10.1002/2017GL076005.
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- Tian, S., Tregoning, P., Renzullo, L. J., van Dijk, A. I. J. M., Walker, J. P., Pauwels, V. R. N.,
and Allgeyer, S., 2017. Improved water balance component estimates through joint assimilation of GRACE water storage and SMOS
soil moisture retrievals. Water Resources Research, 53:1820–1840, doi:10.1002/2016WR019641.
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- Tseng, T.-P., Hwang, C., Sosnica, K., Kuo, C.-Y., Liu, Y.-C., and Yeh, W.-H., 2017. Geocenter motion estimated from GRACE
orbits: The impact of F10.7 solar flux. Advances in Space Research, 59:2819–2830, doi:10.1016/j.asr.2016.02.003.
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- van Dam, T., Francis, O., Wahr, J., Khan, S. A., Bevis, M., and van den Broeke, M. R., 2017. Using GPS and absolute
gravity observations to separate the effects of present-day and Pleistocene ice-mass changes in South East Greenland. Earth
and Planetary Science Letters, 459:127–135, doi:10.1016/j.epsl.2016.11.014.
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- van der Wal, W. and IJpelaar, T., 2017. The effect of sediment loading in Fennoscandia and the Barents Sea during the last
glacial cycle on glacial isostatic adjustment observations. Solid Earth, 8:955–968, doi:10.5194/se-8-955-2017.
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- Van Loon, A. F., Kumar, R., and Mishra, V., 2017. Testing the use of standardised indices and GRACE satellite data to
estimate the European 2015 groundwater drought in near-real time. Hydrology and Earth System Sciences, 21:1947–1971,
doi:10.5194/hess-21-1947-2017.
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- Vishwakarma, B. D., Horwath, M., Devaraju, B., Groh, A., and Sneeuw, N., 2017. A Data-Driven Approach for Repairing the
Hydrological Catchment Signal Damage Due to Filtering of GRACE Products. Water Resources Research, 53:9824–9844,
doi:10.1002/2017WR021150.
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- Voosen, P., 2017. Death watch for climate probe. Science, 357:1225–1225, doi:10.1126/science.357.6357.1225-a.
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- Wang, S., Panet, I., Ramillien, G., and Guilloux, F., 2017. Multi-scale modeling of Earth's gravity field in space and time.
Journal of Geodynamics, 106:46–65, doi:10.1016/j.jog.2017.02.001.
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- Wang, S., Zhou, F., and Russell, H., 2017. Estimating Snow Mass and Peak River Flows for the Mackenzie River Basin Using GRACE
Satellite Observations. Remote Sensing, 9:256, doi:10.3390/rs9030256.
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- Wang, Z., Hamilton, J., and Su, J., 2017. Variations in freshwater pathways from the Arctic Ocean into the North Atlantic
Ocean. Progress in Oceanography, 155:54–73, doi:10.1016/j.pocean.2017.05.012.
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- Wang, L., Chen, C., Du, J., and Wang, T., 2017. Detecting seasonal and long-term vertical displacement in the North China
Plain using GRACE and GPS. Hydrology and Earth System Sciences, 21:2905–2922, doi:10.5194/hess-21-2905-2017.
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- Wang, H.-b., Xiong, Y.-q., and Zhao, C.-y., 2017. New Calibration Method of Accelerometers in GRACE Satellites Based on Precise
Solar Radiation Model. Chinese Astronomy and Astrophysics, 41:558–576, doi:10.1016/j.chinastron.2017.11.007.
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- Weng, L., Lei, J., Sutton, E., Dou, X., and Fang, H., 2017. An exospheric temperature model from CHAMP thermospheric density.
Space Weather, 15:343–351, doi:10.1002/2016SW001577.
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- Werth, S., White, D., and Bliss, D. W., 2017. GRACE Detected Rise of Groundwater in the Sahelian Niger River Basin. Journal
of Geophysical Research (Solid Earth), 122(B11):10, doi:10.1002/2017JB014845.
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- Winska, M., Nastula, J., and Salstein, D., 2017. Hydrological excitation of polar motion by different variables from the GLDAS
models. Journal of Geodesy, 91:1461–1473, doi:10.1007/s00190-017-1036-8.
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- Wu, X., Kusche, J., and Landerer, F. W., 2017. A new unified approach to determine geocentre motion using space geodetic
and GRACE gravity data. Geophysical Journal International, 209:1398–1402, doi:10.1093/gji/ggx086.
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- Wu, Y., Zhao, Q., Zhang, B., and Wu, W., 2017. Characterizing the Seasonal Crustal Motion in Tianshan Area Using GPS, GRACE
and Surface Loading Models. Remote Sensing, 9:1303, doi:10.3390/rs9121303.
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- Xiao, M., Koppa, A., Mekonnen, Z., Pagán, B. R., Zhan, S., Cao, Q., Aierken, A., Lee, H., and Lettenmaier, D. P.,
2017. How much groundwater did California's Central Valley lose during the 2012-2016 drought?. Geophysical Research Letters,
44:4872–4879, doi:10.1002/2017GL073333.
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- Xing, L., Wang, L., and Hu, M., 2017. Determination of mantle upwelling rate beneath Taiyuan basin by using absolute gravity,
GPS, groundwater and GLDAS data. Journal of Applied Geophysics, 138:179–184, doi:10.1016/j.jappgeo.2017.01.026.
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- Xu, C., Su, X., Liu, T., and Sun, W., 2017. Geodetic observations of the co- and post-seismic deformation of the 2013 Okhotsk
Sea deep-focus earthquake. Geophysical Journal International, 209:1924–1933, doi:10.1093/gji/ggx123.
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- Yang, P., Xia, J., Zhan, C., Qiao, Y., and Wang, Y., 2017. Monitoring the spatio-temporal changes of terrestrial water storage
using GRACE data in the Tarim River basin between 2002 and 2015. Science of the Total Environment, 595:218–228,
doi:10.1016/j.scitotenv.2017.03.268.
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- Yang, F., Kusche, J., Forootan, E., and Rietbroek, R., 2017. Passive-ocean radial basis function approach to improve temporal
gravity recovery from GRACE observations. Journal of Geophysical Research (Solid Earth), 122:6875–6892, doi:10.1002/2016JB013633.
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- Yi, S., Heki, K., and Qian, A., 2017. Acceleration in the Global Mean Sea Level Rise: 2005-2015. Geophysical Research Letters,
44(23):11,905–11,913, doi:10.1002/2017GL076129.
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- Yi, S., Song, C., Wang, Q., Wang, L., Heki, K., and Sun, W., 2017. The potential of GRACE gravimetry to detect the heavy rainfall-induced
impoundment of a small reservoir in the upper Yellow River. Water Resources Research, 53:6562–6578, doi:10.1002/2017WR020793.
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- Youm, K., Seo, K.-W., Jeon, T., Na, S.-H., Chen, J., and Wilson, C. R., 2017. Ice and groundwater effects on long term
polar motion (1979–2010). Journal of Geodynamics, 106:66–73, doi:10.1016/j.jog.2017.01.008.
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- Zhan, W., Li, F., Hao, W., and Yan, J., 2017. Regional characteristics and influencing factors of seasonal vertical crustal
motions in Yunnan, China. Geophysical Journal International, 210:1295–1304, doi:10.1093/gji/ggx246.
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- Zhang, L., Dobslaw, H., Stacke, T., Güntner, A., Dill, R., and Thomas, M., 2017. Validation of terrestrial water storage
variations as simulated by different global numerical models with GRACE satellite observations. Hydrology and Earth System
Sciences, 21:821–837, doi:10.5194/hess-21-821-2017.
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- Zhang, B., Liu, L., Khan, S. A., van Dam, T., Zhang, E., and Yao, Y., 2017. Transient Variations in Glacial Mass Near
Upernavik Isstrøm (West Greenland) Detected by the Combined Use of GPS and GRACE Data. Journal of Geophysical Research
(Solid Earth), 122(B11):10, doi:10.1002/2017JB014529.
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- Zhao, Q., Wu, W., and Wu, Y., 2017. Using combined GRACE and GPS data to investigate the vertical crustal deformation at the
northeastern margin of the Tibetan Plateau. Journal of Asian Earth Sciences, 134:122–129, doi:10.1016/j.jseaes.2016.11.010.
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- Zhao, M., A, G., Velicogna, I., and Kimball, J. S., 2017. A Global Gridded Dataset of GRACE Drought Severity Index for
2002-14: Comparison with PDSI and SPEI and a Case Study of the Australia Millennium Drought. Journal of Hydrometeorology,
18:2117–2129, doi:10.1175/JHM-D-16-0182.1.
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- Zhao, M., A, G., Velicogna, I., and Kimball, J. S., 2017. Satellite Observations of Regional Drought Severity in the
Continental United States Using GRACE-Based Terrestrial Water Storage Changes. Journal of Climate, 30:6297–6308,
doi:10.1175/JCLI-D-16-0458.1.
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- Zhao, K. and Li, X., 2017. Estimating terrestrial water storage changes in the Tarim River Basin using GRACE data. Geophysical
Journal International, 211:1449–1460, doi:10.1093/gji/ggx378.
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- Zhou, H., Luo, Z., Zhou, Z., Zhong, B., and Hsu, H., 2017. HUST-Grace2016s: A new GRACE static gravity field model derived
from a modified dynamic approach over a 13-year observation period. Advances in Space Research, 60:597–611, doi:10.1016/j.asr.2017.04.026.
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- Adhikari, S. and Ivins, E. R., 2016. Climate-driven polar motion: 2003-2015. Science Advances, 2(4):e1501693–e1501693,
doi:10.1126/sciadv.1501693.
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- Ahmed, M., Sultan, M., Yan, E., and Wahr, J., 2016. Assessing and Improving Land Surface Model Outputs Over Africa Using GRACE,
Field, and Remote Sensing Data. Surveys in Geophysics, 37:529–556, doi:10.1007/s10712-016-9360-8.
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- Alexander, P. M., Tedesco, M., Schlegel, N.-J., Luthcke, S. B., Fettweis, X., and Larour, E., 2016. Greenland Ice
Sheet seasonal and spatial mass variability from model simulations and GRACE (2003-2012). The Cryosphere, 10:1259–1277,
doi:10.5194/tc-10-1259-2016.
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- Allende-Alba, G. and Montenbruck, O., 2016. Robust and precise baseline determination of distributed spacecraft in LEO. Advances
in Space Research, 57:46–63, doi:10.1016/j.asr.2015.09.034.
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- Aoyama, Y., Doi, K., Ikeda, H., Hayakawa, H., and Shibuya, K., 2016. Five years' gravity observation with the superconducting
gravimeter OSG\#058 at Syowa Station, East Antarctica: Gravitational effects of accumulated snow mass. Geophysical Journal
International, .
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- Armitage, T. W. K., Bacon, S., Ridout, A. L., Thomas, S. F., Aksenov, Y., and Wingham, D. J., 2016.
Arctic sea surface height variability and change from satellite radar altimetry and GRACE, 2003-2014. Journal of Geophysical
Research (Oceans), 121:4303–4322, doi:10.1002/2015JC011579.
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- Awange, J. L., Khandu, Schumacher, M., Forootan, E., and Heck, B., 2016. Exploring hydro-meteorological drought patterns
over the Greater Horn of Africa (1979-2014) using remote sensing and reanalysis products. Advances in Water Resources,
94:45–59, doi:10.1016/j.advwatres.2016.04.005.
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- Beamer, J. P., Hill, D. F., Arendt, A., and Liston, G. E., 2016. High-resolution modeling of coastal freshwater
discharge and glacier mass balance in the Gulf of Alaska watershed. Water Resources Research, 52:3888–3909, doi:10.1002/2015WR018457.
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- Bender, P. L. and Betts, C. R., 2016. Ocean calibration approach for data from the GRACE Follow-On mission. Journal
of Geophysical Research (Solid Earth), 121:1218–1235, doi:10.1002/2015JB012433.
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- Bergmann-Wolf, I., 2016. Oceanographic application of GRACE gravity data on global and regional scales, pp. 140, Berlin.
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- Bezdek, A., Sebera, J., Teixeira da Encarnação, J., and Klokocn\'ık, J., 2016. Time-variable gravity fields
derived from GPS tracking of Swarm. Geophysical Journal International, 205:1665–1669, doi:10.1093/gji/ggw094.
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- Bhanja, S. N., Mukherjee, A., Saha, D., Velicogna, I., and Famiglietti, J. S., 2016. Validation of GRACE based groundwater
storage anomaly using in-situ groundwater level measurements in India. Journal of Hydrology, 543:729–738, doi:10.1016/j.jhydrol.2016.10.042.
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- Bobojc, A., 2016. Comparison of Selected Geopotential Models in Terms of the GOCE Orbit Determination Using Simulated GPS
Observations. Acta Geophysica, 64:2761–2780, doi:10.1515/acgeo-2016-0115.
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- Bouman, J., Ebbing, J., Fuchs, M., Sebera, J., Lieb, V., Szwillus, W., Haagmans, R., and Novak, P., 2016. Satellite gravity
gradient grids for geophysics. Scientific Reports, 6:21050, doi:10.1038/srep21050.
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- Calabia, A. and Jin, S., 2016. New modes and mechanisms of thermospheric mass density variations from GRACE accelerometers.
Journal of Geophysical Research (Space Physics), 121(A10):11, doi:10.1002/2016JA022594.
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- Castellazzi, P., Martel, R., Rivera, A., Huang, J., Pavlic, G., Calderhead, A. I., Chaussard, E., Garfias, J., and Salas,
J., 2016. Groundwater depletion in Central Mexico: Use of GRACE and InSAR to support water resources management. Water
Resources Research, 52:5985–6003, doi:10.1002/2015WR018211.
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- Castle, S. L., Reager, J. T., Thomas, B. F., Purdy, A. J., Lo, M.-H., Famiglietti, J. S., and Tang,
Q., 2016. Remote detection of water management impacts on evapotranspiration in the Colorado River Basin. Geophysical Research
Letters, 43:5089–5097, doi:10.1002/2016GL068675.
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- Cesare, S., Allasio, A., Anselmi, A., Dionisio, S., Mottini, S., Parisch, M., Massotti, L., and Silvestrin, P., 2016. The
European way to gravimetry: From GOCE to NGGM. Advances in Space Research, 57:1047–1064, doi:10.1016/j.asr.2015.12.012.
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- Chao, N., Wang, Z., Jiang, W., and Chao, D., 2016. A quantitative approach for hydrological drought characterization in southwestern
China using GRACE. Hydrogeology Journal, 24:893–903, doi:10.1007/s10040-015-1362-y.
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- Chao, B. F., 2016. Caveats on the equivalent water thickness and surface mascon solutions derived from the GRACE satellite-observed
time-variable gravity. Journal of Geodesy, 90:807–813, doi:10.1007/s00190-016-0912-y.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Scanlon, B., and Güntner, A., 2016. Long-term groundwater storage
change in Victoria, Australia from satellite gravity and in situ observations. Global and Planetary Change, 139:56–65,
doi:10.1016/j.gloplacha.2016.01.002.
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- Chen, J., Famigliett, J. S., Scanlon, B. R., and Rodell, M., 2016. Groundwater Storage Changes: Present Status from
GRACE Observations. Surveys in Geophysics, 37:397–417, doi:10.1007/s10712-015-9332-4.
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- Chen, J. L., Wilson, C. R., and Ries, J. C., 2016. Broadband assessment of degree-2 gravitational changes from
GRACE and other estimates, 2002-2015. Journal of Geophysical Research (Solid Earth), 121:2112–2128, doi:10.1002/2015JB012708.
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- Chen, Q., Shen, Y., Chen, W., Zhang, X., and Hsu, H., 2016. An improved GRACE monthly gravity field solution by modeling the
non-conservative acceleration and attitude observation errors. Journal of Geodesy, 90:503–523, doi:10.1007/s00190-016-0889-6.
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- Cherniak, I. and Zakharenkova, I., 2016. High-latitude ionospheric irregularities: differences between ground- and space-based
GPS measurements during the 2015 St. Patrick's Day storm. Earth, Planets, and Space, 68:136, doi:10.1186/s40623-016-0506-1.
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- Ciufolini, I., Paolozzi, A., Pavlis, E. C., Koenig, R., Ries, J., Gurzadyan, V., Matzner, R., Penrose, R., Sindoni, G.,
Paris, C., Khachatryan, H., and Mirzoyan, S., 2016. A test of general relativity using the LARES and LAGEOS satellites and
a GRACE Earth gravity model. Measurement of Earth's dragging of inertial frames. European Physical Journal C, 76:120,
doi:10.1140/epjc/s10052-016-3961-8.
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- Dahle, Christoph, Gruber, Christian, Fagiolini, Elisa, and Flechtner, Frank, 2016. Gravity Field Mapping from GRACE: Different
Approaches---Same Results?. In Sneeuw, Nico, Novák, Pavel, Crespi, Mattia, and Sansò, Fernando (editors), VIII
Hotine-Marussi Symposium on Mathematical Geodesy, pp. 165–175, Springer International Publishing, Cham.
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- Dai, C., Shum, C. K., Guo, J., Shang, K., Tapley, B., and Wang, R., 2016. Improved source parameter constraints for five
undersea earthquakes from north component of GRACE gravity and gravity gradient change measurements. Earth and Planetary
Science Letters, 443:118–128, doi:10.1016/j.epsl.2016.03.025.
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- Daras, I., 2016. Gravity field processing towards future LL-SST satellite missions, Deutsche Geod. Kommission, Reihe
C 770, pp. 139, Bayer. Akademie der Wissenschaften, Munich.
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- Didova, O., Gunter, B., Riva, R., Klees, R., and Roese-Koerner, L., 2016. An approach for estimating time-variable rates from
geodetic time series. Journal of Geodesy, 90:1207–1221, doi:10.1007/s00190-016-0918-5.
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- Dobslaw, H., Bergmann-Wolf, I., Forootan, E., Dahle, C., Mayer-Gürr, T., Kusche, J., and Flechtner, F., 2016. Modeling
of present-day atmosphere and ocean non-tidal de-aliasing errors for future gravity mission simulations. Journal of Geodesy,
90:423–436, doi:10.1007/s00190-015-0884-3.
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- Dutt Vishwakarma, B., Devaraju, B., and Sneeuw, N., 2016. Minimizing the effects of filtering on catchment scale GRACE solutions.
Water Resources Research, 52:5868–5890, doi:10.1002/2016WR018960.
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- Eicker, A., Forootan, E., Springer, A., Longuevergne, L., and Kusche, J., 2016. Does GRACE see the terrestrial water cycle
''intensifying''?. Journal of Geophysical Research (Atmospheres), 121:733–745, doi:10.1002/2015JD023808.
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- Eicker, A. and Springer, A., 2016. Monthly and sub-monthly hydrological variability: in-orbit validation by GRACE level 1B
observations. Journal of Geodesy, 90:573–584, doi:10.1007/s00190-016-0895-8.
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- Esselborn, Saskia, Schöne, Tilo, and Rudenko, Sergei, 2016. Impact of Time Variable Gravity on Annual Sea Level Variability
from Altimetry. In Rizos, Chris and Willis, Pascal (editors), IAG 150 Years, pp. 55–62, Springer International
Publishing, Cham.
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- Fang, K., Shen, C., Fisher, J. B., and Niu, J., 2016. Improving Budyko curve-based estimates of long-term water partitioning
using hydrologic signatures from GRACE. Water Resources Research, 52:5537–5554, doi:10.1002/2016WR018748.
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- Fatolazadeh, F., Voosoghi, B., and Raoofian Naeeni, M. R., 2016. Correction of Hydrological and Oceanic Effects from
GRACE Data by Combination of the Steric Sea Level, Altimetry Data and GLDAS Model. Acta Geophysica, 64:1193–1210,
doi:10.1515/acgeo-2016-0034.
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- Ferreira, V. G., Montecino, H. D. C., Yakubu, C. I., and Heck, B., 2016. Uncertainties of the Gravity
Recovery and Climate Experiment time-variable gravity-field solutions based on three-cornered hat method. Journal of Applied
Remote Sensing, 10:015015, doi:10.1117/1.JRS.10.015015.
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- Flechtner, F., Neumayer, K.-H., Dahle, C., Dobslaw, H., Fagiolini, E., Raimondo, J.-C., and Güntner, A., 2016. What Can
be Expected from the GRACE-FO Laser Ranging Interferometer for Earth Science Applications?. Surveys in Geophysics,
37:453–470, doi:10.1007/s10712-015-9338-y.
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- Forootan, E., 2016. Statistical Signal Decomposition Techniques for Analyzing Time-Variable Satellite Gravimetry Data,
Deutsche Geod. Kommission, Reihe C 763, pp. 131, Bayer. Akademie der Wissenschaften, Munich.
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- Fuchs, M. J., Hooper, A., Broerse, T., and Bouman, J., 2016. Distributed fault slip model for the 2011 Tohoku-Oki earthquake
from GNSS and GRACE/GOCE satellite gravimetry. Journal of Geophysical Research (Solid Earth), 121:1114–1130,
doi:10.1002/2015JB012165.
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- Fuchs, M. J., Broerse, T., Hooper, A., Pietrzak, J., and Bouman, J., 2016. GRACE Gravity Data to Enhance the Modeling of Coseismic
Slip Distribution for the 2011 Tohoku-Oki Earthquake. In Rizos, Chris and Willis, Pascal (editors), IAG 150 Years,
pp. 477–483, Springer International Publishing, Cham.
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- Galván, Romina, Gende, Mauricio, and Brunini, Claudio, 2016. Regional Model to Estimate Vertical Deformations Due to
Loading Seasonal Changes. In Rizos, Chris and Willis, Pascal (editors), IAG 150 Years, pp. 101–110, Springer
International Publishing, Cham.
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- Girotto, M., De Lannoy, G. J. M., Reichle, R. H., and Rodell, M., 2016. Assimilation of gridded terrestrial
water storage observations from GRACE into a land surface model. Water Resources Research, 52:4164–4183, doi:10.1002/2015WR018417.
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- Görth, A., Sanjuan, J., Gohlke, M., Rasch, S., Abich, K., Braxmaier, C., and Heinzel, G., 2016. Test environments for
the GRACE follow-on laser ranging interferometer. Journal of Physics Conference Series, 716(1):012011, doi:10.1088/1742-6596/716/1/012011.
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- Guo, J., Mu, D., Liu, X., Yan, H., Sun, Z., and Guo, B., 2016. Water Storage Changes over the Tibetan Plateau Revealed by
GRACE Mission. Acta Geophysica, 64:463–476, doi:10.1515/acgeo-2016-0003.
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- Haberkorn, Christoph, Bloßfeld, Mathis, Bouman, Johannes, Fuchs, Martin, and Schmidt, Michael, 2016. Towards a Consistent
Estimation of the Earth's Gravity Field by Combining Normal Equation Matrices from GRACE and SLR. In Rizos, Chris and Willis,
Pascal (editors), IAG 150 Years, pp. 375–381, Springer International Publishing, Cham.
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- Han, S.-C., Sauber, J., and Pollitz, F., 2016. Postseismic gravity change after the 2006-2007 great earthquake doublet and
constraints on the asthenosphere structure in the central Kuril Islands. Geophysical Research Letters, 43:3169–3177,
doi:10.1002/2016GL068167.
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- Han, S.-C., 2016. Seasonal clockwise gyration and tilt of the Australian continent chasing the center of mass of the Earth's
system from GPS and GRACE. Journal of Geophysical Research (Solid Earth), 121:7666–7680, doi:10.1002/2016JB013388.
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- Hao, M., Freymueller, J. T., Wang, Q., Cui, D., and Qin, S., 2016. Vertical crustal movement around the southeastern
Tibetan Plateau constrained by GPS and GRACE data. Earth and Planetary Science Letters, 437:1–8, doi:10.1016/j.epsl.2015.12.038.
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- Harvey, N., 2016. GRACE star camera noise. Advances in Space Research, 58:408–414, doi:10.1016/j.asr.2016.04.025.
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- Hirt, C., Rexer, M., Scheinert, M., Pail, R., Claessens, S., and Holmes, S., 2016. A new degree-2190 (10 km resolution) gravity
field model for Antarctica developed from GRACE, GOCE and Bedmap2 data. Journal of Geodesy, 90:105–127, doi:10.1007/s00190-015-0857-6.
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- Hong-bo, W., Chang-yin, Z., Wei, Z., Jin-wei, Z., and Sheng-xian, Y., 2016. Evaluation of Gravitational Field Models Based
on the Laser Range Observation of Low Earth Orbit Satellites. Chinese Astronomy and Astrophysics, 40:386–398,
doi:10.1016/j.chinastron.2016.07.008.
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- Huang, Y., Wu, Q., Huang, C. Y., and Su, Y.-J., 2016. Thermosphere variation at different altitudes over the northern
polar cap during magnetic storms. Journal of Atmospheric and Solar-Terrestrial Physics, 146:140–148, doi:10.1016/j.jastp.2016.06.003.
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- Huang, J., Pavlic, G., Rivera, A., Palombi, D., and Smerdon, B., 2016. Mapping groundwater storage variations with GRACE:
a case study in Alberta, Canada. Hydrogeology Journal, 24:1663–1680, doi:10.1007/s10040-016-1412-0.
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- Huang, C. Y.-Y., Huang, Y., Su, Y.-J., Sutton, E. K., Rotan Hairston, M., and Coley, W. R., 2016. Ionosphere-thermosphere
(IT) response to solar wind forcing during magnetic storms. Journal of Space Weather and Space Climate, 6(27):A4, doi:10.1051/swsc/2015041.
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- Humphrey, V., Gudmundsson, L., and Seneviratne, S. I., 2016. Assessing Global Water Storage Variability from GRACE: Trends,
Seasonal Cycle, Subseasonal Anomalies and Extremes. Surveys in Geophysics, 37:357–395, doi:10.1007/s10712-016-9367-1.
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- Hussain, M., Eshagh, M., Ahmad, Z., Sadiq, M., and Fatolazadeh, F., 2016. Changes in gravitational parameters inferred from
time variable GRACE data-A case study for October 2005 Kashmir earthquake. Journal of Applied Geophysics, 132:174–183,
doi:10.1016/j.jappgeo.2016.07.008.
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- Hwang, C., Yang, Y., Kao, R., Han, J., Shum, C. K., Galloway, D. L., Sneed, M., Hung, W.-C., Cheng, Y.-S., and Li,
F., 2016. Time-varying land subsidence detected by radar altimetry: California, Taiwan and north China. Scientific Reports,
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- Jäggi, A., Dahle, C., Arnold, D., Bock, H., Meyer, U., Beutler, G., and van den IJssel, J., 2016. Swarm kinematic orbits
and gravity fields from 18 months of GPS data. Advances in Space Research, 57:218–233, doi:10.1016/j.asr.2015.10.035.
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- Jin, S., Tian, X., and Feng, G., 2016. Recent glacier changes in the Tien Shan observed by satellite gravity measurements.
Global and Planetary Change, 143:81–87, doi:10.1016/j.gloplacha.2016.06.006.
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- Jin, S. and Zhang, T., 2016. Terrestrial Water Storage Anomalies Associated with Drought in Southwestern USA from GPS Observations.
Surveys in Geophysics, 37:1139–1156, doi:10.1007/s10712-016-9385-z.
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- Karbon, Maria, Böhm, Johannes, Fagiolini, Elisa, Flechtner, Frank, and Schuh, Harald, 2016. Impact of Numerical Weather
Models on Gravity Field Analysis. In Rizos, Chris and Willis, Pascal (editors), IAG 150 Years, pp. 355–365, Springer
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- Khandu, Forootan, E., Schumacher, M., Awange, J. L., and Müller Schmied, H., 2016. Exploring the influence of precipitation
extremes and human water use on total water storage (TWS) changes in the Ganges-Brahmaputra-Meghna River Basin. Water Resources
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- Kim, B.-H., Eom, J., Seo, K.-W., and Wilson, C. R., 2016. Spurious barometric pressure acceleration in Antarctica and
propagation into GRACE Antarctic mass change estimates. Geophysical Journal International, 206:1306–1314, doi:10.1093/gji/ggw211.
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- Kleinherenbrink, M., Riva, R., and Sun, Y., 2016. Sub-basin-scale sea level budgets from satellite altimetry, Argo floats
and satellite gravimetry: a case study in the North Atlantic Ocean. Ocean Science, 12:1179–1203, doi:10.5194/os-12-1179-2016.
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- Klinger, B. and Mayer-Gürr, T., 2016. The role of accelerometer data calibration within GRACE gravity field recovery:
Results from ITSG-Grace2016. Advances in Space Research, 58:1597–1609, doi:10.1016/j.asr.2016.08.007.
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- König, Rolf, Dahle, Christoph, Vei, Margarita, and Neumayer, Karl-Hans, 2016. A Geocenter Time Series from a Combination
of LAGEOS and GRACE Observations. In Rizos, Chris and Willis, Pascal (editors), IAG 150 Years, pp. 169–174, Springer
International Publishing, Cham.
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- Kumar, S. V., Zaitchik, B. F., Peters-Lidard, C. D., Rodell, M., Reichle, R., Li, B., Jasinski, M., Mocko,
D., Getirana, A., De Lannoy, G., Cosh, M. H., Hain, C. R., Anderson, M., Arsenault, K. R., Xia, Y., and Ek,
M., 2016. Assimilation of Gridded GRACE Terrestrial Water Storage Estimates in the North American Land Data Assimilation System.
Journal of Hydrometeorology, 17:1951–1972, doi:10.1175/JHM-D-15-0157.1.
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- Kusche, J., Uebbing, B., Rietbroek, R., Shum, C. K., and Khan, Z. H., 2016. Sea level budget in the Bay of Bengal
(2002-2014) from GRACE and altimetry. Journal of Geophysical Research (Oceans), 121:1194–1217, doi:10.1002/2015JC011471.
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- Kusche, J., Eicker, A., Forootan, E., Springer, A., and Longuevergne, L., 2016. Mapping probabilities of extreme continental
water storage changes from space gravimetry. Geophysical Research Letters, 43:8026–8034, doi:10.1002/2016GL069538.
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- Kwok, R. and Morison, J., 2016. Sea surface height and dynamic topography of the ice-covered oceans from CryoSat-2: 2011-2014.
Journal of Geophysical Research (Oceans), 121:674–692, doi:10.1002/2015JC011357.
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- Legeais, J.-F., Prandi, P., and Guinehut, S., 2016. Analyses of altimetry errors using Argo and GRACE data. Ocean Science,
12:647–662, doi:10.5194/os-12-647-2016.
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- Lei, J., Zhong, J., Mao, T., Hu, L., Yu, T., Luan, X., Dou, X., Sutton, E., Yue, X., Lin, J., and Batista, I. S., 2016.
Contrasting behavior of the F$_2$ peak and the topside ionosphere in response to the 2 October 2013 geomagnetic storm. Journal
of Geophysical Research (Space Physics), 121(A10):10, doi:10.1002/2016JA022959.
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- Lemoine, F. G., Chinn, D. S., Zelensky, N. P., Beall, J. W., and Le Bail, K., 2016. The development of
the GSFC DORIS contribution to ITRF2014. Advances in Space Research, 58:2520–2542, doi:10.1016/j.asr.2015.12.043.
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- Li, J., Wang, S., and Zhou, F., 2016. Time Series Analysis of Long-term Terrestrial Water Storage over Canada from GRACE Satellites
Using Principal Component Analysis. Canadian Journal of Remote Sensing, 42:161–170, doi:10.1080/07038992.2016.1166042.
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- Li, W., van Dam, T., Li, Z., and Shen, Y., 2016. Annual variation detected by GPS, GRACE and loading models. Studia Geophysica
et Geodaetica, 60:608–621, doi:10.1007/s11200-016-0205-1.
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- Li, J., Chen, J. L., and Wilson, C. R., 2016. Topographic effects on coseismic gravity change for the 2011 Tohoku-Oki
earthquake and comparison with GRACE. Journal of Geophysical Research (Solid Earth), 121:5509–5537, doi:10.1002/2015JB012407.
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- Liesch, T. and Ohmer, M., 2016. Comparison of GRACE data and groundwater levels for the assessment of groundwater depletion
in Jordan. Hydrogeology Journal, 24:1547–1563, doi:10.1007/s10040-016-1416-9.
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- Lin, P., Wei, J., Yang, Z.-L., Zhang, Y., and Zhang, K., 2016. Snow data assimilation-constrained land initialization improves
seasonal temperature prediction. Geophysical Research Letters, 43:11, doi:10.1002/2016GL070966.
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- Liu, W., Wang, L., Zhou, J., Li, Y., Sun, F., Fu, G., Li, X., and Sang, Y.-F., 2016. A worldwide evaluation of basin-scale
evapotranspiration estimates against the water balance method. Journal of Hydrology, 538:82–95, doi:10.1016/j.jhydrol.2016.04.006.
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- Liu, Y.-C., Hwang, C., Han, J., Kao, R., Wu, C.-R., Shih, H.-C., and Tangdamrongsub, N., 2016. Sediment-Mass Accumulation
Rate and Variability in the East China Sea Detected by GRACE. Remote Sensing, 8:777, doi:10.3390/rs8090777.
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- Long, D., Chen, X., Scanlon, B. R., Wada, Y., Hong, Y., Singh, V. P., Chen, Y., Wang, C., Han, Z., and Yang, W.,
2016. Have GRACE satellites overestimated groundwater depletion in the Northwest India Aquifer?. Scientific Reports,
6:24398, doi:10.1038/srep24398.
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- Lopez, T., Antoine, R., Kerr, Y., Darrozes, J., Rabinowicz, M., Ramillien, G., Cazenave, A., and Genthon, P., 2016. Subsurface
Hydrology of the Lake Chad Basin from Convection Modelling and Observations. Surveys in Geophysics, 37:471–502,
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- Masutti, D., March, G., Ridley, A. J., and Thoemel, J., 2016. Effect of the solar activity variation on the Global Ionosphere
Thermosphere Model (GITM). Annales Geophysicae, 34:725–736, doi:10.5194/angeo-34-725-2016.
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- Mazloff, M. R. and Boening, C., 2016. Rapid variability of Antarctic Bottom Water transport into the Pacific Ocean inferred
from GRACE. Geophysical Research Letters, 43:3822–3829, doi:10.1002/2016GL068474.
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- McMillan, M., Leeson, A., Shepherd, A., Briggs, K., Armitage, T. W. K., Hogg, A., Kuipers Munneke, P., Broeke, M.,
Noël, B., Berg, W. J., Ligtenberg, S., Horwath, M., Groh, A., Muir, A., and Gilbert, L., 2016. A high-resolution
record of Greenland mass balance. Geophysical Research Letters, 43:7002–7010, doi:10.1002/2016GL069666.
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- Melo, D. d. C. D., Scanlon, B. R., Zhang, Z., Wendland, E., and Yin, L., 2016. Reservoir storage and hydrologic
responses to droughts in the Paraná River basin, south-eastern Brazil. Hydrology and Earth System Sciences,
20:4673–4688, doi:10.5194/hess-20-4673-2016.
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- Métivier, L., Caron, L., Greff-Lefftz, M., Pajot-Métivier, G., Fleitout, L., and Rouby, H., 2016. Evidence for
postglacial signatures in gravity gradients: A clue in lower mantle viscosity. Earth and Planetary Science Letters,
452:146–156, doi:10.1016/j.epsl.2016.07.034.
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- Meyer, U., Jäggi, A., Jean, Y., and Beutler, G., 2016. AIUB-RL02: an improved time-series of monthly gravity fields from
GRACE data. Geophysical Journal International, 205:1196–1207, doi:10.1093/gji/ggw081.
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- Meyer, U., Dahle, C., Sneeuw, N., Jäggi, A., Beutler, G., and Bock, H., 2016. The Effect of Pseudo-Stochastic Orbit Parameters
on GRACE Monthly Gravity Fields: Insights from Lumped Coefficients. In Sneeuw, Nicoand Novák, Paveland Crespi, Mattia
and Sansò, Fernando (editors), VIII Hotine-Marussi Symposium on Mathematical Geodesy, pp. 177–183, Springer
International Publishing, Cham.
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- Meyrath, T. and van Dam, T., 2016. A comparison of interannual hydrological polar motion excitation from GRACE and geodetic
observations. Journal of Geodynamics, 99:1–9, doi:10.1016/j.jog.2016.03.011.
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- Mikhailov, V. O., Diament, M., Lyubushin, A. A., Timoshkina, E. P., and Khairetdinov, S. A., 2016. Large-scale
aseismic creep in the areas of the strong earthquakes revealed from the GRACE data on the time variations of the Earth's gravity
field. Izvestiya Physics of the Solid Earth, 52:692–703, doi:10.1134/S1069351316040054.
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- Mikhailov, V. O., Timoshkina, E. P., and Diament, M., 2016. A postseismic process in the area of the Simushir 11/2006
Earthquake recovered by the GRACE data. Doklady Earth Sciences, 471:1188–1192, doi:10.1134/S1028334X16110179.
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- Mishra, V., Aadhar, S., Asoka, A., Pai, S., and Kumar, R., 2016. On the frequency of the 2015 monsoon season drought in the
Indo-Gangetic Plain. Geophysical Research Letters, 43:12, doi:10.1002/2016GL071407.
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- Mo, X., Wu, J. J., Wang, Q., and Zhou, H., 2016. Variations in water storage in China over recent decades from GRACE
observations and GLDAS. Natural Hazards and Earth System Sciences, 16:469–482, doi:10.5194/nhess-16-469-2016.
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- Molodtsova, T., Molodtsov, S., Kirilenko, A., Zhang, X., and VanLooy, J., 2016. Evaluating flood potential with GRACE in the
United States. Natural Hazards and Earth System Sciences, 16:1011–1018, doi:10.5194/nhess-16-1011-2016.
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- Moreaux, G., Lemoine, F. G., Argus, D. F., Santamar\'ıa-Gómez, A., Willis, P., Soudarin, L., Gravelle,
M., and Ferrage, P., 2016. Horizontal and vertical velocities derived from the IDS contribution to ITRF2014, and comparisons
with geophysical models. Geophysical Journal International, 207:209–227, doi:10.1093/gji/ggw265.
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- Moreira, D. M., Calmant, S., Perosanz, F., Xavier, L., Rotunno Filho, O. C., Seyler, F., and Monteiro, A. C.,
2016. Comparisons of observed and modeled elastic responses to hydrological loading in the Amazon basin. Geophysical Research
Letters, 43:9604–9610, doi:10.1002/2016GL070265.
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- Nanteza, J., de Linage, C. R., Thomas, B. F., and Famiglietti, J. S., 2016. Monitoring groundwater storage
changes in complex basement aquifers: An evaluation of the GRACE satellites over East Africa. Water Resources Research,
52:9542–9564, doi:10.1002/2016WR018846.
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- Nastula, J., Salstein, D. A., and Popinski, W., 2016. Hydrological Excitations of Polar Motion from GRACE Gravity Field Solutions.
In Rizos, Chris and Willis, Pascal (editors), IAG 150 Years, pp. 513–519, Springer International Publishing,
Cham.
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- Ndehedehe, C., Awange, J., Agutu, N., Kuhn, M., and Heck, B., 2016. Understanding changes in terrestrial water storage over
West Africa between 2002 and 2014. Advances in Water Resources, 88:211–230, doi:10.1016/j.advwatres.2015.12.009.
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- Ndehedehe, C. E., Agutu, N. O., Okwuashi, O., and Ferreira, V. G., 2016. Spatio-temporal variability of droughts
and terrestrial water storage over Lake Chad Basin using independent component analysis. Journal of Hydrology, 540:106–128,
doi:10.1016/j.jhydrol.2016.05.068.
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- Ouyang, W., Liu, B., and Wu, Y., 2016. Satellite-based estimation of watershed groundwater storage dynamics in a freeze-thaw
area under intensive agricultural development. Journal of Hydrology, 537:96–105, doi:10.1016/j.jhydrol.2016.03.034.
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- Panda, D. K. and Wahr, J., 2016. Spatiotemporal evolution of water storage changes in India from the updated GRACE-derived
gravity records. Water Resources Research, 52:135–149, doi:10.1002/2015WR017797.
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- Paul, K. S., Das, A., Ray, S., and Paul, A., 2016. Characteristics of Total Electron Content (TEC) observed from a chain
of stations near the northern crest of the Equatorial Ionization Anomaly (EIA) along 88.5\degE meridian in India. Journal
of Atmospheric and Solar-Terrestrial Physics, 137:17–28, doi:10.1016/j.jastp.2015.11.011.
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- Pedatella, N. M., Oberheide, J., Sutton, E. K., Liu, H.-L., Anderson, J. L., and Raeder, K., 2016. Short-term
nonmigrating tide variability in the mesosphere, thermosphere, and ionosphere. Journal of Geophysical Research (Space Physics),
121:3621–3633, doi:10.1002/2016JA022528.
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- Peralta-Ferriz, C., Morison, J. H., and Wallace, J. M., 2016. Proxy representation of Arctic ocean bottom pressure
variability: Bridging gaps in GRACE observations. Geophysical Research Letters, 43:9183–9191, doi:10.1002/2016GL070137.
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- Purcell, A., Tregoning, P., and Dehecq, A., 2016. An assessment of the ICE6G_C(VM5a) glacial isostatic adjustment model. Journal
of Geophysical Research (Solid Earth), 121:3939–3950, doi:10.1002/2015JB012742.
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- Rakovec, O., Kumar, R., Attinger, S., and Samaniego, L., 2016. Improving the realism of hydrologic model functioning through
multivariate parameter estimation. Water Resources Research, 52:7779–7792, doi:10.1002/2016WR019430.
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- Reager, J. T., Gardner, A. S., Famiglietti, J. S., Wiese, D. N., Eicker, A., and Lo, M.-H., 2016. A decade
of sea level rise slowed by climate-driven hydrology. Science, 351:699–703, doi:10.1126/science.aad8386.
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- Rietbroek, R., 2016. Retrieval of Sea Level and Surface Loading Variations from Geodetic Observations and Model Simulations:
an Integrated Approach Determination, Deutsche Geod. Kommission, Reihe C 762, pp. 172, Bayer. Akademie der Wissenschaften,
Munich.
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- Rietbroek, R., Brunnabend, S.-E., Kusche, J., Schröter, J., and Dahle, C., 2016. Revisiting the contemporary sea-level
budget on global and regional scales. Proceedings of the National Academy of Sciences, 113(6):1504–1509, doi:10.1073/pnas.1519132113.
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- Rudenko, S., Dettmering, D., Esselborn, S., Fagiolini, E., and Schöne, T., 2016. Impact of Atmospheric and Oceanic De-aliasing
Level-1B (AOD1B) products on precise orbits of altimetry satellites and altimetry results. Geophysical Journal International,
204:1695–1702, doi:10.1093/gji/ggv545.
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- Sahoo, S., Russo, T., and Lall, U., 2016. Comment on ''Quantifying renewable groundwater stress with GRACE'' by Alexandra
S. Richey et al.. Water Resources Research, 52:4184–4187, doi:10.1002/2015WR018085.
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- Sakumura, C., Bettadpur, S., Save, H., and McCullough, C., 2016. High-frequency terrestrial water storage signal capture via
a regularized sliding window mascon product from GRACE. Journal of Geophysical Research (Solid Earth), 121:4014–4030,
doi:10.1002/2016JB012843.
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- Sánchez, L., Cunderl\'ık, R., Dayoub, N., Mikula, K., Minarechová, Z., Š\'ıma, Z., Vatrt, V.,
and Vojt\'ısková, M., 2016. A conventional value for the geoid reference potential W$_0$. Journal of Geodesy,
90:815–835, doi:10.1007/s00190-016-0913-x.
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- Save, H., Bettadpur, S., and Tapley, B. D., 2016. High-resolution CSR GRACE RL05 mascons. Journal of Geophysical Research
(Solid Earth), 121:7547–7569, doi:10.1002/2016JB013007.
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- Scanlon, B. R., Zhang, Z., Save, H., Wiese, D. N., Landerer, F. W., Long, D., Longuevergne, L., and Chen, J.,
2016. Global evaluation of new GRACE mascon products for hydrologic applications. Water Resources Research, 52:9412–9429,
doi:10.1002/2016WR019494.
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- Scheinert, M., Ferraccioli, F., Schwabe, J., Bell, R., Studinger, M., Damaske, D., Jokat, W., Aleshkova, N., Jordan, T., Leitchenkov,
G., Blankenship, D. D., Damiani, T. M., Young, D., Cochran, J. R., and Richter, T. D., 2016. New Antarctic
gravity anomaly grid for enhanced geodetic and geophysical studies in Antarctica. Geophysical Research Letters, 43:600–610,
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- Schlegel, N.-J., Wiese, D. N., Larour, E. Y., Watkins, M. M., Box, J. E., Fettweis, X., and van den Broeke,
M. R., 2016. Application of GRACE to the assessment of model-based estimates of monthly Greenland Ice Sheet mass balance
(2003-2012). The Cryosphere, 10:1965–1989, doi:10.5194/tc-10-1965-2016.
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- Schultz, K. W., Sachs, M. K., Heien, E. M., Rundle, J. B., Turcotte, D. L., and Donnellan, A., 2016.
Simulating Gravity Changes in Topologically Realistic Driven Earthquake Fault Systems: First Results. Pure and Applied
Geophysics, 173:827–838, doi:10.1007/s00024-014-0926-4.
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- Schumacher, M., Kusche, J., and Döll, P., 2016. A systematic impact assessment of GRACE error correlation on data assimilation
in hydrological models. Journal of Geodesy, 90:537–559, doi:10.1007/s00190-016-0892-y.
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- Schumacher, Maike, Eicker, Annette, Kusche, Jürgen, Schmied, Hannes Müller, and Döll, Petra, 2016. Covariance
Analysis and Sensitivity Studies for GRACE Assimilation into WGHM. In Rizos, Chris and Willis, Pascal (editors), IAG 150
Years, pp. 241–247, Springer International Publishing, Cham.
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- Schütze, D. and LRI team, 2016. Measuring Earth: Current status of the GRACE Follow-On Laser Ranging Interferometer.
Journal of Physics Conference Series, 716(1):012005, doi:10.1088/1742-6596/716/1/012005.
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- Seo, J. Y. and Lee, S.-I., 2016. Integration of GRACE, ground observation, and land-surface models for groundwater storage
variations in South Korea. International Journal of Remote Sensing, 37:5786–5801, doi:10.1080/01431161.2016.1249301.
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- Seyoum, W. M. and Milewski, A. M., 2016. Monitoring and comparison of terrestrial water storage changes in the northern
high plains using GRACE and in-situ based integrated hydrologic model estimates. Advances in Water Resources, 94:31–44,
doi:10.1016/j.advwatres.2016.04.014.
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- Shen, Y., Xu, L., Zhang, H., Zhu, Y., and Cheng, P., 2016. Solution to some limitations of frequency-entangled-based sensor
applied in GRACE-like mission. Advances in Space Research, 57:867–879, doi:10.1016/j.asr.2015.11.011.
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- Silverii, F., D'Agostino, N., Métois, M., Fiorillo, F., and Ventafridda, G., 2016. Transient deformation of karst aquifers
due to seasonal and multiyear groundwater variations observed by GPS in southern Apennines (Italy). Journal of Geophysical
Research (Solid Earth), 121:8315–8337, doi:10.1002/2016JB013361.
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- Solander, K. C., Numerical modeling and remote sensing of global water management systems: Applications for land surface
modeling, satellite missions, and sustainable water resources. Ph.D. Thesis, University of California, Irvine, 2016.
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- Šprlák, M. and Eshagh, M., 2016. Local Recovery of Sub-crustal Stress Due to Mantle Convection from Satellite-to-satellite
Tracking Data. Acta Geophysica, 64:904–929, doi:10.1515/acgeo-2016-0044.
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- Sun, Y., Ditmar, P., and Riva, R., 2016. Observed changes in the Earth's dynamic oblateness from GRACE data and geophysical
models. Journal of Geodesy, 90:81–89, doi:10.1007/s00190-015-0852-y.
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- Sun, Y., Riva, R., and Ditmar, P., 2016. Optimizing estimates of annual variations and trends in geocenter motion and J$_2$
from a combination of GRACE data and geophysical models. Journal of Geophysical Research (Solid Earth), 121:8352–8370,
doi:10.1002/2016JB013073.
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- Tan, W., Dong, D., Chen, J., and Wu, B., 2016. Analysis of systematic differences from GPS-measured and GRACE-modeled deformation
in Central Valley, California. Advances in Space Research, 57:19–29, doi:10.1016/j.asr.2015.08.034.
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- Tangdamrongsub, N., Ditmar, P. G., Steele-Dunne, S. C., Gunter, B. C., and Sutanudjaja, E. H., 2016. Assessing
total water storage and identifying flood events over Tonlé Sap basin in Cambodia using GRACE and MODIS satellite observations
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- Teixeira da Encarnação, J., Arnold, D., Bezdek, A., Dahle, C., Doornbos, E., van den IJssel, J., Jäggi,
A., Mayer-Gürr, T., Sebera, J., Visser, P., and Zehentner, N., 2016. Gravity field models derived from Swarm GPS data.
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- Thorpe, J. I. and McKenzie, K., 2016. Arm locking with the GRACE follow-on laser ranging interferometer. \prd,
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- van den Broeke, M. R., Enderlin, E. M., Howat, I. M., Kuipers Munneke, P., Noël, B. P. Y., van
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- Wahr, J., Burgess, E., and Swenson, S., 2016. Using GRACE and climate model simulations to predict mass loss of Alaskan glaciers
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- Wang, S. and Russell, H. A. J., 2016. Forecasting Snowmelt-Induced Flooding Using GRACE Satellite Data: A Case Study
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- Wang, S. and Li, J., 2016. Terrestrial Water Storage Climatology for Canada from GRACE Satellite Observations in 2002–2014.
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- Wang, L., Davis, J. L., Hill, E. M., and Tamisiea, M. E., 2016. Stochastic filtering for determining gravity
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- Wang, Q., Yi, S., and Sun, W., 2016. The changing pattern of lake and its contribution to increased mass in the Tibetan Plateau
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- Wang, H. B., Xiong, Y. Q., and Zhao, C. Y., 2016. The New Calibration Method of Accelerometer in GRACE Satellites
Based on Precise Solar Radiation Model. Acta Astronomica Sinica, 57:544–559.
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- Wang, H. B., Zhao, C. Y., Liu, Z. G., and Zhang, W., 2016. The Method for Calculating Atmospheric Drag Coefficient
Based on the Characteristics of Along-track Error in LEO Orbit Prediction. Acta Astronomica Sinica, 57:447–460.
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- Weimer, D. R., Sutton, E. K., Mlynczak, M. G., and Hunt, L. A., 2016. Intercalibration of neutral density
measurements for mapping the thermosphere. Journal of Geophysical Research (Space Physics), 121:5975–5990, doi:10.1002/2016JA022691.
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- Wiese, D. N., Killett, B., Watkins, M. M., and Yuan, D.-N., 2016. Antarctic tides from GRACE satellite accelerations.
Journal of Geophysical Research (Oceans), 121:2874–2886, doi:10.1002/2015JC011488.
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- Wiese, D. N., Landerer, F. W., and Watkins, M. M., 2016. Quantifying and reducing leakage errors in the JPL
RL05M GRACE mascon solution. Water Resources Research, 52:7490–7502, doi:10.1002/2016WR019344.
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- Winska, M., Nastula, J., and Kolaczek, B., 2016. Assessment of the Global and Regional Land Hydrosphere and Its Impact on
the Balance of the Geophysical Excitation Function of Polar Motion. Acta Geophysica, 64:270–292, doi:10.1515/acgeo-2015-0041.
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- Winska, M., 2016. Hydrological Excitations of Polar Motion Derived from Different Variables of Fgoals - g2 Climate Model.
Artificial Satellites, 51:107–122, doi:10.1515/arsa-2016-0010.
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- Xia, Y., Cosgrove, B. A., Mitchell, K. E., Peters-Lidard, C. D., Ek, M. B., Brewer, M., Mocko, D., Kumar,
S. V., Wei, H., Meng, J., and Luo, L., 2016. Basin-scale assessment of the land surface water budget in the National
Centers for Environmental Prediction operational and research NLDAS-2 systems. Journal of Geophysical Research (Atmospheres),
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- Xiang, L., Wang, H., Steffen, H., Wu, P., Jia, L., Jiang, L., and Shen, Q., 2016. Groundwater storage changes in the Tibetan
Plateau and adjacent areas revealed from GRACE satellite gravity data. Earth and Planetary Science Letters, 449:228–239,
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- Xiang, L., Wang, H., Steffen, H., Wu, P., Jia, L., Jiang, L., and Shen, Q., 2016. Corrigendum to ''Groundwater storage changes
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- Xie, Z., Huete, A., Ma, X., Restrepo-Coupe, N., Devadas, R., Clarke, K., and Lewis, M., 2016. Landsat and GRACE observations
of arid wetland dynamics in a dryland river system under multi-decadal hydroclimatic extremes. Journal of Hydrology,
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- Xu, Z., Schrama, E. J. O., van der Wal, W., van den Broeke, M., and Enderlin, E. M., 2016. Improved GRACE regional
mass balance estimates of the Greenland ice sheet cross-validated with the input-output method. The Cryosphere, 10:895–912,
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- Yan, H., Chen, W., and Yuan, L., 2016. Crustal vertical deformation response to different spatial scales of GRACE and GCMs
surface loading. Geophysical Journal International, 204:505–516, doi:10.1093/gji/ggv385.
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- Yang, Q., Dixon, T. H., Myers, P. G., Bonin, J., Chambers, D., and van den Broeke, M. R., 2016. Recent increases
in Arctic freshwater flux affects Labrador Sea convection and Atlantic overturning circulation. Nature Communications,
7:10525, doi:10.1038/ncomms10525.
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- Yang, Q., Applications of Satellite Geodesy in Environmental and Climate Change. Ph.D. Thesis, University of South Florida,
2016.
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- Yao, C., Luo, Z., Wang, H., Li, Q., and Zhou, H., 2016. GRACE-Derived Terrestrial Water Storage Changes in the Inter-Basin
Region and Its Possible Influencing Factors: A Case Study of the Sichuan Basin, China. Remote Sensing, 8:444, doi:10.3390/rs8060444.
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- Yi, H. and Wen, L., 2016. Satellite gravity measurement monitoring terrestrial water storage change and drought in the continental
United States. Scientific Reports, 6:19909, doi:10.1038/srep19909.
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- Yi, S., Wang, Q., and Sun, W., 2016. Is it possible that a gravity increase of 20 $\mu$Gal yr$^-1$ in southern Tibet comes
from a wide-range density increase?. Geophysical Research Letters, 43:1481–1486, doi:10.1002/2015GL067509.
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- Yi, S., Wang, Q., and Sun, W., 2016. Basin mass dynamic changes in China from GRACE based on a multibasin inversion method.
Journal of Geophysical Research (Solid Earth), 121:3782–3803, doi:10.1002/2015JB012608.
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- Yi, S., Wang, Q., Chang, L., and Sun, W., 2016. Changes in Mountain Glaciers, Lake Levels, and Snow Coverage in the Tianshan
Monitored by GRACE, ICESat, Altimetry, and MODIS. Remote Sensing, 8:798, doi:10.3390/rs8100798.
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- Yi, S., Sun, W., Feng, W., and Chen, J., 2016. Anthropogenic and climate-driven water depletion in Asia. Geophysical Research
Letters, 43:9061–9069, doi:10.1002/2016GL069985.
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- Yi, S., Freymueller, J. T., and Sun, W., 2016. How fast is the middle-lower crust flowing in eastern Tibet? A constraint
from geodetic observations. Journal of Geophysical Research (Solid Earth), 121:6903–6915, doi:10.1002/2016JB013151.
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- Zhang, D., Zhang, Q., Werner, A. D., and Liu, X., 2016. GRACE-Based Hydrological Drought Evaluation of the Yangtze River
Basin, China. Journal of Hydrometeorology, 17:811–828, doi:10.1175/JHM-D-15-0084.1.
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- Zhang, L., Dobslaw, H., and Thomas, M., 2016. Globally gridded terrestrial water storage variations from GRACE satellite gravimetry
for hydrometeorological applications. Geophysical Journal International, 206:368–378, doi:10.1093/gji/ggw153.
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- Zhang, L., Dobslaw, H., Dahle, C., Sasgen, I., and Thomas, M., 2016. Validation of MPI-ESM Decadal Hindcast Experiments with
Terrestrial Water Storage Variations as Observed by the GRACE Satellite Mission. Meteorologische Zeitschrift, 25:685–694,
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- Zhang, Y.-F. and Yang, Z.-L., 2016. Estimating uncertainties in the newly developed multi-source land snow data assimilation
system. Journal of Geophysical Research (Atmospheres), 121:8254–8268, doi:10.1002/2015JD024248.
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- Zhou, J., Sun, H., Xu, J., and Zhang, W., 2016. Estimation of local water storage change by space- and ground-based gravimetry.
Journal of Applied Geophysics, 131:23–28, doi:10.1016/j.jappgeo.2016.05.007.
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- Zhou, H., Luo, Z., Wu, Y., Li, Q., and Xu, C., 2016. Impact of geophysical model error for recovering temporal gravity field
model. Journal of Applied Geophysics, 130:177–185, doi:10.1016/j.jappgeo.2016.04.004.
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- Zhou, Y.-L., Wang, L., Xiong, C., Lühr, H., and Ma, S.-Y., 2016. The solar activity dependence of nonmigrating tides
in electron density at low and middle latitudes observed by CHAMP and GRACE. Annales Geophysicae, 34:463–472,
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- A, G., Velicogna, I., Kimball, J. S., and Kim, Y., 2015. Impact of changes in GRACE derived terrestrial water storage
on vegetation growth in Eurasia. Environmental Research Letters, 10(12):124024, doi:10.1088/1748-9326/10/12/124024.
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- Abelen, S., Seitz, F., Abarca-del-Rio, R., and Güntner, A., 2015. Droughts and Floods in the La Plata Basin in Soil Moisture
Data and GRACE. Remote Sensing, 7:7324–7349, doi:10.3390/rs70607324.
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- Astafyeva, E., Zakharenkova, I., and Doornbos, E., 2015. Opposite hemispheric asymmetries during the ionospheric storm of
29-31 August 2004. Journal of Geophysical Research (Space Physics), 120:697–714, doi:10.1002/2014JA020710.
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- Bandikova, T., 2015. The role of attitude determination for inter-satellite ranging, Deutsche Geod. Kommission, Reihe
C 758, pp. 147, Bayer. Akademie der Wissenschaften, Munich.
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- Baroni, L., 2015. Ionosphere influence on success rate of GPS ambiguity resolution in a satellite formation flying. Journal
of Physics Conference Series, 641(1):012020, doi:10.1088/1742-6596/641/1/012020.
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- Belda, S., Garc\'ıa-Garc\'ıa, D., and Ferrándiz, J. M., 2015. On the decorrelation filtering of RL05
GRACE data for global applications. Geophysical Journal International, 200:173–184, doi:10.1093/gji/ggu386.
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- Bentel, K., Landerer, F. W., and Boening, C., 2015. Monitoring Atlantic overturning circulation and transport variability
with GRACE-type ocean bottom pressure observations - a sensitivity study. Ocean Science, 11:953–963, doi:10.5194/os-11-953-2015.
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- Billah, M. M., Goodall, J. L., Narayan, U., Reager, J. T., Lakshmi, V., and Famiglietti, J. S., 2015.
A methodology for evaluating evapotranspiration estimates at the watershed-scale using GRACE. Journal of Hydrology,
523:574–586, doi:10.1016/j.jhydrol.2015.01.066.
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- Bingham, R. J., Haines, K., and Lea, D., 2015. A comparison of GOCE and drifter-based estimates of the North Atlantic
steady-state surface circulation. International Journal of Applied Earth Observation and Geoinformation, 35:140–150,
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- Bloßfeld, M., Müller, H., Gerstl, M., Štefka, V., Bouman, J., Göttl, F., and Horwath, M., 2015. Second-degree
Stokes coefficients from multi-satellite SLR. Journal of Geodesy, 89:857–871, doi:10.1007/s00190-015-0819-z.
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- Bonin, J. A. and Chambers, D. P., 2015. Quantifying the resolution level where the GRACE satellites can separate
Greenland's glacial mass balance from surface mass balance. The Cryosphere, 9:1761–1772, doi:10.5194/tc-9-1761-2015.
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- Brockmann, J. M., 2015. On High Performance Computing in Geodesy - Applications in Global Gravity Field Determination,
Deutsche Geod. Kommission, Reihe C 761, pp. 144, Bayer. Akademie der Wissenschaften, Munich.
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- Broerse, T., Riva, R., Simons, W., Govers, R., and Vermeersen, B., 2015. Postseismic GRACE and GPS observations indicate a
rheology contrast above and below the Sumatra slab. Journal of Geophysical Research (Solid Earth), 120:5343–5361,
doi:10.1002/2015JB011951.
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- Bruinsma, S., 2015. The DTM-2013 thermosphere model. Journal of Space Weather and Space Climate, 5(27):A1, doi:10.1051/swsc/2015001.
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- Cambiotti, G. and Sabadini, R., 2015. On the response of the Earth to a fault system: its evaluation beyond the epicentral
reference frame. Geophysical Journal International, 203:943–959, doi:10.1093/gji/ggv344.
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- Cao, Y., Nan, Z., and Cheng, G., 2015. GRACE Gravity Satellite Observations of Terrestrial Water Storage Changes for Drought
Characterization in the Arid Land of Northwestern China. Remote Sensing, 7:1021–1047, doi:10.3390/rs70101021.
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- Chen, Q., Shen, Y., Zhang, X., Hsu, H., Chen, W., Ju, X., and Lou, L., 2015. Monthly gravity field models derived from GRACE
Level 1B data using a modified short-arc approach. Journal of Geophysical Research (Solid Earth), 120:1804–1819,
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- Chen, Q., Shen, Y., Chen, W., Zhang, X., Hsu, H., and Ju, X., 2015. A modified acceleration-based monthly gravity field solution
from GRACE data. Geophysical Journal International, 202:1190–1206, doi:10.1093/gji/ggv220.
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- Chen, Q., Shen, Y., Zhang, X., Chen, W., and Hsu, H., 2015. Tongji-GRACE01: A GRACE-only static gravity field model recovered
from GRACE Level-1B data using modified short arc approach. Advances in Space Research, 56:941–951, doi:10.1016/j.asr.2015.05.034.
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- Chen, J. L., Wilson, C. R., Li, J., and Zhang, Z., 2015. Reducing leakage error in GRACE-observed long-term ice
mass change: a case study in West Antarctica. Journal of Geodesy, 89:925–940, doi:10.1007/s00190-015-0824-2.
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- Chen, Q., 2015. Analyzing and modeling environmental loading induced displacements with GPS and GRACE, Deutsche Geod.
Kommission, Reihe C 752, pp. 131, Bayer. Akademie der Wissenschaften, Munich.
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- Christophe, B., Boulanger, D., Foulon, B., Huynh, P.-A., Lebat, V., Liorzou, F., and Perrot, E., 2015. A new generation of
ultra-sensitive electrostatic accelerometers for GRACE Follow-on and towards the next generation gravity missions. Acta
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- Couhert, A., Cerri, L., Legeais, J.-F., Ablain, M., Zelensky, N. P., Haines, B. J., Lemoine, F. G., Bertiger,
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- Dai, C., Source Parameters Inversion for Recent Large Undersea Earthquakes from GRACE Data. Ph.D. Thesis, The Ohio State University,
2015.
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- Daras, I., Pail, R., Murböck, M., and Yi, W., 2015. Gravity field processing with enhanced numerical precision for LL-SST
missions. Journal of Geodesy, 89:99–110, doi:10.1007/s00190-014-0764-2.
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- Devaraju, B., 2015. Understanding filtering on the sphere - Experiences from filtering GRACE data, Deutsche Geod. Kommission,
Reihe C 756, pp. 131, Bayer. Akademie der Wissenschaften, Munich.
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- Dieng, H. B., Palanisamy, H., Cazenave, A., Meyssignac, B., and von Schuckmann, K., 2015. The Sea Level Budget Since
2003: Inference on the Deep Ocean Heat Content. Surveys in Geophysics, 36:209–229, doi:10.1007/s10712-015-9314-6.
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- Dieng, H. B., Cazenave, A., von Schuckmann, K., Ablain, M., and Meyssignac, B., 2015. Sea level budget over 2005-2013:
missing contributions and data errors. Ocean Science, 11:789–802, doi:10.5194/os-11-789-2015.
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- Dieng, H. B., Champollion, N., Cazenave, A., Wada, Y., Schrama, E., and Meyssignac, B., 2015. Total land water storage
change over 2003–2013 estimated from a global mass budget approach. Environmental Research Letters, 10(12):124010,
doi:10.1088/1748-9326/10/12/124010.
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- Dobslaw, H., Bergmann-Wolf, I., Dill, R., Forootan, E., Klemann, V., Kusche, J., and Sasgen, I., 2015. The updated ESA Earth
System Model for future gravity mission simulation studies. Journal of Geodesy, 89:505–513, doi:10.1007/s00190-014-0787-8.
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- Fecher, T., Pail, R., and Gruber, T., 2015. Global gravity field modeling based on GOCE and complementary gravity data. International
Journal of Applied Earth Observation and Geoinformation, 35:120–127, doi:10.1016/j.jag.2013.10.005.
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- Fenoglio-Marc, L., 2015. Satellite geodesy for sea level and climate change, Deutsche Geod. Kommission, Reihe C 746,
pp. 278, Bayer. Akademie der Wissenschaften, Munich.
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- Fu, Y., Argus, D. F., and Landerer, F. W., 2015. GPS as an independent measurement to estimate terrestrial water
storage variations in Washington and Oregon. Journal of Geophysical Research (Solid Earth), 120:552–566, doi:10.1002/2014JB011415.
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- Godah, W. and Krynski, J., 2015. Comparison of GGMs based on one year GOCE observations with the EGM08 and terrestrial data
over the area of Sudan. International Journal of Applied Earth Observation and Geoinformation, 35:128–135, doi:10.1016/j.jag.2013.11.003.
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- Gonçalvès, J., Vallet-Coulomb, C., Petersen, J., Hamelin, B., and Deschamps, P., 2015. Declining water budget
in a deep regional aquifer assessed by geostatistical simulations of stable isotopes: Case study of the Saharan ''Continental
Intercalaire''. Journal of Hydrology, 531:821–829, doi:10.1016/j.jhydrol.2015.10.044.
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- Göttl, F., Schmidt, M., Seitz, F., and Bloßfeld, M., 2015. Separation of atmospheric, oceanic and hydrological
polar motion excitation mechanisms based on a combination of geometric and gravimetric space observations. Journal of Geodesy,
89:377–390, doi:10.1007/s00190-014-0782-0.
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- Guo, J. Y., Shang, K., Jekeli, C., and Shum, C. K., 2015. On the energy integral formulation of gravitational potential
differences from satellite-to-satellite tracking. Celestial Mechanics and Dynamical Astronomy, 121:415–429, doi:10.1007/s10569-015-9610-y.
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- Han, S.-C., Sauber, J., and Pollitz, F., 2015. Coseismic compression/dilatation and viscoelastic uplift/subsidence following
the 2012 Indian Ocean earthquakes quantified from satellite gravity observations. Geophysical Research Letters, 42:3764–3772,
doi:10.1002/2015GL063819.
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- Haranas, I., Ragos, O., Gkigkitzis, I., and Kotsireas, I., 2015. Quantum and post-Newtonian effects in the anomalistic period
and the mean motion of celestial bodies. Astrophysics and Space Science, 358:12, doi:10.1007/s10509-015-2408-2.
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- Harig, C. and Simons, F. J., 2015. Accelerated West Antarctic ice mass loss continues to outpace East Antarctic gains.
Earth and Planetary Science Letters, 415:134–141, doi:10.1016/j.epsl.2015.01.029.
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- Harms, J., 2015. Terrestrial Gravity Fluctuations. Living Reviews in Relativity, 18, doi:10.1007/lrr-2015-3.
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- Häusler, K., Hagan, M. E., Forbes, J. M., Zhang, X., Doornbos, E., Bruinsma, S., and Lu, G., 2015. Intraannual
variability of tides in the thermosphere from model simulations and in situ satellite observations. Journal of Geophysical
Research (Space Physics), 120:751–765, doi:10.1002/2014JA020579.
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- Hill, D. F., Bruhis, N., Calos, S. E., Arendt, A., and Beamer, J., 2015. Spatial and temporal variability of freshwater
discharge into the Gulf of Alaska. Journal of Geophysical Research (Oceans), 120:634–646, doi:10.1002/2014JC010395.
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- Hu, L. and Jiao, J. J., 2015. Calibration of a large-scale groundwater flow model using GRACE data: a case study in the
Qaidam Basin, China. Hydrogeology Journal, 23:1305–1317, doi:10.1007/s10040-015-1278-6.
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- Huang, Z., Pan, Y., Gong, H., Yeh, P. J.-F., Li, X., Zhou, D., and Zhao, W., 2015. Subregional-scale groundwater depletion
detected by GRACE for both shallow and deep aquifers in North China Plain. Geophysical Research Letters, 42:1791–1799,
doi:10.1002/2014GL062498.
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- Huang, Y., Salama, M. S., Krol, M. S., Su, Z., Hoekstra, A. Y., Zeng, Y., and Zhou, Y., 2015. Estimation of
human-induced changes in terrestrial water storage through integration of GRACE satellite detection and hydrological modeling:
A case study of the Yangtze River basin. Water Resources Research, 51:8494–8516, doi:10.1002/2015WR016923.
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- Im, S. T. and Kharuk, V. I., 2015. Dynamics of water mass in the Central Siberia permafrost zone based on gravity
survey from the grace satellites. Izvestiya Atmospheric and Oceanic Physics, 51:806–818, doi:10.1134/S0001433815080046.
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- Inácio, P., Ditmar, P., Klees, R., and Farahani, H. H., 2015. Analysis of star camera errors in GRACE data and
their impact on monthly gravity field models. Journal of Geodesy, 89:551–571, doi:10.1007/s00190-015-0797-1.
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- Jin, S. and Zou, F., 2015. Re-estimation of glacier mass loss in Greenland from GRACE with correction of land-ocean leakage
effects. Global and Planetary Change, 135:170–178, doi:10.1016/j.gloplacha.2015.11.002.
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- Junyan, Y., Zhou, X., Yi, S., and Sun, W., 2015. Determining dislocation love numbers using GRACE satellite mission gravity
data. Geophysical Journal International, 203:257–269, doi:10.1093/gji/ggv265.
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- Kharuk, V. I., Im, S. T., Dvinskaya, M. L., Golukov, A. S., and Ranson, K. J., 2015. Climate-induced
mortality of spruce stands in Belarus. Environmental Research Letters, 10(12):125006, doi:10.1088/1748-9326/10/12/125006.
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- Kharuk, V. I., Ranson, K. J., Im, S. T., and Petrov, I. A., 2015. Climate-induced larch growth response
within the central Siberian permafrost zone. Environmental Research Letters, 10(12):125009, doi:10.1088/1748-9326/10/12/125009.
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- Kim, J. and Tapley, B. D., 2015. Estimation of non-gravitational acceleration difference between two co-orbiting satellites
using single accelerometer data. Journal of Geodesy, 89:537–550, doi:10.1007/s00190-015-0796-2.
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- Krásná, H., Malkin, Z., and Böhm, J., 2015. Non-linear VLBI station motions and their impact on the celestial
reference frame and Earth orientation parameters. Journal of Geodesy, 89:1019–1033, doi:10.1007/s00190-015-0830-4.
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- Krauss, S., Temmer, M., Veronig, A., Baur, O., and Lammer, H., 2015. Thermospheric and geomagnetic responses to interplanetary
coronal mass ejections observed by ACE and GRACE: Statistical results. Journal of Geophysical Research (Space Physics),
120:8848–8860, doi:10.1002/2015JA021702.
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- Kuhlmann, J., Rogozhina, I., Dill, R., Bergmann-Wolf, I., and Thomas, M., 2015. A method for reconstructing global ocean-induced
surface displacements from land-based in-situ stations. Journal of Geodynamics, 83:18–27, doi:10.1016/j.jog.2014.10.003.
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- Landerer, F. W., Wiese, D. N., Bentel, K., Boening, C., and Watkins, M. M., 2015. North Atlantic meridional
overturning circulation variations from GRACE ocean bottom pressure anomalies. Geophysical Research Letters, 42:8114–8121,
doi:10.1002/2015GL065730.
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- Lay, T., 2015. The surge of great earthquakes from 2004 to 2014. Earth and Planetary Science Letters, 409:133–146,
doi:10.1016/j.epsl.2014.10.047.
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- Lechtenberg, T. F., Density model corrections derived from orbit data to characterize upper atmospheric density variations.
Ph.D. Thesis, University of Kansas, 2015.
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- Lei, J., Zhu, Q., Wang, W., Burns, A. G., Zhao, B., Luan, X., Zhong, J., and Dou, X., 2015. Response of the topside and
bottomside ionosphere at low and middle latitudes to the October 2003 superstorms. Journal of Geophysical Research (Space
Physics), 120:6974–6986, doi:10.1002/2015JA021310.
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- Lettenmaier, D. P., Alsdorf, D., Dozier, J., Huffman, G. J., Pan, M., and Wood, E. F., 2015. Inroads of remote
sensing into hydrologic science during the WRR era. Water Resources Research, 51:7309–7342, doi:10.1002/2015WR017616.
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- Li, J. and Shen, W.-B., 2015. Monthly GRACE detection of coseismic gravity change associated with 2011 Tohoku-Oki earthquake
using northern gradient approach. Earth, Planets, and Space, 67:29, doi:10.1186/s40623-015-0188-0.
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- Li, B. and Rodell, M., 2015. Evaluation of a model-based groundwater drought indicator in the conterminous U.S.. Journal
of Hydrology, 526:78–88, doi:10.1016/j.jhydrol.2014.09.027.
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- Liu, J., Gu, D., Ju, B., Lai, Y., and Yi, D., 2015. Relative clock estimation method between two LEO satellites with a double-difference
solution constraint. Acta Astronautica, 109:34–41, doi:10.1016/j.actaastro.2014.12.014.
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- Long, D., Longuevergne, L., and Scanlon, B. R., 2015. Global analysis of approaches for deriving total water storage
changes from GRACE satellites. Water Resources Research, 51:2574–2594, doi:10.1002/2014WR016853.
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- Long, D., Yang, Y., Wada, Y., Hong, Y., Liang, W., Chen, Y., Yong, B., Hou, A., Wei, J., and Chen, L., 2015. Deriving scaling
factors using a global hydrological model to restore GRACE total water storage changes for China's Yangtze River Basin. Remote
Sensing of Environment, 168:177–193, doi:10.1016/j.rse.2015.07.003.
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- Lorenz, C., Tourian, M. J., Devaraju, B., Sneeuw, N., and Kunstmann, H., 2015. Basin-scale runoff prediction: An Ensemble
Kalman Filter framework based on global hydrometeorological data sets. Water Resources Research, 51:8450–8475,
doi:10.1002/2014WR016794.
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- Maeda, E. E., Kim, H., Aragão, L. E. O. C., Famiglietti, J. S., and Oki, T., 2015. Disruption
of hydroecological equilibrium in southwest Amazon mediated by drought. Geophysical Research Letters, 42:7546–7553,
doi:10.1002/2015GL065252.
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- Makowski, J. K., Chambers, D. P., and Bonin, J. A., 2015. Using ocean bottom pressure from the gravity recovery
and climate experiment (GRACE) to estimate transport variability in the southern Indian Ocean. Journal of Geophysical Research
(Oceans), 120:4245–4259, doi:10.1002/2014JC010575.
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- Martinec, Z. and Fullea, J., 2015. A refined model of sedimentary rock cover in the southeastern part of the Congo basin from
GOCE gravity and vertical gravity gradient observations. International Journal of Applied Earth Observation and Geoinformation,
35:70–87, doi:10.1016/j.jag.2014.03.001.
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- Mémin, A., Flament, T., Alizier, B., Watson, C., and Rémy, F., 2015. Interannual variation of the Antarctic
Ice Sheet from a combined analysis of satellite gravimetry and altimetry data. Earth and Planetary Science Letters,
422:150–156, doi:10.1016/j.epsl.2015.03.045.
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- Meyer, U., Jäggi, A., Beutler, G., and Bock, H., 2015. The impact of common versus separate estimation of orbit parameters
on GRACE gravity field solutions. Journal of Geodesy, 89:685–696, doi:10.1007/s00190-015-0807-3.
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- Moiwo, J. P. and Tao, F., 2015. Satellite signal shows storage-unloading subsidence in North China. Hydrology and
Earth System Sciences Discussions, 12:6043–6075, doi:10.5194/hessd-12-6043-2015.
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- Mulder, G., Olsthoorn, T. N., Al-Manmi, D. A. M. A., Schrama, E. J. O., and Smidt, E. H.,
2015. Identifying water mass depletion in northern Iraq observed by GRACE. Hydrology and Earth System Sciences, 19:1487–1500,
doi:10.5194/hess-19-1487-2015.
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- Murböck, M., 2015. Virtual Constellations of Next Generation Gravity Missions, Deutsche Geod. Kommission, Reihe
C 750, pp. 111, Bayer. Akademie der Wissenschaften, Munich.
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- Murray, S. A., Henley, E. M., Jackson, D. R., and Bruinsma, S. L., 2015. Assessing the performance of
thermospheric modeling with data assimilation throughout solar cycles 23 and 24. Space Weather, 13:220–232, doi:10.1002/2015SW001163.
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- Nahavandchi, H., Joodaki, G., and Schwarz, V., 2015. GRACE-derived ice-mass loss spread over Greenland. Journal of Geodetic
Science, 5:10, doi:10.1515/jogs-2015-0010.
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- Nastula, J. and Gross, R., 2015. Chandler wobble parameters from SLR and GRACE. Journal of Geophysical Research (Solid
Earth), 120:4474–4483, doi:10.1002/2014JB011825.
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- Ning, S., Ishidaira, H., and Wang, J., 2015. Calibrating a Hydrologic Model by Step-Wise Method Using GRACE Tws and Discharge
Data. Journal of Japan Society of Civil Engineers, Ser. B1 (Hydraulic Engineering), 71, doi:10.2208/jscejhe.71.I_85.
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- Ouma, Y. O., Aballa, D. O., Marinda, D. O., Tateishi, R., and Hahn, M., 2015. Use of GRACE time-variable data
and GLDAS-LSM for estimating groundwater storage variability at small basin scales: a case study of the Nzoia River Basin.
International Journal of Remote Sensing, 36:5707–5736, doi:10.1080/01431161.2015.1104743.
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- Pail, R., 2015. Observing Mass Transport to Understand Global Change and to Benefit Society: Science and User Needs - An
international multi-disciplinary initiative for IUGG, Deutsche Geod. Kommission, Reihe B 320, pp. 122, Bayer. Akademie
der Wissenschaften, Munich.
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- Panday, P. K., Coe, M. T., Macedo, M. N., Lefebvre, P., and Castanho, A. D. d. A., 2015. Deforestation
offsets water balance changes due to climate variability in the Xingu River in eastern Amazonia. Journal of Hydrology,
523:822–829, doi:10.1016/j.jhydrol.2015.02.018.
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- Papanikolaou, T. D. and Papadopoulos, N., 2015. High-frequency analysis of Earth gravity field models based on terrestrial
gravity and GPS/levelling data: a case study in Greece. Journal of Geodetic Science, 5:8, doi:10.1515/jogs-2015-0008.
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- Park, J., Stolle, C., Xiong, C., Lühr, H., Pfaff, R. F., Buchert, S., and Martinis, C. R., 2015. A dayside
plasma depletion observed at midlatitudes during quiet geomagnetic conditions. Geophysical Research Letters, 42:967–974,
doi:10.1002/2014GL062655.
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- Penckwitt, A. A., Bodeker, G. E., Stoll, P., Lewis, J., von Clarmann, T., and Jones, A., 2015. Validation of merged
MSU4 and AMSU9 temperature climate records with a new 2002-2012 vertically resolved temperature record. Atmospheric Measurement
Techniques Discussions, 8:235–267, doi:10.5194/amtd-8-235-2015.
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- Pérez, D. and Bevilacqua, R., 2015. Neural Network based calibration of atmospheric density models. Acta Astronautica,
110:58–76, doi:10.1016/j.actaastro.2014.12.018.
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- Piecuch, C. G. and Ponte, R. M., 2015. A wind-driven nonseasonal barotropic fluctuation of the Canadian inland seas.
Ocean Science, 11:175–185, doi:10.5194/os-11-175-2015.
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- Piecuch, C. G., 2015. Bottom-pressure signature of annual baroclinic Rossby waves in the northeast tropical Pacific Ocean.
Journal of Geophysical Research (Oceans), 120:2449–2459, doi:10.1002/2014JC010667.
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- Pokhrel, Y. N., Koirala, S., Yeh, P. J.-F., Hanasaki, N., Longuevergne, L., Kanae, S., and Oki, T., 2015. Incorporation
of groundwater pumping in a global Land Surface Model with the representation of human impacts. Water Resources Research,
51:78–96, doi:10.1002/2014WR015602.
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- Qiang, L.-E. and Xu, P., 2015. Signature of biased range in the non-dynamical Chern-Simons modified gravity and its measurements
with satellite-satellite tracking missions: theoretical studies. European Physical Journal C, 75:390, doi:10.1140/epjc/s10052-015-3610-7.
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- Ramillien, G. L., Frappart, F., Gratton, S., and Vasseur, X., 2015. Sequential estimation of surface water mass changes
from daily satellite gravimetry data. Journal of Geodesy, 89:259–282, doi:10.1007/s00190-014-0772-2.
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- Reager, J., Thomas, A., Sproles, E., Rodell, M., Beaudoing, H., Li, B., and Famiglietti, J., 2015. Assimilation of GRACE Terrestrial
Water Storage Observations into a Land Surface Model for the Assessment of Regional Flood Potential. Remote Sensing,
7:14663–14679, doi:10.3390/rs71114663.
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- Rexer, M. and Hirt, C., 2015. Spectral analysis of the Earth's topographic potential via 2D-DFT: a new data-based degree variance
model to degree 90,000. Journal of Geodesy, 89:887–909, doi:10.1007/s00190-015-0822-4.
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- Richey, A. S., Thomas, B. F., Lo, M.-H., Reager, J. T., Famiglietti, J. S., Voss, K., Swenson, S., and
Rodell, M., 2015. Quantifying renewable groundwater stress with GRACE. Water Resources Research, 51:5217–5238,
doi:10.1002/2015WR017349.
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- Richey, A. S., Thomas, B. F., Lo, M.-H., Famiglietti, J. S., Swenson, S., and Rodell, M., 2015. Uncertainty
in global groundwater storage estimates in a Total Groundwater Stress framework. Water Resources Research, 51:5198–5216,
doi:10.1002/2015WR017351.
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- Robertson, R., Flury, J., Bandikova, T., and Schilling, M., 2015. Highly physical penumbra solar radiation pressure modeling
with atmospheric effects. Celestial Mechanics and Dynamical Astronomy, 123:169–202, doi:10.1007/s10569-015-9637-0.
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- Rodell, M., Beaudoing, H. K., L'Ecuyer, T. S., Olson, W. S., Famiglietti, J. S., Houser, P. R., Adler,
R., Bosilovich, M. G., Clayson, C. A., Chambers, D., Clark, E., Fetzer, E. J., Gao, X., Gu, G., Hilburn, K.,
Huffman, G. J., Lettenmaier, D. P., Liu, W. T., Robertson, F. R., Schlosser, C. A., Sheffield, J.,
and Wood, E. F., 2015. The Observed State of the Water Cycle in the Early Twenty-First Century. Journal of Climate,
28:8289–8318, doi:10.1175/JCLI-D-14-00555.1.
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- Root, B. C., Tarasov, L., and Wal, W., 2015. GRACE gravity observations constrain Weichselian ice thickness in the Barents
Sea. Geophysical Research Letters, 42:3313–3320, doi:10.1002/2015GL063769.
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- Saynisch, J., Bergmann-Wolf, I., and Thomas, M., 2015. Assimilation of GRACE-derived oceanic mass distributions with a global
ocean circulation model. Journal of Geodesy, 89:121–139, doi:10.1007/s00190-014-0766-0.
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- Scanlon, B. R., Zhang, Z., Reedy, R. C., Pool, D. R., Save, H., Long, D., Chen, J., Wolock, D. M., Conway,
B. D., and Winester, D., 2015. Hydrologic implications of GRACE satellite data in the Colorado River Basin. Water
Resources Research, 51:9891–9903, doi:10.1002/2015WR018090.
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- Seehaus, T., Marinsek, S., Helm, V., Skvarca, P., and Braun, M., 2015. Changes in ice dynamics, elevation and mass discharge
of Dinsmoor-Bombardier-Edgeworth glacier system, Antarctic Peninsula. Earth and Planetary Science Letters, 427:125–135,
doi:10.1016/j.epsl.2015.06.047.
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- Seo, K.-W., Wilson, C. R., Scambos, T., Kim, B.-M., Waliser, D. E., Tian, B., Kim, B.-H., and Eom, J., 2015. Surface
mass balance contributions to acceleration of Antarctic ice mass loss during 2003-2013. Journal of Geophysical Research
(Solid Earth), 120:3617–3627, doi:10.1002/2014JB011755.
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- Shang, K., Guo, J., Shum, C. K., Dai, C., and Luo, J., 2015. GRACE time-variable gravity field recovery using an improved
energy balance approach. Geophysical Journal International, 203:1773–1786, doi:10.1093/gji/ggv392.
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- Shang, K., GRACE Time-Variable Gravity Field Recovery Using an Improved Energy Balance Formalism. Ph.D. Thesis, The Ohio State
University, 2015.
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- Shubin, V. N., Karpachev, A. T., Telegin, V. A., and Tsybulya, K. G., 2015. Global model SMF2 of the F2-layer
maximum height. Geomagnetism and Aeronomy, 55:609–622, doi:10.1134/S001679321505014X.
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- Shubin, V. N., 2015. Global median model of the F2-layer peak height based on ionospheric radio-occultation and ground-based
Digisonde observations. Advances in Space Research, 56:916–928, doi:10.1016/j.asr.2015.05.029.
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- Song, C., Ke, L., Huang, B., and Richards, K. S., 2015. Can mountain glacier melting explains the GRACE-observed mass
loss in the southeast Tibetan Plateau: From a climate perspective?. Global and Planetary Change, 124:1–9, doi:10.1016/j.gloplacha.2014.11.001.
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- Soni, A. and Syed, T. H., 2015. Diagnosing Land Water Storage Variations in Major Indian River Basins using GRACE observations.
Global and Planetary Change, 133:263–271, doi:10.1016/j.gloplacha.2015.09.007.
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- Sosnica, K., Jäggi, A., Meyer, U., Thaller, D., Beutler, G., Arnold, D., and Dach, R., 2015. Time variable Earth's gravity
field from SLR satellites. Journal of Geodesy, 89:945–960, doi:10.1007/s00190-015-0825-1.
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- Sproles, E. A., Leibowitz, S. G., Reager, J. T., Wigington, Jr., P. J., Famiglietti, J. S., and Patil,
S. D., 2015. GRACE storage-runoff hystereses reveal the dynamics of regional watersheds. Hydrology and Earth System
Sciences, 19:3253–3272, doi:10.5194/hess-19-3253-2015.
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- Su, X., Shum, C. K., Guo, J., Duan, J., Howat, I., and Yi, Y., 2015. High resolution Greenland ice sheet inter-annual
mass variations combining GRACE gravimetry and Envisat altimetry. Earth and Planetary Science Letters, 422:11–17,
doi:10.1016/j.epsl.2015.04.016.
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- Sun, A. Y., Chen, J., and Donges, J., 2015. Global terrestrial water storage connectivity revealed using complex climate
network analyses. Nonlinear Processes in Geophysics, 22:433–446, doi:10.5194/npg-22-433-2015.
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- Susanto, R. D. and Song, Y. T., 2015. Indonesian throughflow proxy from satellite altimeters and gravimeters. Journal
of Geophysical Research (Oceans), 120:2844–2855, doi:10.1002/2014JC010382.
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- Swenson, S. C. and Lawrence, D. M., 2015. A GRACE-based assessment of interannual groundwater dynamics in the Community
Land Model. Water Resources Research, 51:8817–8833, doi:10.1002/2015WR017582.
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- Tanaka, Y., Heki, K., Matsuo, K., and Shestakov, N. V., 2015. Crustal subsidence observed by GRACE after the 2013 Okhotsk
deep-focus earthquake. Geophysical Research Letters, 42:3204–3209, doi:10.1002/2015GL063838.
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- Tang, J., Riley, W. J., and Niu, J., 2015. Incorporating root hydraulic redistribution in CLM4.5: Effects on predicted
site and global evapotranspiration, soil moisture, and water storage. Journal of Advances in Modeling Earth Systems,
7:1828–1848, doi:10.1002/2015MS000484.
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- Tangdamrongsub, N., Steele-Dunne, S. C., Gunter, B. C., Ditmar, P. G., and Weerts, A. H., 2015. Data assimilation
of GRACE terrestrial water storage estimates into a regional hydrological model of the Rhine River basin. Hydrology and
Earth System Sciences, 19:2079–2100, doi:10.5194/hess-19-2079-2015.
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- van der Meijde, M., Pail, R., Bingham, R., and Floberghagen, R., 2015. GOCE data, models, and applications: A review. International
Journal of Applied Earth Observation and Geoinformation, 35:4–15, doi:10.1016/j.jag.2013.10.001.
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- van der Meijde, M., Pail, R., and Bingham, R., 2015. Introduction to the special issue on GOCE Earth science applications
and models. International Journal of Applied Earth Observation and Geoinformation, 35:1–3, doi:10.1016/j.jag.2014.09.008.
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- van der Wal, W., Whitehouse, P. L., and Schrama, E. J. O., 2015. Effect of GIA models with 3D composite mantle
viscosity on GRACE mass balance estimates for Antarctica. Earth and Planetary Science Letters, 414:134–143, doi:10.1016/j.epsl.2015.01.001.
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- Wahr, J., Nerem, R. S., and Bettadpur, S. V., 2015. The pole tide and its effect on GRACE time-variable gravity
measurements: Implications for estimates of surface mass variations. Journal of Geophysical Research (Solid Earth),
120:4597–4615, doi:10.1002/2015JB011986.
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- Wan, Z., Zhang, K., Xue, X., Hong, Z., Hong, Y., and Gourley, J. J., 2015. Water balance-based actual evapotranspiration
reconstruction from ground and satellite observations over the conterminous United States. Water Resources Research,
51:6485–6499, doi:10.1002/2015WR017311.
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- Wang, H. B., Zhao, C. Y., Zhang, W., Zhan, J. W., and Yu, S. X., 2015. Evaluation of Gravitational Field
Models Based on the Laser Range Observation of Low Earth Orbit Satellites. Acta Astronomica Sinica, 56:463–473.
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- Watkins, M. M., Wiese, D. N., Yuan, D.-N., Boening, C., and Landerer, F. W., 2015. Improved methods for observing
Earth's time variable mass distribution with GRACE using spherical cap mascons. Journal of Geophysical Research (Solid
Earth), 120:2648–2671, doi:10.1002/2014JB011547.
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- Wolstencroft, M., King, M. A., Whitehouse, P. L., Bentley, M. J., Nield, G. A., King, E. C., McMillan,
M., Shepherd, A., Barletta, V., Bordoni, A., Riva, R. E. M., Didova, O., and Gunter, B. C., 2015. Uplift rates
from a new high-density GPS network in Palmer Land indicate significant late Holocene ice loss in the southwestern Weddell
Sea. Geophysical Journal International, 203:737–754, doi:10.1093/gji/ggv327.
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- Wouters, B., Martin-Español, A., Helm, V., Flament, T., van Wessem, J. M., Ligtenberg, S. R. M., van
den Broeke, M. R., and Bamber, J. L., 2015. Dynamic thinning of glaciers on the Southern Antarctic Peninsula. Science,
348(6237):899–903, doi:10.1126/science.aaa5727.
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- Wu, X. and Heflin, M. B., 2015. A global assessment of accelerations in surface mass transport. Geophysical Research
Letters, 42:6716–6723, doi:10.1002/2015GL064941.
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- Xiong, C., Zhou, Y.-L., Lühr, H., and Ma, S.-Y., 2015. Tidal signatures of the thermospheric mass density and zonal wind
at midlatitude: CHAMP and GRACE observations. Annales Geophysicae, 33:185–196, doi:10.5194/angeo-33-185-2015.
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- Xiong, C., Lühr, H., Ma, S., and Schlegel, K., 2015. Validation of GRACE electron densities by incoherent scatter radar
data and estimation of plasma scale height in the topside ionosphere. Advances in Space Research, 55:2048–2057,
doi:10.1016/j.asr.2014.07.022.
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- Xu, Z., Schrama, E., and van der Wal, W., 2015. Optimization of regional constraints for estimating the Greenland mass balance
with GRACE level-2 data. Geophysical Journal International, 202:381–393, doi:10.1093/gji/ggv146.
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- Yamazaki, Y., Kosch, M. J., and Sutton, E. K., 2015. A model of high-latitude thermospheric density. Journal
of Geophysical Research (Space Physics), 120:7903–7917, doi:10.1002/2015JA021371.
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- Yang, P. and Chen, Y., 2015. An analysis of terrestrial water storage variations from GRACE and GLDAS: The Tianshan Mountains
and its adjacent areas, central Asia. Quaternary International, 358:106–112, doi:10.1016/j.quaint.2014.09.077.
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- Yang, T., Wang, C., Chen, Y., Chen, X., and Yu, Z., 2015. Climate change and water storage variability over an arid endorheic
region. Journal of Hydrology, 529:330–339, doi:10.1016/j.jhydrol.2015.07.051.
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- Yi, S., Sun, W., Heki, K., and Qian, A., 2015. An increase in the rate of global mean sea level rise since 2010. Geophysical
Research Letters, 42:3998–4006, doi:10.1002/2015GL063902.
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- Zeng, Y. Y., Guo, J. Y., Shang, K., Shum, C. K., and Yu, J. H., 2015. On the formulation of gravitational
potential difference between the GRACE satellites based on energy integral in Earth fixed frame. Geophysical Journal International,
202:1792–1804, doi:10.1093/gji/ggv248.
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- Zhang, Z., Chao, B. F., Chen, J., and Wilson, C. R., 2015. Terrestrial water storage anomalies of Yangtze River
Basin droughts observed by GRACE and connections with ENSO. Global and Planetary Change, 126:35–45, doi:10.1016/j.gloplacha.2015.01.002.
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- Zheng, W., Hsu, H., Zhong, M., and Yun, M., 2015. Requirements Analysis for Future Satellite Gravity Mission Improved-GRACE.
Surveys in Geophysics, 36:87–109, doi:10.1007/s10712-014-9306-y.
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- Awange, J. L., Gebremichael, M., Forootan, E., Wakbulcho, G., Anyah, R., Ferreira, V. G., and Alemayehu, T., 2014.
Characterization of Ethiopian mega hydrogeological regimes using GRACE, TRMM and GLDAS datasets. Advances in Water Resources,
74:64–78, doi:10.1016/j.advwatres.2014.07.012.
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- Awange, J. L., Forootan, E., Kuhn, M., Kusche, J., and Heck, B., 2014. Water storage changes and climate variability
within the Nile Basin between 2002 and 2011. Advances in Water Resources, 73:1–15, doi:10.1016/j.advwatres.2014.06.010.
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- Bandikova, T. and Flury, J., 2014. Improvement of the GRACE star camera data based on the revision of the combination method.
Advances in Space Research, 54:1818–1827, doi:10.1016/j.asr.2014.07.004.
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- Baur, O., Bock, H., Höck, E., Jäggi, A., Krauss, S., Mayer-Gürr, T., Reubelt, T., Siemes, C., and Zehentner,
N., 2014. Comparison of GOCE-GPS gravity fields derived by different approaches. Journal of Geodesy, 88:959–973,
doi:10.1007/s00190-014-0736-6.
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- Becker, S., Losch, M., Brockmann, J. M., Freiwald, G., and Schuh, W.-D., 2014. A Tailored Computation of the Mean Dynamic
Topography for a Consistent Integration into Ocean Circulation Models. Surveys in Geophysics, 35:1507–1525, doi:10.1007/s10712-013-9272-9.
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- Bergmann-Wolf, I., Zhang, L., and Dobslaw, H., 2014. Global eustatic sea-level variations for the approximation of geocenter
motion from GRACE. Journal of Geodetic Science, 4:37–48, doi:10.2478/jogs-2014-0006.
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- Bezdek, A., Sebera, J., Klokocn\'ık, J., and Kostelecký, J., 2014. Gravity field models from kinematic orbits
of CHAMP, GRACE and GOCE satellites. Advances in Space Research, 53:412–429, doi:10.1016/j.asr.2013.11.031.
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- Boergens, E., Rangelova, E., Sideris, M. G., and Kusche, J., 2014. Assessment of the capabilities of the temporal and
spatiotemporal ICA method for geophysical signal separation in GRACE data. Journal of Geophysical Research (Solid Earth),
119:4429–4447, doi:10.1002/2013JB010452.
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- Bouman, J., Fuchs, M., Lieb, V., Bosch, W., Dettmering, D., and Schmidt, M., 2014. GOCE Gravity Gradients: Combination with
GRACE and Satellite Altimetry. In Flechtner, F., Sneeuw, N., and Schuh, W.-D. (editors), Observation of the System Earth
from Space - CHAMP, GRACE, GOCE and future missions, pp. 89–94, Springer, Berlin, Heidelberg.
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- Bouman, J., Fuchs, M., Ivins, E., Wal, W., Schrama, E., Visser, P., and Horwath, M., 2014. Antarctic outlet glacier mass change
resolved at basin scale from satellite gravity gradiometry. Geophysical Research Letters, 41:5919–5926, doi:10.1002/2014GL060637.
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- Breña-Naranjo, J. A., Kendall, A. D., and Hyndman, D. W., 2014. Improved methods for satellite-based
groundwater storage estimates: A decade of monitoring the high plains aquifer from space and ground observations. Geophysical
Research Letters, 41:6167–6173, doi:10.1002/2014GL061213.
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- Broerse, T., Riva, R., and Vermeersen, B., 2014. Ocean contribution to seismic gravity changes: the sea level equation for
seismic perturbations revisited. Geophysical Journal International, 199:1094–1109, doi:10.1093/gji/ggu315.
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- Bruinsma, S. L., Förste, C., Abrikosov, O., Lemoine, J.-M., Marty, J.-C., Mulet, S., Rio, M.-H., and Bonvalot, S.,
2014. ESA's satellite-only gravity field model via the direct approach based on all GOCE data. Geophysical Research Letters,
41:7508–7514, doi:10.1002/2014GL062045.
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- Camp, M. V., Viron, O. d., Métivier, L., Meurers, B., and Francis, O., 2014. The quest for a consistent signal
in ground and GRACE gravity time-series. Geophysical Journal International, 197:192–201, doi:10.1093/gji/ggt524.
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- Camp, M. V., Viron, O. d., Métivier, L., Meurers, B., and Francis, O., 2014. Reply to Comment on: `The quest
for a consistent signal in ground and GRACE gravity time series', by Michel Van Camp, Olivier de Viron, Laurent Métivier,
Bruno Meurers and Olivier Francis. Geophysical Journal International, 199:1818–1822, doi:10.1093/gji/ggu360.
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- Castle, S. L., Thomas, B. F., Reager, J. T., Rodell, M., Swenson, S. C., and Famiglietti, J. S.,
2014. Groundwater depletion during drought threatens future water security of the Colorado River Basin. Geophysical Research
Letters, 41:5904–5911, doi:10.1002/2014GL061055.
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- Chanard, K., Avouac, J. P., Ramillien, G., and Genrich, J., 2014. Modeling deformation induced by seasonal variations
of continental water in the Himalaya region: Sensitivity to Earth elastic structure. Journal of Geophysical Research (Solid
Earth), 119:5097–5113, doi:10.1002/2013JB010451.
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- Chen, H., Liu, H., and Hanada, T., 2014. Storm-time atmospheric density modeling using neural networks and its application
in orbit propagation. Advances in Space Research, 53:558–567, doi:10.1016/j.asr.2013.11.052.
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- Chen, J., Li, J., Zhang, Z., and Ni, S., 2014. Long-term groundwater variations in Northwest India from satellite gravity
measurements. Global and Planetary Change, 116:130–138, doi:10.1016/j.gloplacha.2014.02.007.
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- Chew, C. C. and Small, E. E., 2014. Terrestrial water storage response to the 2012 drought estimated from GPS vertical
position anomalies. Geophysical Research Letters, 41:6145–6151, doi:10.1002/2014GL061206.
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- Church, C. J., A feasibility study on the implementation of satellite-to-satellite tracking around a small near-Earth
object. Ph.D. Thesis, The University of North Dakota, 2014.
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- Crossley, D. J., Boy, J.-P., Hinderer, J., Jahr, T., Weise, A., Wziontek, H., Abe, M., and Förste, C., 2014. Comment
on: `The quest for a consistent signal in ground and GRACE gravity time-series', by Michel Van Camp, Olivier de Viron, Laurent
Metivier, Bruno Meurers and Olivier Francis. Geophysical Journal International, 199:1811–1817, doi:10.1093/gji/ggu259.
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- Dahle, C., Flechtner, F., Gruber, C., König, D., König, R., Michalak, G., and Neumayer, K.-H., 2014. GFZ RL05: An
Improved Time-Series of Monthly GRACE Gravity Field Solutions. In Flechtner, F., Sneeuw, N., and Schuh, W.-D. (editors), Observation
of the System Earth from Space - CHAMP, GRACE, GOCE and future missions, pp. 29–40, Springer, Berlin, Heidelberg.
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- Dai, C., Shum, C. K., Wang, R., Wang, L., Guo, J., Shang, K., and Tapley, B., 2014. Improved constraints on seismic source
parameters of the 2011 Tohoku earthquake from GRACE gravity and gravity gradient changes. Geophysical Research Letters,
41:1929–1936, doi:10.1002/2013GL059178.
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- Dapeng, M., Zhongchang, S., and Jinyun, G., 2014. Estimating continental water storage variations in Central Asia area using
GRACE data. IOP Conference Series: Earth and Environmental Science, 17(1):012131, doi:10.1088/1755-1315/17/1/012131.
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- Darama, Y., 2014. Comment on ''Groundwater depletion in the Middle East from GRACE with implications for transboundary water
management in the Tigris-Euphrates-Western Iran Region'' by Katalyn A. Voss et al.. Water Resources Research, 50:754–757,
doi:10.1002/2013WR014084.
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- de Linage, C., Famiglietti, J. S., and Randerson, J. T., 2014. Statistical prediction of terrestrial water storage
changes in the Amazon Basin using tropical Pacific and North Atlantic sea surface temperature anomalies. Hydrology and
Earth System Sciences, 18:2089–2102, doi:10.5194/hess-18-2089-2014.
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- Döll, P., Müller Schmied, H., Schuh, C., Portmann, F. T., and Eicker, A., 2014. Global-scale assessment of
groundwater depletion and related groundwater abstractions: Combining hydrological modeling with information from well observations
and GRACE satellites. Water Resources Research, 50:5698–5720, doi:10.1002/2014WR015595.
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- Döll, P., Fritsche, M., Eicker, A., and Müller Schmied, H., 2014. Seasonal Water Storage Variations as Impacted
by Water Abstractions: Comparing the Output of a Global Hydrological Model with GRACE and GPS Observations. Surveys in
Geophysics, 35:1311–1331, doi:10.1007/s10712-014-9282-2.
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- Douch, K., Christophe, B., Foulon, B., Panet, I., Pajot-Métivier, G., and Diament, M., 2014. Ultra-sensitive electrostatic
planar acceleration gradiometer for airborne geophysical surveys. Measurement Science and Technology, 25(10):105902,
doi:10.1088/0957-0233/25/10/105902.
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- Eicker, A., Kurtenbach, E., Kusche, J., and Shabanloui, A., 2014. Comparison of Daily GRACE Solutions to GPS Station Height
Movements. In Flechtner, F., Sneeuw, N., and Schuh, W.-D. (editors), Observation of the System Earth from Space - CHAMP,
GRACE, GOCE and future missions, pp. 47–52, Springer, Berlin, Heidelberg.
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- Eicker, A., Schumacher, M., Kusche, J., Döll, P., and Schmied, H. M., 2014. Calibration/Data Assimilation Approach
for Integrating GRACE Data into the WaterGAP Global Hydrology Model (WGHM) Using an Ensemble Kalman Filter: First Results.
Surveys in Geophysics, 35:1285–1309, doi:10.1007/s10712-014-9309-8.
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- Elsaka, B., 2014. Sub-monthly gravity field recovery from simulated multi-GRACE mission type. Acta Geophysica, 62:241–258,
doi:10.2478/s11600-013-0170-9.
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- Elsaka, B., Raimondo, J.-C., Brieden, P., Reubelt, T., Kusche, J., Flechtner, F., Iran Pour, S., Sneeuw, N., and Müller,
J., 2014. Comparing seven candidate mission configurations for temporal gravity field retrieval through full-scale numerical
simulation. Journal of Geodesy, 88:31–43, doi:10.1007/s00190-013-0665-9.
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- Elsaka, B., Forootan, E., and Alothman, A., 2014. Improving the recovery of monthly regional water storage using one year
simulated observations of two pairs of GRACE-type satellite gravimetry constellation. Journal of Applied Geophysics,
109:195–209, doi:10.1016/j.jappgeo.2014.07.026.
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- Eriksson, D. and MacMillan, D. S., 2014. Continental hydrology loading observed by VLBI measurements. Journal of Geodesy,
88:675–690, doi:10.1007/s00190-014-0713-0.
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- Farahani, H. H., Ditmar, P., and Klees, R., 2014. Assessment of the added value of data from the GOCE satellite mission
to time-varying gravity field modelling. Journal of Geodesy, 88:157–178, doi:10.1007/s00190-013-0674-8.
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- Feng, W., Lemoine, J.-M., Zhong, M., and Hsu, H. T., 2014. Mass-induced sea level variations in the Red Sea from GRACE,
steric-corrected altimetry, in situ bottom pressure records, and hydrographic observations. Journal of Geodynamics,
78:1–7, doi:10.1016/j.jog.2014.04.008.
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- Flechtner, F., 2014. LOTSE-CHAMP/GRACE: An Interdisciplinary Research Project for Earth Observation from Space. In Flechtner,
F., Sneeuw, N., and Schuh, W.-D. (editors), Observation of the System Earth from Space - CHAMP, GRACE, GOCE and future
missions, pp. 3–8, Springer, Berlin, Heidelberg.
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- Flechtner, F., Morton, P., Watkins, M., and Webb, F., 2014. Status of the GRACE Follow-on Mission. In Marti, U. (editors),
Gravity, Geoid and Height Systems, Proceed. IAG Symp. 141, pp. 117–122, Springer, Berlin, Heidelberg.
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- Fleddermann, R., Ward, R. L., Elliot, M., Wuchenich, D. M., Gilles, F., Herding, M., Nicklaus, K., Brown, J., Burke,
J., Dligatch, S., Farrant, D. I., Green, K. L., Seckold, J. A., Blundell, M., Brister, R., Smith, C., Sheard,
B. S., Heinzel, G., Danzmann, K., Klipstein, B., McClelland, D. E., and Shaddock, D. A., 2014. Testing the
GRACE follow-on triple mirror assembly. Classical and Quantum Gravity, 31(19):195004, doi:10.1088/0264-9381/31/19/195004.
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- Forootan, E., Didova, O., Schumacher, M., Kusche, J., and Elsaka, B., 2014. Comparisons of atmospheric mass variations derived
from ECMWF reanalysis and operational fields, over 2003–2011. Journal of Geodesy, 88:503–514, doi:10.1007/s00190-014-0696-x.
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- Forootan, E., Kusche, J., Loth, I., Schuh, W.-D., Eicker, A., Awange, J., Longuevergne, L., Diekkrüger, B., Schmidt,
M., and Shum, C. K., 2014. Multivariate Prediction of Total Water Storage Changes Over West Africa from Multi-Satellite
Data. Surveys in Geophysics, 35:913–940, doi:10.1007/s10712-014-9292-0.
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- Freedman, F. R., Pitts, K. L., and Bridger, A. F. C., 2014. Evaluation of CMIP climate model hydrological
output for the Mississippi River Basin using GRACE satellite observations. Journal of Hydrology, 519:3566–3577,
doi:10.1016/j.jhydrol.2014.10.036.
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- Groh, A., Ewert, H., Rosenau, R., Fagiolini, E., Gruber, C., Floricioiu, D., Abdel Jaber, W., Linow, S., Flechtner, F., Eineder,
M., Dierking, W., and Dietrich, R., 2014. Mass, Volume and Velocity of the Antarctic Ice Sheet: Present-Day Changes and Error
Effects. Surveys in Geophysics, 35:1481–1505, doi:10.1007/s10712-014-9286-y.
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- Groh, A., Ewert, H., Fritsche, M., Rülke, A., Rosenau, R., Scheinert, M., and Dietrich, R., 2014. Assessing the Current
Evolution of the Greenland Ice Sheet by Means of Satellite and Ground-Based Observations. Surveys in Geophysics, 35:1459–1480,
doi:10.1007/s10712-014-9287-x.
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- Guan, K., Wood, E. F., Medvigy, D., Kimball, J., Pan, M., Caylor, K. K., Sheffield, J., Xu, X., and Jones, M. O.,
2014. Terrestrial hydrological controls on land surface phenology of African savannas and woodlands. Journal of Geophysical
Research (Biogeosciences), 119:1652–1669, doi:10.1002/2013JG002572.
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- Guimberteau, M., Ducharne, A., Ciais, P., Boisier, J. P., Peng, S., De Weirdt, M., and Verbeeck, H., 2014. Testing conceptual
and physically based soil hydrology schemes against observations for the Amazon Basin. Geoscientific Model Development,
7:1115–1136, doi:10.5194/gmd-7-1115-2014.
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- Gunter, B. C., Didova, O., Riva, R. E. M., Ligtenberg, S. R. M., Lenaerts, J. T. M., King,
M. A., van den Broeke, M. R., and Urban, T., 2014. Empirical estimation of present-day Antarctic glacial isostatic
adjustment and ice mass change. The Cryosphere, 8:743–760, doi:10.5194/tc-8-743-2014.
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- Guo, J., Mu, D., Liu, X., Yan, H., and Dai, H., 2014. Equivalent water height extracted from GRACE gravity field model with
robust independent component analysis. Acta Geophysica, 62:953–972, doi:10.2478/s11600-014-0210-0.
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- Habarulema, J. B., Katamzi, Z. T., and Yizengaw, E., 2014. A simultaneous study of ionospheric parameters derived
from FORMOSAT-3/COSMIC, GRACE, and CHAMP missions over middle, low, and equatorial latitudes: Comparison with ionosonde data.
Journal of Geophysical Research (Space Physics), 119:7732–7744, doi:10.1002/2014JA020192.
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- Han, S.-C., Sauber, J., and Pollitz, F., 2014. Broadscale postseismic gravity change following the 2011 Tohoku-Oki earthquake
and implication for deformation by viscoelastic relaxation and afterslip. Geophysical Research Letters, 41:5797–5805,
doi:10.1002/2014GL060905.
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- Hassan, A. A. and Jin, S., 2014. Lake level change and total water discharge in East Africa Rift Valley from satellite-based
observations. Global and Planetary Change, 117:79–90, doi:10.1016/j.gloplacha.2014.03.005.
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- Hassan, A. A. and Jin, S., 2014. Water Cycle and Climate Signals in Africa Observed by Satellite Gravimetry. IOP Conference
Series: Earth and Environmental Science, 17(1):012149, doi:10.1088/1755-1315/17/1/012149.
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- Heise, S., Wickert, J., Arras, C., Beyerle, G., Faber, A., Michalak, G., Schmidt, T., and Zus, F., 2014. Reprocessing and
Application of GPS Radio Occultation Data from CHAMP and GRACE. In Flechtner, F., Sneeuw, N., and Schuh, W.-D. (editors),
Observation of the System Earth from Space - CHAMP, GRACE, GOCE and future missions, pp. 63–74, Springer, Berlin,
Heidelberg.
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- Herceg, M., Tscherning, C. C., and Levinsen, J. F., 2014. Sensitivity of Goce gradients on Greenland mass variation
and changes in ice topography. Journal of Geodetic Science, 4:8–18, doi:10.2478/jogs-2014-0001.
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- Joodaki, G., Wahr, J., and Swenson, S., 2014. Estimating the human contribution to groundwater depletion in the Middle East,
from GRACE data, land surface models, and well observations. Water Resources Research, 50:2679–2692, doi:10.1002/2013WR014633.
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- Klinger, B., Baur, O., and Mayer-Gürr, T., 2014. GRAIL gravity field recovery based on the short-arc integral equation
technique: Simulation studies and first real data results. Planetary and Space Science, 91:83–90, doi:10.1016/j.pss.2013.12.001.
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- König, D. and Dahle, C., 2014. GRACE Gravity Modeling Using the Integrated Approach. In Flechtner, F., Sneeuw, N., and
Schuh, W.-D. (editors), Observation of the System Earth from Space - CHAMP, GRACE, GOCE and future missions, pp. 41–46,
Springer, Berlin, Heidelberg.
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- Krauss, S., Pfleger, M., and Lammer, H., 2014. Satellite-based analysis of thermosphere response to extreme solar flares.
Annales Geophysicae, 32:1305–1309, doi:10.5194/angeo-32-1305-2014.
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- Kuang, D., Desai, S., Sibthorpe, A., and Pi, X., 2014. Measuring atmospheric density using GPS–LEO tracking data. Advances
in Space Research, 53:243–256, doi:10.1016/j.asr.2013.11.022.
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- Lei, J., Wang, W., Burns, A. G., Yue, X., Dou, X., Luan, X., Solomon, S. C., and Liu, Y. C.-M., 2014. New aspects
of the ionospheric response to the October 2003 superstorms from multiple-satellite observations. Journal of Geophysical
Research (Space Physics), 119:2298–2317, doi:10.1002/2013JA019575.
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- Li, J., Chen, J., and Zhang, Z., 2014. Seismologic applications of GRACE time-variable gravity measurements. Earthquake
Science, 27:229–245, doi:10.1007/s11589-014-0072-1.
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- Liu, X., Thayer, J. P., Burns, A., Wang, W., and Sutton, E., 2014. Altitude variations in the thermosphere mass density
response to geomagnetic activity during the recent solar minimum. Journal of Geophysical Research (Space Physics),
119:2160–2177, doi:10.1002/2013JA019453.
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- Long, D., Longuevergne, L., and Scanlon, B. R., 2014. Uncertainty in evapotranspiration from land surface modeling, remote
sensing, and GRACE satellites. Water Resources Research, 50:1131–1151, doi:10.1002/2013WR014581.
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- Lu, G., Hagan, M. E., Häusler, K., Doornbos, E., Bruinsma, S., Anderson, B. J., and Korth, H., 2014. Global
ionospheric and thermospheric response to the 5 April 2010 geomagnetic storm: An integrated data-model investigation. Journal
of Geophysical Research (Space Physics), 119(A18):10358, doi:10.1002/2014JA020555.
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- Mehta, P. M., Walker, A., Lawrence, E., Linares, R., Higdon, D., and Koller, J., 2014. Modeling satellite drag coefficients
with response surfaces. Advances in Space Research, 54:1590–1607, doi:10.1016/j.asr.2014.06.033.
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- Mémin, A., Flament, T., Rémy, F., and Llubes, M., 2014. Snow- and ice-height change in Antarctica from satellite
gravimetry and altimetry data. Earth and Planetary Science Letters, 404:344–353, doi:10.1016/j.epsl.2014.08.008.
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- Michalak, G., König, D., Neumayer, K.-H., and Dahle, C., 2014. Improvement in GPS Orbit Determination at GFZ. In Flechtner,
F., Sneeuw, N., and Schuh, W.-D. (editors), Observation of the System Earth from Space - CHAMP, GRACE, GOCE and future
missions, pp. 9–18, Springer, Berlin, Heidelberg.
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- Mikhailov, V. O., Panet, I., Hayn, M., Timoshkina, E. P., Bonvalot, S., Lyakhovsky, V., Diament, M., and Viron,
O. d., 2014. Comparative study of temporal variations in the earth's gravity field using GRACE gravity models in the
regions of three recent giant earthquakes. Izvestiya Physics of the Solid Earth, 50:177–191, doi:10.1134/S1069351314020062.
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- Moore, P. and Williams, S. D. P., 2014. Integration of altimetric lake levels and GRACE gravimetry over Africa:
Inferences for terrestrial water storage change 2003-2011. Water Resources Research, 50:9696–9720, doi:10.1002/2014WR015506.
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- Murböck, M., Pail, R., Daras, I., and Gruber, T., 2014. Optimal orbits for temporal gravity recovery regarding temporal
aliasing. Journal of Geodesy, 88:113–126, doi:10.1007/s00190-013-0671-y.
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- Neumayer, K.-H., 2014. Using Accelerometer Data as Observations. In Flechtner, F., Sneeuw, N., and Schuh, W.-D. (editors),
Observation of the System Earth from Space - CHAMP, GRACE, GOCE and future missions, pp. 19–28, Springer, Berlin,
Heidelberg.
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- Ning, S., Ishidaira, H., and Wang, J., 2014. Statistical Downscaling of Grace-Derived Terrestrial Water Storage Using Satellite
and Gldas Products. Journal of Japan Society of Civil Engineers, Ser. B1 (Hydraulic Engineering), 70, doi:10.2208/jscejhe.70.I_133.
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- Niu, J., Shen, C., Li, S.-G., and Phanikumar, M. S., 2014. Quantifying storage changes in regional Great Lakes watersheds
using a coupled subsurface-land surface process model and GRACE, MODIS products. Water Resources Research, 50:7359–7377,
doi:10.1002/2014WR015589.
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- Oliveira, P. T. S., Nearing, M. A., Moran, M. S., Goodrich, D. C., Wendland, E., and Gupta, H. V.,
2014. Trends in water balance components across the Brazilian Cerrado. Water Resources Research, 50:7100–7114,
doi:10.1002/2013WR015202.
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- Papanikolaou, T. D. and Tsoulis, D., 2014. Dynamic orbit parameterization and assessment in the frame of current GOCE
gravity models. Physics of the Earth and Planetary Interiors, 236:1–9, doi:10.1016/j.pepi.2014.08.003.
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- Peralta-Ferriz, C., Morison, J. H., Wallace, J. M., Bonin, J. A., and Zhang, J., 2014. Arctic Ocean Circulation
Patterns Revealed by GRACE. Journal of Climate, 27:1445–1468, doi:10.1175/JCLI-D-13-00013.1.
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- Peterseim, N., Schlicht, A., Flury, J., and Dahle, C., 2014. Identification and Reduction of Satellite-Induced Signals in
GRACE Accelerometer Data. In Flechtner, F., Sneeuw, N., and Schuh, W.-D. (editors), Observation of the System Earth from
Space - CHAMP, GRACE, GOCE and future missions, pp. 53–62, Springer, Berlin, Heidelberg.
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- Peterseim, N., 2014. TWANGS - High-Frequency Disturbing Signals in 10 Hz Accelerometer Data of the GRACE Satellites,
Deutsche Geod. Kommission, Reihe C 735, pp. 200, Bayer. Akademie der Wissenschaften, Munich.
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- Petrick, C., Dobslaw, H., Bergmann-Wolf, I., Schön, N., Matthes, K., and Thomas, M., 2014. Low-frequency ocean bottom
pressure variations in the North Pacific in response to time-variable surface winds. Journal of Geophysical Research (Oceans),
119:5190–5202, doi:10.1002/2013JC009635.
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- Petrovskaya, M. S. and Vershkov, A. N., 2014. The construction of gravitational field models on the basis of satellite
measurements of gravitational potential derivatives. Cosmic Research, 52:166–174, doi:10.1134/S0010952514020051.
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- Piecuch, C. G. and Ponte, R. M., 2014. Nonseasonal mass fluctuations in the midlatitude North Atlantic Ocean. Geophysical
Research Letters, 41:4261–4269, doi:10.1002/2014GL060248.
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- Purkey, S. G., Johnson, G. C., and Chambers, D. P., 2014. Relative contributions of ocean mass and deep steric
changes to sea level rise between 1993 and 2013. Journal of Geophysical Research (Oceans), 119:7509–7522, doi:10.1002/2014JC010180.
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- Purkey, S. M. G., The Abyssal Ocean's Contributions to the Global Energy and Sea Level Budgets Between the 1990s
and 2000s. Ph.D. Thesis, University of Washington, 2014.
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- Reager, J. T., Thomas, B. F., and Famiglietti, J. S., 2014. River basin flood potential inferred using GRACE
gravity observations at several months lead time. Nature Geoscience, 7:588–592, doi:10.1038/ngeo2203.
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- Reubelt, T., Sneeuw, N., and Iran Pour, S. et mult. al., 2014. Future Gravity Field Satellite Missions. In Flechtner, F.,
Sneeuw, N., and Schuh, W.-D. (editors), Observation of the System Earth from Space - CHAMP, GRACE, GOCE and future missions,
pp. 165–175, Springer, Berlin, Heidelberg.
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- Rexer, M., Hirt, C., Pail, R., and Claessens, S., 2014. Evaluation of the third- and fourth-generation GOCE Earth gravity
field models with Australian terrestrial gravity data in spherical harmonics. Journal of Geodesy, 88:319–333,
doi:10.1007/s00190-013-0680-x.
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- Riegger, J. and Tourian, M. J., 2014. Characterization of runoff-storage relationships by satellite gravimetry and remote
sensing. Water Resources Research, 50:3444–3466, doi:10.1002/2013WR013847.
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- Rietbroek, R., Fritsche, M., Dahle, C., Brunnabend, S.-E., Behnisch, M., Kusche, J., Flechtner, F., Schröter, J., and
Dietrich, R., 2014. Can GPS-Derived Surface Loading Bridge a GRACE Mission Gap?. Surveys in Geophysics, 35:1267–1283,
doi:10.1007/s10712-013-9276-5.
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- Rudenko, S., Dettmering, D., Esselborn, S., Schöne, T., Förste, C., Lemoine, J.-M., Ablain, M., Alexandre, D., and
Neumayer, K.-H., 2014. Influence of time variable geopotential models on precise orbits of altimetry satellites, global and
regional mean sea level trends. Advances in Space Research, 54:92–118, doi:10.1016/j.asr.2014.03.010.
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- Sakumura, C., Bettadpur, S., and Bruinsma, S., 2014. Ensemble prediction and intercomparison analysis of GRACE time-variable
gravity field models. Geophysical Research Letters, 41:1389–1397, doi:10.1002/2013GL058632.
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- Sanchez, D. M., Prado, A. F. B. A., and Yokoyama, T., 2014. On the effects of each term of the geopotential
perturbation along the time I: Quasi-circular orbits. Advances in Space Research, 54:1008–1018, doi:10.1016/j.asr.2014.06.003.
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- Schrama, E. J. O., Wouters, B., and Rietbroek, R., 2014. A mascon approach to assess ice sheet and glacier mass
balances and their uncertainties from GRACE data. Journal of Geophysical Research (Solid Earth), 119:6048–6066,
doi:10.1002/2013JB010923.
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- Schütze, D., Müller, V., Stede, G., Sheard, B. S., Heinzel, G., Danzmann, K., Sutton, A. J., and Shaddock,
D. A., 2014. Retroreflector for GRACE follow-on: Vertex vs point of minimal coupling. Optics Express, 22:9324,
doi:10.1364/OE.22.009324.
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- Schütze, D., Farrant, D., Shaddock, D. A., Sheard, B. S., Heinzel, G., and Danzmann, K., 2014. Measuring coalignment
of retroreflectors with large lateral incoming-outgoing beam offset. Review of Scientific Instruments, 85(3):035103,
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- Schütze, D., Stede, G., Müller, V., Gerberding, O., Bandikova, T., Sheard, B. S., Heinzel, G., and Danzmann,
K., 2014. Laser beam steering for GRACE Follow-On intersatellite interferometry. Optics Express, 22:24117, doi:10.1364/OE.22.024117.
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- Senay, G. B., Velpuri, N. M., Bohms, S., Demissie, Y., and Gebremichael, M., 2014. Understanding the hydrologic
sources and sinks in the Nile Basin using multisource climate and remote sensing data sets. Water Resources Research,
50:8625–8650, doi:10.1002/2013WR015231.
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- Shako, R., Förste, C., Abrikosov, O., Bruinsma, S., Marty, J.-C., Lemoine, J.-M., Flechtner, F., Neumayer, K.-H., and
Dahle, C., 2014. EIGEN-6C: A High-Resolution Global Gravity Combination Model Including GOCE Data. In Flechtner, F., Sneeuw,
N., and Schuh, W.-D. (editors), Observation of the System Earth from Space - CHAMP, GRACE, GOCE and future missions,
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- Sharma, A. N. and Walter, M. T., 2014. Estimating long-term changes in actual evapotranspiration and water storage
using a one-parameter model. Journal of Hydrology, 519:2312–2317, doi:10.1016/j.jhydrol.2014.10.014.
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- Song, C., Huang, B., Ke, L., and Richards, K. S., 2014. Seasonal and abrupt changes in the water level of closed lakes
on the Tibetan Plateau and implications for climate impacts. Journal of Hydrology, 514:131–144, doi:10.1016/j.jhydrol.2014.04.018.
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- Šprlák, M. and Novák, P., 2014. Integral transformations of gradiometric data onto a GRACE type of observable.
Journal of Geodesy, 88:377–390, doi:10.1007/s00190-013-0689-1.
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- Stammer, D., Ray, R. D., Andersen, O. B., Arbic, B. K., Bosch, W., Carrère, L., Cheng, Y., Chinn, D. S.,
Dushaw, B. D., Egbert, G. D., Erofeeva, S. Y., Fok, H. S., Green, J. A. M., Griffiths, S., King,
M. A., Lapin, V., Lemoine, F. G., Luthcke, S. B., Lyard, F., Morison, J., Müller, M., Padman, L., Richman,
J. G., Shriver, J. F., Shum, C. K., Taguchi, E., and Yi, Y., 2014. Accuracy assessment of global barotropic
ocean tide models. Reviews of Geophysics, 52:243–282, doi:10.1002/2014RG000450.
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- Sun, W., 2014. Recent advances of computing coseismic deformations in theory and applications. Earthquake Science,
27:217–227, doi:10.1007/s11589-014-0077-9.
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- Sun, Q., Tashpolat, T., Ding, J. L., Zhang, F., and Mamat, S., 2014. GRACE Data-based Estimation of Spatial Variations
in Water Storage over the Central Asia during 2003-2013. Acta Astronomica Sinica, 55:498–511.
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- Sutterley, T. C., Velicogna, I., Csatho, B., van den Broeke, M., Rezvan-Behbahani, S., and Babonis, G., 2014. Evaluating
Greenland glacial isostatic adjustment corrections using GRACE, altimetry and surface mass balance data. Environmental
Research Letters, 9(1):014004, doi:10.1088/1748-9326/9/1/014004.
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- Sutterley, T. C., Velicogna, I., Rignot, E., Mouginot, J., Flament, T., van den Broeke, M. R., van Wessem, J. M.,
and Reijmer, C. H., 2014. Mass loss of the Amundsen Sea Embayment of West Antarctica from four independent techniques.
Geophysical Research Letters, 41:8421–8428, doi:10.1002/2014GL061940.
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- Swenson, S. C. and Lawrence, D. M., 2014. Assessing a dry surface layer-based soil resistance parameterization for
the Community Land Model using GRACE and FLUXNET-MTE data. Journal of Geophysical Research (Atmospheres), 119(D18):10299,
doi:10.1002/2014JD022314.
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- Tanaka, Y. and Heki, K., 2014. Long- and short-term postseismic gravity changes of megathrust earthquakes from satellite gravimetry.
Geophysical Research Letters, 41:5451–5456, doi:10.1002/2014GL060559.
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- Tancredi, U., Renga, A., and Grassi, M., 2014. Novel closed-loop approaches for precise relative navigation of widely separated
GPS receivers in LEO. Acta Astronautica, 93:243–251, doi:10.1016/j.actaastro.2013.07.029.
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- Tang, J., Cheng, H., and Liu, L., 2014. Assessing the recent droughts in Southwestern China using satellite gravimetry. Water
Resources Research, 50:3030–3038, doi:10.1002/2013WR014656.
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- NGGM-D Team, 2014. e2.motion - Earth System Mass Transport Mission - Concept for a Next Generation Gravity Field Mission
- Final Report, Deutsche Geod. Kommission, Reihe B 318, pp. 210, Bayer. Akademie der Wissenschaften, Munich.
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- Thomas, A. C., Reager, J. T., Famiglietti, J. S., and Rodell, M., 2014. A GRACE-based water storage deficit
approach for hydrological drought characterization. Geophysical Research Letters, 41:1537–1545, doi:10.1002/2014GL059323.
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- Tiwari, V. M., Srinivas, N., and Singh, B., 2014. Hydrological changes and vertical crustal deformation in south India:
Inference from GRACE, GPS and absolute gravity data. Physics of the Earth and Planetary Interiors, 231:74–80,
doi:10.1016/j.pepi.2014.03.002.
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- Tsoulis, D. and Patlakis, K., 2014. Spectral assessment of isostatic gravity models against CHAMP, GRACE, GOCE satellite-only
and combined gravity models. Acta Geophysica, 62:679–698, doi:10.2478/s11600-013-0176-3.
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- Turyshev, S. G., Sazhin, M. V., and Toth, V. T., 2014. General relativistic laser interferometric observables
of the GRACE-Follow-On mission. Physical Review D, 89(10):105029, doi:10.1103/PhysRevD.89.105029.
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- van Angelen, J. H., van den Broeke, M. R., Wouters, B., and Lenaerts, J. T. M., 2014. Contemporary (1960-2012)
Evolution of the Climate and Surface Mass Balance of the Greenland Ice Sheet. Surveys in Geophysics, 35:1155–1174,
doi:10.1007/s10712-013-9261-z.
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- van Dijk, A. I. J. M., Renzullo, L. J., Wada, Y., and Tregoning, P., 2014. A global water cycle reanalysis
(2003-2012) merging satellite gravimetry and altimetry observations with a hydrological multi-model ensemble. Hydrology
and Earth System Sciences, 18:2955–2973, doi:10.5194/hess-18-2955-2014.
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- Velicogna, I., Sutterley, T. C., and van den Broeke, M. R., 2014. Regional acceleration in ice mass loss from Greenland
and Antarctica using GRACE time-variable gravity data. Geophysical Research Letters, 41:8130–8137, doi:10.1002/2014GL061052.
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- Volkov, D. L., 2014. Do the North Atlantic winds drive the nonseasonal variability of the Arctic Ocean sea level?. Geophysical
Research Letters, 41:2041–2047, doi:10.1002/2013GL059065.
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- von Schuckmann, K., Sallée, J.-B., Chambers, D., Le Traon, P.-Y., Cabanes, C., Gaillard, F., Speich, S., and Hamon,
M., 2014. Consistency of the current global ocean observing systems from an Argo perspective. Ocean Science, 10:547–557,
doi:10.5194/os-10-547-2014.
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- Wada, Y., Wisser, D., and Bierkens, M. F. P., 2014. Global modeling of withdrawal, allocation and consumptive use
of surface water and groundwater resources. Earth System Dynamics, 5:15–40, doi:10.5194/esd-5-15-2014.
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- Wahr, J., Smeed, D. A., Leuliette, E., and Swenson, S., 2014. Seasonal variability of the Red Sea, from satellite gravity,
radar altimetry, and in situ observations. Journal of Geophysical Research (Oceans), 119:5091–5104, doi:10.1002/2014JC010161.
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- Wang, S., Huang, J., Li, J., Rivera, A., McKenney, D. W., and Sheffield, J., 2014. Assessment of water budget for sixteen
large drainage basins in Canada. Journal of Hydrology, 512:1–15, doi:10.1016/j.jhydrol.2014.02.058.
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- Wang, H., Guan, H., Gutiérrez-Jurado, H. A., and Simmons, C. T., 2014. Examination of water budget using
satellite products over Australia. Journal of Hydrology, 511:546–554, doi:10.1016/j.jhydrol.2014.01.076.
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- Ward, R. L., Fleddermann, R., Francis, S., Mow-Lowry, C., Wuchenich, D., Elliot, M., Gilles, F., Herding, M., Nicklaus,
K., Brown, J., Burke, J., Dligatch, S., Farrant, D., Green, K., Seckold, J., Blundell, M., Brister, R., Smith, C., Danzmann,
K., Heinzel, G., Schütze, D., Sheard, B. S., Klipstein, W., McClelland, D. E., and Shaddock, D. A., 2014.
The design and construction of a prototype lateral-transfer retro-reflector for inter-satellite laser ranging. Classical
and Quantum Gravity, 31(9):095015, doi:10.1088/0264-9381/31/9/095015.
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- White, D. A. and Fink, D., 2014. Late Quaternary glacial history constrains glacio-isostatic rebound in Enderby Land,
East Antarctica. Journal of Geophysical Research (Earth Surface), 119:401–413, doi:10.1002/2013JF002870.
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- Williams, S. D. P., Moore, P., King, M. A., and Whitehouse, P. L., 2014. Revisiting GRACE Antarctic ice
mass trends and accelerations considering autocorrelation. Earth and Planetary Science Letters, 385:12–21, doi:10.1016/j.epsl.2013.10.016.
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- Wouters, B., Bonin, J. A., Chambers, D. P., Riva, R. E. M., Sasgen, I., and Wahr, J., 2014. GRACE, time-varying
gravity, Earth system dynamics and climate change. Reports on Progress in Physics, 77(11):116801, doi:10.1088/0034-4885/77/11/116801.
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- Wuchenich, D. M. R., Mahrdt, C., Sheard, B. S., Francis, S. P., Spero, R. E., Miller, J., Mow-Lowry,
C. M., Ward, R. L., Klipstein, W. M., Heinzel, G., Danzmann, K., McClelland, D. E., and Shaddock, D. A.,
2014. Laser link acquisition demonstration for the GRACE Follow-On mission. Optics Express, 22:11351, doi:10.1364/OE.22.011351.
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- Xiong, C. and Lühr, H., 2014. The Midlatitude Summer Night Anomaly as observed by CHAMP and GRACE: Interpreted as tidal
features. Journal of Geophysical Research (Space Physics), 119:4905–4915, doi:10.1002/2014JA019959.
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- Yang, K., Wu, H., Chen, Y., Qin, J., and Wang, L., 2014. Toward a satellite-based observation of atmospheric heat source over
land. Journal of Geophysical Research (Atmospheres), 119:3124–3133, doi:10.1002/2013JD021091.
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- Yang, X., Li, J., and Zhang, S., 2014. Ionospheric correction for spaceborne single-frequency GPS based on single layer model.
Journal of Earth System Science, 123:767–778, doi:10.1007/s12040-014-0442-z.
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- Yang, Y., Yue, X., Yuan, J., and Rizos, C., 2014. Enhancing the kinematic precise orbit determination of low earth orbiters
using GPS receiver clock modelling. Advances in Space Research, 54:1901–1912, doi:10.1016/j.asr.2014.07.016.
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- Yang, Y.-M., Meng, X., Komjathy, A., Verkholyadova, O., Langley, R. B., Tsurutani, B. T., and Mannucci, A. J.,
2014. Tohoku-Oki earthquake caused major ionospheric disturbances at 450 km altitude over Alaska. Radio Science, 49:1206–1213,
doi:10.1002/2014RS005580.
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- Yang, Y., Long, D., Guan, H., Scanlon, B. R., Simmons, C. T., Jiang, L., and Xu, X., 2014. GRACE satellite observed
hydrological controls on interannual and seasonal variability in surface greenness over mainland Australia. Journal of
Geophysical Research (Biogeosciences), 119:2245–2260, doi:10.1002/2014JG002670.
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- Yi, W. and Rummel, R., 2014. A comparison of GOCE gravitational models with EGM2008. Journal of Geodynamics, 73:14–22,
doi:10.1016/j.jog.2013.10.004.
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- Yi, S. and Sun, W., 2014. Evaluation of glacier changes in high-mountain Asia based on 10 year GRACE RL05 models. Journal
of Geophysical Research (Solid Earth), 119:2504–2517, doi:10.1002/2013JB010860.
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- Zelensky, N. P., Lemoine, F. G., Chinn, D. S., Melachroinos, S., Beckley, B. D., Beall, J. W., and
Bordyugov, O., 2014. Estimated SLR station position and network frame sensitivity to time-varying gravity. Journal of Geodesy,
88:517–537, doi:10.1007/s00190-014-0701-4.
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- Zenner, L., Bergmann-Wolf, I., Dobslaw, H., Gruber, T., Güntner, A., Wattenbach, M., Esselborn, S., and Dill, R., 2014.
Comparison of Daily GRACE Gravity Field and Numerical Water Storage Models for De-aliasing of Satellite Gravimetry Observations.
Surveys in Geophysics, 35:1251–1266, doi:10.1007/s10712-014-9295-x.
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- Zhang, X. and Jin, S., 2014. Uncertainties and effects on geocenter motion estimates from global GPS observations. Advances
in Space Research, 54:59–71, doi:10.1016/j.asr.2014.03.021.
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- Zheng, W., Hsu, H.-T., Zhong, M., and Yun, M.-J., 2014. Physical analysis on improving the recovery accuracy of the Earth's
gravity field by a combination of satellite observations in along-track and cross-track directions. Chinese Physics B,
23(10):109101, doi:10.1088/1674-1056/23/10/109101.
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- Zmijewski, K. and Becker, R., 2014. Estimating the Effects of Anthropogenic Modification on Water Balance in the Aral Sea
Watershed Using GRACE: 2003-12. Earth Interactions, 18(3):030000–16, doi:10.1175/2013EI000537.1.
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- Zou, R., Freymueller, J. T., Ding, K., Yang, S., and Wang, Q., 2014. Evaluating seasonal loading models and their impact
on global and regional reference frame alignment. Journal of Geophysical Research (Solid Earth), 119:1337–1358,
doi:10.1002/2013JB010186.
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- A, G., Wahr, J., and Zhong, S., 2013. Computations of the viscoelastic response of a 3-D compressible Earth to surface loading:
an application to Glacial Isostatic Adjustment in Antarctica and Canada. Geophysical Journal International, 192:557–572,
doi:10.1093/gji/ggs030.
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- Arabelos, D. N. and Tsoulis, D., 2013. The exploitation of state of the art digital terrain databases and combined or
satellite-only Earth gravity models for the estimation of the crust-mantle interface over oceanic regions. Geophysical
Journal International, 193:1343–1352, doi:10.1093/gji/ggt081.
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- Arendt, A., Luthcke, S., Gardner, A., O'Neel, S., Hill, D., Moholdt, G., and Abdalati, W., 2013. Analysis of a GRACE global
mascon solution for Gulf of Alaska glaciers. Journal of Glaciology, 59:913–924, doi:10.3189/2013JoG12J197.
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- Awange, J. L., Forootan, E., Kusche, J., Kiema, J. B. K., Omondi, P. A., Heck, B., Fleming, K., Ohanya,
S. O., and Gonçalves, R. M., 2013. Understanding the decline of water storage across the Ramser-Lake Naivasha
using satellite-based methods. Advances in Water Resources, 60:7–23, doi:10.1016/j.advwatres.2013.07.002.
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- Awange, J. L., Anyah, R., Agola, N., Forootan, E., and Omondi, P., 2013. Potential impacts of climate and environmental change
on the stored water of Lake Victoria Basin and economic implications. Water Resources Research, 49(12):8160–8173,
doi:10.1002/2013WR014350.
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- Barletta, V. R., Sørensen, L. S., and Forsberg, R., 2013. Scatter of mass changes estimates at basin scale
for Greenland and Antarctica. The Cryosphere, 7:1411–1432, doi:10.5194/tc-7-1411-2013.
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- Baur, O., Kuhn, M., and Featherstone, W. E., 2013. Continental mass change from GRACE over 2002-2011 and its impact on
sea level. Journal of Geodesy, 87(2):117–125, doi:10.1007/s00190-012-0583-2.
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- Baur, O., 2013. Greenland mass variation from time-variable gravity in the absence of GRACE. Geophysical Research Letters,
40:4289–4293, doi:10.1002/grl.50881.
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- Bonin, J. and Chambers, D., 2013. Uncertainty estimates of a GRACE inversion modelling technique over Greenland using a simulation.
Geophysical Journal International, 194:212–229, doi:10.1093/gji/ggt091.
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- Bruinsma, S. L., Förste, C., Abrikosov, O., Marty, J.-C., Rio, M.-H., Mulet, S., and Bonvalot, S., 2013. The new
ESA satellite-only gravity field model via the direct approach. Geophysical Research Letters, 40:3607–3612, doi:10.1002/grl.50716.
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- Cambiotti, G. and Sabadini, R., 2013. Gravitational seismology retrieving Centroid-Moment-Tensor solution of the 2011 Tohoku
earthquake. Journal of Geophysical Research (Solid Earth), 118:183–194, doi:10.1029/2012JB009555.
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- Cerri, L., Lemoine, J. M., Mercier, F., Zelensky, N. P., and Lemoine, F. G., 2013. DORIS-based point mascons
for the long term stability of precise orbit solutions. Advances in Space Research, 52:466–476, doi:10.1016/j.asr.2013.03.023.
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- Chen, J. L., Wilson, C. R., and Tapley, B. D., 2013. Contribution of ice sheet and mountain glacier melt to
recent sea level rise. Nature Geoscience, 6:549–552, doi:10.1038/ngeo1829.
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- Chen, Y., Velicogna, I., Famiglietti, J. S., and Randerson, J. T., 2013. Satellite observations of terrestrial water
storage provide early warning information about drought and fire season severity in the Amazon. Journal of Geophysical
Research (Biogeosciences), 118:495–504, doi:10.1002/jgrg.20046.
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- Chen, J. L., Wilson, C. R., Ries, J. C., and Tapley, B. D., 2013. Rapid ice melting drives Earth's pole
to the east. Geophysical Research Letters, 40:2625–2630, doi:10.1002/grl.50552.
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- Cheng, X., Li, L., Du, Y., Wang, J., and Huang, R.-X., 2013. Mass-induced sea level change in the northwestern North Pacific
and its contribution to total sea level change. Geophysical Research Letters, 40:3975–3980, doi:10.1002/grl.50748.
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- Ciufolini, I., Moreno Monge, B., Paolozzi, A., Koenig, R., Sindoni, G., Michalak, G., and Pavlis, E. C., 2013. Monte
Carlo simulations of the LARES space experiment to test General Relativity and fundamental physics. Classical and Quantum
Gravity, 30(23):235009, doi:10.1088/0264-9381/30/23/235009.
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- Colgan, W., Luthcke, S., Abdalati, W., and Citterio, M., 2013. Constraining GRACE-derived cryosphere-attributed signal to
irregularly shaped ice-covered areas. The Cryosphere, 7:1901–1914, doi:10.5194/tc-7-1901-2013.
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- Darbeheshti, N., Zhou, L., Tregoning, P., McClusky, S., and Purcell, A., 2013. The ANU GRACE visualisation web portal. Computers
and Geosciences, 52:227–233, doi:10.1016/j.cageo.2012.10.005.
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- de Linage, C., Kim, H., Famiglietti, J. S., and Yu, J.-Y., 2013. Impact of Pacific and Atlantic sea surface temperatures
on interannual and decadal variations of GRACE land water storage in tropical South America. Journal of Geophysical Research
(Atmospheres), 118(D17):10811, doi:10.1002/jgrd.50820.
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- de Paiva, R. C. D., Buarque, D. C., Collischonn, W., Bonnet, M.-P., Frappart, F., Calmant, S., and Bulhões
Mendes, C. A., 2013. Large-scale hydrologic and hydrodynamic modeling of the Amazon River basin. Water Resources Research,
49:1226–1243, doi:10.1002/wrcr.20067.
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- Dobslaw, H., Flechtner, F., Bergmann-Wolf, I., Dahle, C., Dill, R., Esselborn, S., Sasgen, I., and Thomas, M., 2013. Simulating
high-frequency atmosphere-ocean mass variability for dealiasing of satellite gravity observations: AOD1B RL05. Journal
of Geophysical Research (Oceans), 118:3704–3711, doi:10.1002/jgrc.20271.
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- Eshagh, M., Lemoine, J.-M., Gegout, P., and Biancale, R., 2013. On regularized time varying gravity field models based on
grace data and their comparison with hydrological models. Acta Geophysica, 61:1–17, doi:10.2478/s11600-012-0053-5.
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- Eshagh, M., 2013. An integral approach to regional gravity field refinement using earth gravity models. Journal of Geodynamics,
68:18–28, doi:10.1016/j.jog.2013.03.001.
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- Espinoza, J. C., Ronchail, J., Frappart, F., Lavado, W., Santini, W., and Guyot, J. L., 2013. The Major Floods in
the Amazonas River and Tributaries (Western Amazon Basin) during the 1970–2012 Period: A Focus on the 2012 Flood. Journal
of Hydrometeorology, 14:1000–1008, doi:10.1175/JHM-D-12-0100.1.
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- Famiglietti, J. S. and Rodell, M., 2013. Water in the Balance. Science, 340:1300–1301, doi:10.1126/science.1236460.
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- Farahani, H. H., Ditmar, P., Klees, R., Teixeira da Encarnação, J., Liu, X., Zhao, Q., and Guo, J., 2013.
Validation of static gravity field models using GRACE K-band ranging and GOCE gradiometry data. Geophysical Journal International,
194:751–771, doi:10.1093/gji/ggt149.
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- Farahani, H. H., Ditmar, P., Klees, R., Liu, X., Zhao, Q., and Guo, J., 2013. The static gravity field model DGM-1S from
GRACE and GOCE data: computation, validation and an analysis of GOCE mission's added value. Journal of Geodesy, 87:843–867,
doi:10.1007/s00190-013-0650-3.
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- Fathy, K., Zahran, K. H., Radwan, A. H., Sabet, H. S., and Hamed, D., 2013. Gravity observations at Sinai Peninsula
and its geophysical and geodetic applications. NRIAG Journal of Astronomy and Geophysics, 2:223–233, doi:10.1016/j.nrjag.2013.12.003.
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- Feng, G., Jin, S., and Zhang, T., 2013. Coastal sea level changes in Europe from GPS, tide gauge, satellite altimetry and
GRACE, 1993-2011. Advances in Space Research, 51:1019–1028, doi:10.1016/j.asr.2012.09.011.
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- Feng, W., Zhong, M., Lemoine, J.-M., Biancale, R., Hsu, H.-T., and Xia, J., 2013. Evaluation of groundwater depletion in North
China using the Gravity Recovery and Climate Experiment (GRACE) data and ground-based measurements. Water Resources Research,
49:2110–2118, doi:10.1002/wrcr.20192.
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- Feng, G., Jin, S., and Reales, J. M. S., 2013. Antarctic circumpolar current from satellite gravimetric models ITG-GRACE2010,
GOCE-TIM3 and satellite altimetry. Journal of Geodynamics, 72:72–80, doi:10.1016/j.jog.2013.08.005.
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- Fischer, D. and Michel, V., 2013. Inverting GRACE gravity data for local climate effects. Journal of Geodetic Science,
3:151–162, doi:10.2478/jogs-2013-0019.
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- Forootan, E., Didova, O., Kusche, J., and LöCher, A., 2013. Comparisons of atmospheric data and reduction methods for
the analysis of satellite gravimetry observations. Journal of Geophysical Research (Solid Earth), 118:2382–2396,
doi:10.1002/jgrb.50160.
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- Fu, Y., Argus, D. F., Freymueller, J. T., and Heflin, M. B., 2013. Horizontal motion in elastic response to
seasonal loading of rain water in the Amazon Basin and monsoon water in Southeast Asia observed by GPS and inferred from GRACE.
Geophysical Research Letters, 40:6048–6053, doi:10.1002/2013GL058093.
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- Fuchs, M. J., Bouman, J., Broerse, T., Visser, P., and Vermeersen, B., 2013. Observing coseismic gravity change from
the Japan Tohoku-Oki 2011 earthquake with GOCE gravity gradiometry. Journal of Geophysical Research (Solid Earth),
118:5712–5721, doi:10.1002/jgrb.50381.
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- Gardelle, J., Berthier, E., Arnaud, Y., and Kääb, A., 2013. Region-wide glacier mass balances over the Pamir-Karakoram-Himalaya
during 1999-2011. The Cryosphere, 7:1263–1286, doi:10.5194/tc-7-1263-2013.
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- Gardner, A. S., Moholdt, G., Cogley, J. G., Wouters, B., Arendt, A. A., Wahr, J., Berthier, E., Hock, R., Pfeffer,
W. T., Kaser, G., Ligtenberg, S. R. M., Bolch, T., Sharp, M. J., Hagen, J. O., van den Broeke, M. R.,
and Paul, F., 2013. A Reconciled Estimate of Glacier Contributions to Sea Level Rise: 2003 to 2009. Science, 340:852–857,
doi:10.1126/science.1234532.
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- Gatti, A., Reguzzoni, M., and Venuti, G., 2013. The height datum problem and the role of satellite gravity models. Journal
of Geodesy, 87:15–22, doi:10.1007/s00190-012-0574-3.
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- Gonçalvès, J., Petersen, J., Deschamps, P., Hamelin, B., and Baba-Sy, O., 2013. Quantifying the modern recharge
of the ''fossil'' Sahara aquifers. Geophysical Research Letters, 40:2673–2678, doi:10.1002/grl.50478.
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- Han, S.-C., Riva, R., Sauber, J., and Okal, E., 2013. Source parameter inversion for recent great earthquakes from a decade-long
observation of global gravity fields. Journal of Geophysical Research (Solid Earth), 118:1240–1267, doi:10.1002/jgrb.50116.
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- Hanna, E., Navarro, F. J., Pattyn, F., Domingues, C. M., Fettweis, X., Ivins, E. R., Nicholls, R. J.,
Ritz, C., Smith, B., Tulaczyk, S., Whitehouse, P. L., and Zwally, H. J., 2013. Ice-sheet mass balance and climate
change. Nature, 498:51–59, doi:10.1038/nature12238.
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- Hirt, C., Claessens, S., Fecher, T., Kuhn, M., Pail, R., and Rexer, M., 2013. New ultrahigh-resolution picture of Earth's
gravity field. Geophysical Research Letters, 40:4279–4283, doi:10.1002/grl.50838.
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- Huang, J. and Véronneau, M., 2013. Canadian gravimetric geoid model 2010. Journal of Geodesy, 87:771–790,
doi:10.1007/s00190-013-0645-0.
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- Huang, C. Y., Roddy, P. A., Sutton, E. K., Stoneback, R., Pfaff, R. F., Gentile, L. C., and Delay,
S. H., 2013. Ion-neutral coupling during deep solar minimum. Journal of Atmospheric and Solar-Terrestrial Physics,
103:138–146, doi:10.1016/j.jastp.2012.11.009.
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- Iorio, L., Luca Ruggiero, M., and Corda, C., 2013. Novel considerations about the error budget of the LAGEOS-based tests of
frame-dragging with GRACE geopotential models. Acta Astronautica, 91:141–148, doi:10.1016/j.actaastro.2013.06.002.
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- Iran Pour, S., Reubelt, T., and Sneeuw, N., 2013. Quality assessment of sub-Nyquist recovery from future gravity satellite
missions. Advances in Space Research, 52:916–929, doi:10.1016/j.asr.2013.05.026.
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- Iran Pour, S., 2013. Sampling the Earth's Time-Variable Gravity Field from Satellite Orbit -- Design of Future Gravity
Satellite Missions, Deutsche Geod. Kommission, Reihe C 721, pp. 121, Bayer. Akademie der Wissenschaften, Munich.
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- Ivins, E. R., James, T. S., Wahr, J., Schrama, E. J. O., Landerer, F. W., and Simon, K. M.,
2013. Antarctic contribution to sea level rise observed by GRACE with improved GIA correction. Journal of Geophysical Research
(Solid Earth), 118:3126–3141, doi:10.1002/jgrb.50208.
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- Jensen, L., Rietbroek, R., and Kusche, J., 2013. Land water contribution to sea level from GRACE and Jason-1 measurements.
Journal of Geophysical Research (Oceans), 118:212–226, doi:10.1002/jgrc.20058.
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- Jin, S. and Feng, G., 2013. Large-scale variations of global groundwater from satellite gravimetry and hydrological models,
2002–2012. Global and Planetary Change, 106:20–30, doi:10.1016/j.gloplacha.2013.02.008.
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- Johnson, G. C. and Chambers, D. P., 2013. Ocean bottom pressure seasonal cycles and decadal trends from GRACE Release-05:
Ocean circulation implications. Journal of Geophysical Research (Oceans), 118:4228–4240, doi:10.1002/jgrc.20307.
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- Kjeldsen, K. K., Khan, S. A., Wahr, J., Korsgaard, N. J., KjæR, K. H., Bjørk, A. A.,
Hurkmans, R., Broeke, M. R., Bamber, J. L., and Angelen, J. H., 2013. Improved ice loss estimate of the northwestern
Greenland ice sheet. Journal of Geophysical Research (Solid Earth), 118:698–708, doi:10.1029/2012JB009684.
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- Klipstein, W. M., Arnold, B. W., Enzer, D. G., Ruiz, A. A., Tien, J. Y., Wang, R. T., and Dunn,
C. E., 2013. The Lunar Gravity Ranging System for the Gravity Recovery and Interior Laboratory (GRAIL) Mission. Space
Science Reviews, 178:57–76, doi:10.1007/s11214-013-9973-x.
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- Klokocn\'ık, J., Gooding, R. H., Wagner, C. A., Kostelecký, J., and Bezdek, A., 2013. The Use of Resonant
Orbits in Satellite Geodesy: A Review. Surveys in Geophysics, 34:43–72, doi:10.1007/s10712-012-9200-4.
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- Kuhlmann, J., Dobslaw, H., Petrick, C., and Thomas, M., 2013. Ocean bottom pressure signals around Southern Africa from in
situ measurements, satellite data, and modeling. Journal of Geophysical Research (Oceans), 118:4889–4898, doi:10.1002/jgrc.20372.
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- Lambert, A., Huang, J., Kamp, G., Henton, J., Mazzotti, S., James, T. S., Courtier, N., and Barr, A. G., 2013. Measuring
water accumulation rates using GRACE data in areas experiencing glacial isostatic adjustment: The Nelson River basin. Geophysical
Research Letters, 40:6118–6122, doi:10.1002/2013GL057973.
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- Landerer, F. W. and Volkov, D. L., 2013. The anatomy of recent large sea level fluctuations in the Mediterranean
Sea. Geophysical Research Letters, 40:553–557, doi:10.1002/grl.50140.
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- Lehman, D. H., Hoffman, T. L., and Havens, G. G., 2013. The Gravity Recovery and Interior Laboratory mission.
In Proceedings of the 2013 IEEE Aerospace Conference.
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- Lei, J., Dou, X., Burns, A., Wang, W., Luan, X., Zeng, Z., and Xu, J., 2013. Annual asymmetry in thermospheric density: Observations
and simulations. Journal of Geophysical Research (Space Physics), 118:2503–2510, doi:10.1002/jgra.50253.
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- Lenaerts, J. T. M., Angelen, J. H., Broeke, M. R., Gardner, A. S., Wouters, B., and Meijgaard, E.,
2013. Irreversible mass loss of Canadian Arctic Archipelago glaciers. Geophysical Research Letters, 40:870–874,
doi:10.1002/grl.50214.
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- Lenk, O., 2013. Satellite based estimates of terrestrial water storage variations in Turkey. Journal of Geodynamics,
67:106–110, doi:10.1016/j.jog.2012.04.010.
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- Limberger, M., Liang, W., Schmidt, M., Dettmering, D., and Hugentobler, U., 2013. Regional representation of F2 Chapman parameters
based on electron density profiles. Annales Geophysicae, 31:2215–2227, doi:10.5194/angeo-31-2215-2013.
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- Long, D., Scanlon, B. R., Longuevergne, L., Sun, A. Y., Fernando, D. N., and Save, H., 2013. GRACE satellite
monitoring of large depletion in water storage in response to the 2011 drought in Texas. Geophysical Research Letters,
40:3395–3401, doi:10.1002/grl.50655.
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- Longuevergne, L., Wilson, C. R., Scanlon, B. R., and Crétaux, J. F., 2013. GRACE water storage estimates
for the Middle East and other regions with significant reservoir and lake storage. Hydrology and Earth System Sciences,
17:4817–4830, doi:10.5194/hess-17-4817-2013.
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- Luthcke, S. B., Sabaka, T. J., Loomis, B. D., Arendt, A. A., McCarthy, J. J., and Camp, J., 2013.
Antarctica, Greenland and Gulf of Alaska land-ice evolution from an iterated GRACE global mascon solution. Journal of Glaciology,
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- Maeda, H., Kim, H., and Hirabayashi, Y., 2013. Estimation of glacier mass changes using GRACE satellite and numerical models
(Japanese). Journal of Japan Society of Civil Engineers, Ser. G (Environmental Research), 69, doi:10.2208/jscejer.69.I_53.
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- Matsuo, K., Chao, B. F., Otsubo, T., and Heki, K., 2013. Accelerated ice mass depletion revealed by low-degree gravity
field from satellite laser ranging: Greenland, 1991-2011. Geophysical Research Letters, 40:4662–4667, doi:10.1002/grl.50900.
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- McAdoo, D. C., Farrell, S. L., Laxon, S., Ridout, A., Zwally, H. J., and Yi, D., 2013. Gravity of the Arctic
Ocean from satellite data with validations using airborne gravimetry: Oceanographic implications. Journal of Geophysical
Research (Oceans), 118:917–930, doi:10.1002/jgrc.20080.
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- Mehta, P. M., McLaughlin, C. A., and Sutton, E. K., 2013. Drag coefficient modeling for grace using Direct
Simulation Monte Carlo. Advances in Space Research, 52:2035–2051, doi:10.1016/j.asr.2013.08.033.
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- Mehta, P. M., Thermospheric density and satellite drag modeling. Ph.D. Thesis, University of Kansas, 2013.
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- Meyrath, T., van Dam, T., Weigelt, M., and Cheng, M., 2013. An assessment of degree-2 Stokes coefficients from Earth rotation
data. Geophysical Journal International, 195:249–259, doi:10.1093/gji/ggt263.
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- Mikhailov, A., Belehaki, A., Perrone, L., Zolesi, B., and Tsagouri, I., 2013. Retrieval of thermospheric parameters from routinely
observed F2-layer Ne(h) profiles at the geomagnetic equator. Journal of Space Weather and Space Climate, 3(26):A260000,
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- Mikhailov, V., Lyakhovsky, V., Panet, I., van Dinther, Y., Diament, M., Gerya, T., deViron, O., and Timoshkina, E., 2013.
Numerical modelling of post-seismic rupture propagation after the Sumatra 26.12.2004 earthquake constrained by GRACE gravity
data. Geophysical Journal International, 194:640–650, doi:10.1093/gji/ggt145.
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- Moon, J.-H. and Song, T. Y., 2013. Sea level and heat content changes in the western North Pacific. Journal of Geophysical
Research (Oceans), 118:2014–2022, doi:10.1002/jgrc.20096.
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- Morozov, A. V., Ridley, A. J., Bernstein, D. S., Collins, N., Hoar, T. J., and Anderson, J. L., 2013.
Data assimilation and driver estimation for the Global Ionosphere–Thermosphere Model using the Ensemble Adjustment Kalman
Filter. Journal of Atmospheric and Solar-Terrestrial Physics, 104:126–136, doi:10.1016/j.jastp.2013.08.016.
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- Morrow, E., Mitrovica, J. X., Sterenborg, M. G., and Harig, C., 2013. A Test of Recent Inferences of Net Polar Ice
Mass Balance based on Long-Wavelength Gravity. Journal of Climate, 26:6535–6540, doi:10.1175/JCLI-D-13-00078.1.
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- Murray, S. J., 2013. Present and future water resources in India: Insights from satellite remote sensing and a dynamic
global vegetation model. Journal of Earth System Science, 122:1–13, doi:10.1007/s12040-012-0264-9.
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- Panet, I., Flury, J., Biancale, R., Gruber, T., Johannessen, J., van den Broeke, M. R., van Dam, T., Gegout, P., Hughes,
C. W., Ramillien, G., Sasgen, I., Seoane, L., and Thomas, M., 2013. Earth System Mass Transport Mission (e.motion): A
Concept for Future Earth Gravity Field Measurements from Space. Surveys in Geophysics, 34:141–163, doi:10.1007/s10712-012-9209-8.
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- Papa, F., Frappart, F., Güntner, A., Prigent, C., Aires, F., Getirana, A. C. V., and Maurer, R., 2013. Surface
freshwater storage and variability in the Amazon basin from multi-satellite observations, 1993-2007. Journal of Geophysical
Research (Atmospheres), 118(D17):11951, doi:10.1002/2013JD020500.
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- Piecuch, C. G., Quinn, K. J., and Ponte, R. M., 2013. Satellite-derived interannual ocean bottom pressure variability
and its relation to sea level. Geophysical Research Letters, 40:3106–3110, doi:10.1002/grl.50549.
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- Pokhrel, Y. N., Fan, Y., Miguez-Macho, G., Yeh, P. J.-F., and Han, S.-C., 2013. The role of groundwater in the Amazon
water cycle: 3. Influence on terrestrial water storage computations and comparison with GRACE. Journal of Geophysical Research
(Atmospheres), 118:3233–3244, doi:10.1002/jgrd.50335.
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- Proulx, R. A., Knudson, M. D., Kirilenko, A., VanLooy, J. A., and Zhang, X., 2013. Significance of surface
water in the terrestrial water budget: A case study in the Prairie Coteau using GRACE, GLDAS, Landsat, and groundwater well
data. Water Resources Research, 49:5756–5764, doi:10.1002/wrcr.20455.
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- Reager, J. T. and Famiglietti, J. S., 2013. Characteristic mega-basin water storage behavior using GRACE. Water
Resources Research, 49:3314–3329, doi:10.1002/wrcr.20264.
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- Ren, D., Leslie, L. M., and Lynch, M. J., 2013. Verification of model simulated mass balance, flow fields and tabular
calving events of the Antarctic ice sheet against remotely sensed observations. Climate Dynamics, 40:2617–2636,
doi:10.1007/s00382-012-1464-3.
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- Renzetti, G., 2013. First results from LARES: An analysis. New Astronomy, 23:63–66, doi:10.1016/j.newast.2013.03.001.
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- Rosenberg, E. A., Clark, E. A., Steinemann, A. C., and Lettenmaier, D. P., 2013. On the contribution of
groundwater storage to interannual streamflow anomalies in the Colorado River basin. Hydrology and Earth System Sciences,
17:1475–1491, doi:10.5194/hess-17-1475-2013.
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- Saleh, J., Li, X., Wang, Y. M., Roman, D. R., and Smith, D. A., 2013. Error analysis of the NGS' surface gravity
database. Journal of Geodesy, 87:203–221, doi:10.1007/s00190-012-0589-9.
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- Sang, J., Bennett, J. C., and Smith, C. H., 2013. Estimation of ballistic coefficients of low altitude debris objects
from historical two line elements. Advances in Space Research, 52:117–124, doi:10.1016/j.asr.2013.03.010.
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- Saria, E. E., Contribution to defining a geodetic reference frame for Africa (AFREF): Geodynamics implications. Ph.D.
Thesis, Purdue University, 2013.
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- Sasgen, I., Konrad, H., Ivins, E. R., Van den Broeke, M. R., Bamber, J. L., Martinec, Z., and Klemann, V.,
2013. Antarctic ice-mass balance 2003 to 2012: regional reanalysis of GRACE satellite gravimetry measurements with improved
estimate of glacial-isostatic adjustment based on GPS uplift rates. The Cryosphere, 7:1499–1512, doi:10.5194/tc-7-1499-2013.
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- Schnitzer, S., Seitz, F., Eicker, A., Güntner, A., Wattenbach, M., and Menzel, A., 2013. Estimation of soil loss by water
erosion in the Chinese Loess Plateau using Universal Soil Loss Equation and GRACE. Geophysical Journal International,
193:1283–1290, doi:10.1093/gji/ggt023.
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- Schütze, D., Stede, G., Müller, V., Gerberding, O., Mahrdt, C., Sheard, B., Heinzel, G., and Danzmann, K., 2013.
LISA-like Laser Ranging for GRACE Follow-on. In Auger, G., Binétruy, P., and Plagnol, E. (editors), Astronomical
Society of the Pacific Conference Series, Vol. 467, pp. 285–.
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- Sebera, J., Wagner, C. A., Bezdek, A., and Klokocn\'ık, J., 2013. Short guide to direct gravitational field modelling
with Hotine's equations. Journal of Geodesy, 87:223–238, doi:10.1007/s00190-012-0591-2.
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- Seoane, L., Ramillien, G., Frappart, F., and Leblanc, M., 2013. Regional GRACE-based estimates of water mass variations over
Australia: validation and interpretation. Hydrology and Earth System Sciences, 17:4925–4939, doi:10.5194/hess-17-4925-2013.
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- Sharifi, M. A., Sam Khaniani, A., Masoumi, S., Schmidt, T., and Wickert, J., 2013. Least-squares harmonic estimation
of the tropopause parameters using GPS radio occultation measurements. Meteorology and Atmospheric Physics, 120:73–82,
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- Sharifi, M. A., Safari, A., and Ghobadi-Far, K., 2013. Rosborough Formulation in Satellite Gravity Gradiometry. Artificial
Satellites, 48:39–50, doi:10.2478/arsa-2013-0004.
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- Sharifi, M. A., Seif, M. R., and Hadi, M. A., 2013. A Comparison Between Numerical Differentiation and Kalman
Filtering for a Leo Satellite Velocity Determination. Artificial Satellites, 48:103–110, doi:10.2478/arsa-2013-0009.
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- Shubin, V. N., Karpachev, A. T., and Tsybulya, K. G., 2013. Global model of the F2 layer peak height for low
solar activity based on GPS radio-occultation data. Journal of Atmospheric and Solar-Terrestrial Physics, 104:106–115,
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- Siegismund, F., 2013. Assessment of optimally filtered recent geodetic mean dynamic topographies. Journal of Geophysical
Research (Oceans), 118:108–117, doi:10.1029/2012JC008149.
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- Siemes, C., Ditmar, P., Riva, R. E. M., Slobbe, D. C., Liu, X. L., and Farahani, H. H., 2013. Estimation
of mass change trends in the Earth's system on the basis of GRACE satellite data, with application to Greenland. Journal
of Geodesy, 87:69–87, doi:10.1007/s00190-012-0580-5.
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- Smith, D. A., Holmes, S. A., Li, X., Guillaume, S., Wang, Y. M., Bürki, B., Roman, D. R., and Damiani,
T. M., 2013. Confirming regional 1 cm differential geoid accuracy from airborne gravimetry: the Geoid Slope Validation
Survey of 2011. Journal of Geodesy, 87:885–907, doi:10.1007/s00190-013-0653-0.
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- Sterenborg, M. G., Morrow, E., and Mitrovica, J. X., 2013. Bias in GRACE estimates of ice mass change due to accompanying
sea-level change. Journal of Geodesy, 87:387–392, doi:10.1007/s00190-012-0608-x.
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- Sun, A. Y., 2013. Predicting groundwater level changes using GRACE data. Water Resources Research, 49:5900–5912,
doi:10.1002/wrcr.20421.
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- Svendsen, P. L., Andersen, O. B., and Nielsen, A. A., 2013. Acceleration of the Greenland ice sheet mass loss
as observed by GRACE: Confidence and sensitivity. Earth and Planetary Science Letters, 364:24–29, doi:10.1016/j.epsl.2012.12.010.
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- Sweigart, M. J., The evaluation of water storage in Death Valley using GRACE satellite data. Ph.D. Thesis, University
of Nevada, Las Vegas, 2013.
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- Tancredi, U., Renga, A., and Grassi, M., 2013. Validation on flight data of a closed-loop approach for GPS-based relative
navigation of LEO satellites. Acta Astronautica, 86:126–135, doi:10.1016/j.actaastro.2013.01.005.
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- Tang, Q., Zhang, X., and Tang, Y., 2013. Anthropogenic impacts on mass change in North China. Geophysical Research Letters,
40:3924–3928, doi:10.1002/grl.50790.
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- Tedesco, M., Fettweis, X., Mote, T., Wahr, J., Alexander, P., Box, J. E., and Wouters, B., 2013. Evidence and analysis
of 2012 Greenland records from spaceborne observations, a regional climate model and reanalysis data. The Cryosphere,
7:615–630, doi:10.5194/tc-7-615-2013.
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- Tourian, M. J., 2013. Application of spaceborne geodetic sensors for hydrology, Deutsche Geod. Kommission, Reihe
C 720, pp. IV+17, Bayer. Akademie der Wissenschaften, Munich.
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- Trenberth, K. E. and Fasullo, J. T., 2013. North American water and energy cycles. Geophysical Research Letters,
40:365–369, doi:10.1002/grl.50107.
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- Tsimplis, M. N., Calafat, F. M., Marcos, M., Jordã, G., Gomis, D., Fenoglio-Marc, L., Struglia, M. V.,
Josey, S. A., and Chambers, D. P., 2013. The effect of the NAO on sea level and on mass changes in the Mediterranean
Sea. Journal of Geophysical Research (Oceans), 118:944–952, doi:10.1002/jgrc.20078.
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- Tsoulis, D. and Patlakis, K., 2013. Band-Limited Analysis of Current Satellite-to-Satellite Tracking, Gradiometry and Combined
Earth Gravity Models. Surveys in Geophysics, 34:375–394, doi:10.1007/s10712-013-9231-5.
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- Tsoulis, D. and Patlakis, K., 2013. A spectral assessment review of current satellite-only and combined Earth gravity models.
Reviews of Geophysics, 51:186–243, doi:10.1002/rog.20012.
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- Tziavos, I. N., Vergos, G. S., Mertikas, S. P., Daskalakis, A., Grigoriadis, V. N., and Tripolitsiotis,
A., 2013. The contribution of local gravimetric geoid models to the calibration of satellite altimetry data and an outlook
of the latest GOCE GGM performance in Gavdos. Advances in Space Research, 51:1502–1522, doi:10.1016/j.asr.2012.06.013.
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- Valty, P., de Viron, O., Panet, I., Van Camp, M., and Legrand, J., 2013. Assessing the precision in loading estimates by geodetic
techniques in Southern Europe. Geophysical Journal International, 194:1441–1454, doi:10.1093/gji/ggt173.
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- Velicogna, I. and Wahr, J., 2013. Time-variable gravity observations of ice sheet mass balance: Precision and limitations
of the GRACE satellite data. Geophysical Research Letters, 40:3055–3063, doi:10.1002/grl.50527.
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- Vey, S., Steffen, H., Müller, J., and Boike, J., 2013. Inter-annual water mass variations from GRACE in central Siberia.
Journal of Geodesy, 87:287–299, doi:10.1007/s00190-012-0597-9.
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- Visser, P., Doornbos, E., van den IJssel, J., and da Encarnação, J. T., 2013. Thermospheric density and
wind retrieval from Swarm observations. Earth, Planets, and Space, 65:1319–1331, doi:10.5047/eps.2013.08.003.
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- Volkov, D. L., Landerer, F. W., and Kirillov, S. A., 2013. The genesis of sea level variability in the Barents
Sea. Continental Shelf Research, 66:92–104, doi:10.1016/j.csr.2013.07.007.
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- Volkov, D. L. and Landerer, F. W., 2013. Nonseasonal fluctuations of the Arctic Ocean mass observed by the GRACE
satellites. Journal of Geophysical Research (Oceans), 118:6451–6460, doi:10.1002/2013JC009341.
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- von Frese, R. R. B., Kim, H. R., Leftwich, T. E., Kim, J. W., and Golynsky, A. V., 2013. Satellite
magnetic anomalies of the Antarctic Wilkes Land impact basin inferred from regional gravity and terrain data. Tectonophysics,
585:185–195, doi:10.1016/j.tecto.2012.09.009.
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- Voss, K. A., Famiglietti, J. S., Lo, M., Linage, C., Rodell, M., and Swenson, S. C., 2013. Groundwater depletion
in the Middle East from GRACE with implications for transboundary water management in the Tigris-Euphrates-Western Iran region.
Water Resources Research, 49:904–914, doi:10.1002/wrcr.20078.
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- Wang, H., Jia, L., Steffen, H., Wu, P., Jiang, L., Hsu, H., Xiang, L., Wang, Z., and Hu, B., 2013. Increased water storage
in North America and Scandinavia from GRACE gravity data. Nature Geoscience, 6:38–42, doi:10.1038/ngeo1652.
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- Weigelt, Matthias, Sneeuw, Nico, Schrama, E. J. O., and Visser, Pieter N. A. M., 2013. An improved sampling
rule for mapping geopotential functions of a planet from a near polar orbit. Journal of Geodesy, 87(2):127–142,
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- Wouters, B., Bamber, J. L., van den Broeke, M. R., Lenaerts, J. T. M., and Sasgen, I., 2013. Limits in
detecting acceleration of ice sheet mass loss due to climate variability. Nature Geoscience, 6:613–616, doi:10.1038/ngeo1874.
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- Wu, P., Wang, H., and Steffen, H., 2013. The role of thermal effect on mantle seismic anomalies under Laurentia and Fennoscandia
from observations of Glacial Isostatic Adjustment. Geophysical Journal International, 192:7–17, doi:10.1093/gji/ggs009.
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- Xiong, C., Lühr, H., and Ma, S. Y., 2013. The subauroral electron density trough: Comparison between satellite observations
and IRI-2007 model estimates. Advances in Space Research, 51:536–544, doi:10.1016/j.asr.2011.09.021.
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- Xiong, C. and Lühr, H., 2013. Nonmigrating tidal signatures in the magnitude and the inter-hemispheric asymmetry of the
equatorial ionization anomaly. Annales Geophysicae, 31:1115–1130, doi:10.5194/angeo-31-1115-2013.
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- Xiong, C., Lühr, H., and Ma, S. Y., 2013. The magnitude and inter-hemispheric asymmetry of equatorial ionization
anomaly-based on CHAMP and GRACE observations. Journal of Atmospheric and Solar-Terrestrial Physics, 105:160–169,
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- Xu, J., Wang, W., and Gao, H., 2013. The longitudinal variation of the daily mean thermospheric mass density. Journal of
Geophysical Research (Space Physics), 118:515–523, doi:10.1029/2012JA017918.
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- Xu, M., Ye, B. S., and Zhao, Q. D., 2013. Terrestrial Water Storge Changes in the Tangnaihai Basin Measured by GRACE
during 2003-2008, China. Applied Mechanics and Materials, 316:520–526, doi:10.4028/www.scientific.net/AMM.316-317.520.
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- Yang, T., Wang, C., Yu, Z., and Xu, F., 2013. Characterization of spatio-temporal patterns for various GRACE- and GLDAS-born
estimates for changes of global terrestrial water storage. Global and Planetary Change, 109:30–37, doi:10.1016/j.gloplacha.2013.07.005.
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- Yue, X., Schreiner, W. S., Kuo, Y.-H., Zhao, B., Wan, W., Ren, Z., Liu, L., Wei, Y., Lei, J., Solomon, S., and Rocken,
C., 2013. The effect of solar radio bursts on the GNSS radio occultation signals. Journal of Geophysical Research (Space
Physics), 118:5906–5918, doi:10.1002/jgra.50525.
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- Zerbini, S., Raicich, F., Errico, M., and Cappello, G., 2013. An EOF and SVD analysis of interannual variability of GPS coordinates,
environmental parameters and space gravity data. Journal of Geodynamics, 67:111–124, doi:10.1016/j.jog.2012.04.006.
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- Zhang, G., Yao, T., Xie, H., Kang, S., and Lei, Y., 2013. Increased mass over the Tibetan Plateau: From lakes or glaciers?.
Geophysical Research Letters, 40:2125–2130, doi:10.1002/grl.50462.
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- Zhang, T. Y. and Jin, S. G., 2013. Estimate of glacial isostatic adjustment uplift rate in the Tibetan Plateau from
GRACE and GIA models. Journal of Geodynamics, 72:59–66, doi:10.1016/j.jog.2013.05.002.
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- Zhao, S., 2013. Lithosphere thickness and mantle viscosity estimated from joint inversion of GPS and GRACE-derived radial
deformation and gravity rates in North America. Geophysical Journal International, 194:1455–1472, doi:10.1093/gji/ggt212.
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- Zheng, W., Hsu, H.-T., Zhong, M., Liu, C.-S., and Yun, M.-J., 2013. Efficient and rapid accuracy estimation of the Earth's
gravitational field from next-generation GOCE Follow-On by the analytical method. Chinese Physics B, 22(4):049101,
doi:10.1088/1674-1056/22/4/049101.
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- Zhou, Y. L., Ma, S. Y., Liu, R. S., Luehr, H., and Doornbos, E., 2013. Controlling of merging electric field
and IMF magnitude on storm-time changes in thermospheric mass density. Annales Geophysicae, 31:15–30, doi:10.5194/angeo-31-15-2013.
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- Zlotnicki, V., Bettadpur, S., Landerer, F. W., and Watkins, M. M., 2013. Gravity Recovery and Climate Experiment
(GRACE): Detection of Ice Mass Loss, Terrestrial Mass Changes, and Ocean Mass Gains. In Orcutt, J. (editors), Earth System
Monitoring, pp. 123–152, Springer Science+Business Media, New York.
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- Abdalla, A., Fashir, H., Ali, A., and Fairhead, D., 2012. Validation of recent GOCE/GRACE geopotential models over Khartoum
state - Sudan. Journal of Geodetic Science, 2:88–97, doi:10.2478/v10156-011-0035-6.
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- Abe, M., Kroner, C., Förste, C., Petrovic, S., Barthelmes, F., Weise, A., Güntner, A., Creutzfeldt, B., Jahr, T.,
Jentzsch, G., Wilmes, H., and Wziontek, H., 2012. A comparison of GRACE-derived temporal gravity variations with observations
of six European superconducting gravimeters. Geophysical Journal International, 191:545–556, doi:10.1111/j.1365-246X.2012.05641.x.
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- Albertella, A., Savcenko, R., Janjic, T., Rummel, R., Bosch, W., and Schröter, J., 2012. High resolution dynamic ocean
topography in the Southern Ocean from GOCE. Geophysical Journal International, 190:922–930, doi:10.1111/j.1365-246X.2012.05531.x.
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- Anderson, R. G., Lo, M.-H., and Famiglietti, J. S., 2012. Assessing surface water consumption using remotely-sensed
groundwater, evapotranspiration, and precipitation. Geophysical Research Letters, 39:16401, doi:10.1029/2012GL052400.
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- aus der Beek, T., Menzel, L., Rietbroek, R., Fenoglio-Marc, L., Grayek, S., Becker, M., Kusche, J., and Stanev, E. V.,
2012. Modeling the water resources of the Black and Mediterranean Sea river basins and their impact on regional mass changes.
Journal of Geodynamics, 59:157–167, doi:10.1016/j.jog.2011.11.011.
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- Bandikova, T., Flury, J., and Ko, U.-D., 2012. Characteristics and accuracies of the GRACE inter-satellite pointing. Advances
in Space Research, 50:123–135, doi:10.1016/j.asr.2012.03.011.
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- Barletta, V. R., Bordoni, A., Aoudia, A., and Sabadini, R., 2012. Squeezing more information out of time variable gravity
data with a temporal decomposition approach. Global and Planetary Change, 82:51–64, doi:10.1016/j.gloplacha.2011.11.010.
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- Baur, O., 2012. On the computation of mass-change trends from GRACE gravity field time-series. Journal of Geodynamics,
61:120–128, doi:10.1016/j.jog.2012.03.007.
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- Becker, S., Freiwald, G., Losch, M., and Schuh, W.-D., 2012. Rigorous fusion of gravity field, altimetry and stationary ocean
models. Journal of Geodynamics, 59:99–110, doi:10.1016/j.jog.2011.07.006.
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- Bergmann, I., Ramillien, G., and Frappart, F., 2012. Climate-driven interannual ice mass evolution in Greenland. Global
and Planetary Change, 82:1–11, doi:10.1016/j.gloplacha.2011.11.005.
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- Bergmann, I. and Dobslaw, H., 2012. Short-term transport variability of the Antarctic Circumpolar Current from satellite gravity
observations. Journal of Geophysical Research (Oceans), 117(C16):5044, doi:10.1029/2012JC007872.
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- Bilitza, D., Brown, S. A., Wang, M. Y., Souza, J. R., and Roddy, P. A., 2012. Measurements and IRI model
predictions during the recent solar minimum. Journal of Atmospheric and Solar-Terrestrial Physics, 86:99–106,
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- Bloom, A. A., Palmer, P. I., Fraser, A., and Reay, D. S., 2012. Seasonal variability of tropical wetland CH$_4$
emissions: the role of the methanogen-available carbon pool. Biogeosciences, 9:2821–2830, doi:10.5194/bg-9-2821-2012.
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- Boening, C., Willis, J. K., Landerer, F. W., Nerem, R. S., and Fasullo, J., 2012. The 2011 La Niña:
So strong, the oceans fell. Geophysical Research Letters, 39:19602, doi:10.1029/2012GL053055.
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- Boening, C., Lebsock, M., Landerer, F., and Stephens, G., 2012. Snowfall-driven mass change on the East Antarctic ice sheet.
Geophysical Research Letters, 39:21501, doi:10.1029/2012GL053316.
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- Bonin, J. A., Bettadpur, S., and Tapley, B. D., 2012. High-frequency signal and noise estimates of CSR GRACE RL04.
Journal of Geodesy, 86:1165–1177, doi:10.1007/s00190-012-0572-5.
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- Bouman, J. and Fuchs, M. J., 2012. GOCE gravity gradients versus global gravity field models. Geophysical Journal
International, 189:846–850, doi:10.1111/j.1365-246X.2012.05428.x.
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- Boy, J.-P., Hinderer, J., and de Linage, C., 2012. Retrieval of Large-Scale Hydrological Signals in Africa from GRACE Time-Variable
Gravity Fields. Pure and Applied Geophysics, 169:1373–1390, doi:10.1007/s00024-011-0416-x.
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- Brunnabend, S.-E., Schröter, J., Timmermann, R., Rietbroek, R., and Kusche, J., 2012. Modeled steric and mass-driven
sea level change caused by Greenland Ice Sheet melting. Journal of Geodynamics, 59:219–225, doi:10.1016/j.jog.2011.06.001.
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- Cambiotti, G. and Sabadini, R., 2012. A source model for the great 2011 Tohoku earthquake (M$_w$=9.1) from inversion of GRACE
gravity data. Earth and Planetary Science Letters, 335:72–79, doi:10.1016/j.epsl.2012.05.002.
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- Chambers, D. P. and Bonin, J. A., 2012. Evaluation of Release-05 GRACE time-variable gravity coefficients over the
ocean. Ocean Science, 8:859–868, doi:10.5194/os-8-859-2012.
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- Chambers, D. P., Wahr, J., Tamisiea, M. E., and Nerem, R. S., 2012. Reply to comment by W. R. Peltier et al.
on “Ocean mass from GRACE and glacial isostatic adjustment”. Journal of Geophysical Research (Solid Earth),
117(B16):11404, doi:10.1029/2012JB009441.
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- Chen, J. L., Wilson, C. R., and Zhou, Y. H., 2012. Seasonal excitation of polar motion. Journal of Geodynamics,
62:8–15, doi:10.1016/j.jog.2011.12.002.
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- Ciufolini, I., Paolozzi, A., and Paris, C., 2012. Overview of the LARES Mission: orbit, error analysis and technological aspects.
Journal of Physics Conference Series, 354(1):012002, doi:10.1088/1742-6596/354/1/012002.
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- Crossley, D., de Linage, C., Hinderer, J., Boy, J.-P., and Famiglietti, J., 2012. A comparison of the gravity field over Central
Europe from superconducting gravimeters, GRACE and global hydrological models, using EOF analysis. Geophysical Journal
International, 189:877–897, doi:10.1111/j.1365-246X.2012.05404.x.
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- Davis, J. L., Wernicke, B. P., and Tamisiea, M. E., 2012. On seasonal signals in geodetic time series. Journal
of Geophysical Research (Solid Earth), 117(B16):1403, doi:10.1029/2011JB008690.
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- Dayoub, N., Edwards, S. J., and Moore, P., 2012. The Gauss-Listing geopotential value W $_0$ and its rate from altimetric
mean sea level and GRACE. Journal of Geodesy, 86:681–694, doi:10.1007/s00190-012-0547-6.
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- Ditmar, P., Teixeira da Encarnação, J., and Farahani, Hashemi H., 2012. Understanding data noise in gravity
field recovery on the basis of inter-satellite ranging measurements acquired by the satellite gravimetry mission GRACE. Journal
of Geodesy, 86:441–465, doi:10.1007/s00190-011-0531-6.
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- Döll, P., Hoffmann-Dobrev, H., Portmann, F. T., Siebert, S., Eicker, A., Rodell, M., Strassberg, G., and Scanlon,
B. R., 2012. Impact of water withdrawals from groundwater and surface water on continental water storage variations.
Journal of Geodynamics, 59:143–156, doi:10.1016/j.jog.2011.05.001.
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- Duan, J., Shum, C. K., Guo, J., and Huang, Z., 2012. Uncovered spurious jumps in the GRACE atmospheric de-aliasing data:
potential contamination of GRACE observed mass change. Geophysical Journal International, 191:83–87, doi:10.1111/j.1365-246X.2012.05640.x.
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- Elsaka, B., Kusche, J., and Ilk, K.-H., 2012. Recovery of the Earth's gravity field from formation-flying satellites: Temporal
aliasing issues. Advances in Space Research, 50:1534–1552, doi:10.1016/j.asr.2012.07.016.
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- Ewert, H., Groh, A., and Dietrich, R., 2012. Volume and mass changes of the Greenland ice sheet inferred from ICESat and GRACE.
Journal of Geodynamics, 59:111–123, doi:10.1016/j.jog.2011.06.003.
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- Farrell, S. L., McAdoo, D. C., Laxon, S. W., Zwally, H. J., Yi, D., Ridout, A., and Giles, K., 2012. Mean
dynamic topography of the Arctic Ocean. Geophysical Research Letters, 39:1601, doi:10.1029/2011GL050052.
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- Fenoglio-Marc, L., Rietbroek, R., Grayek, S., Becker, M., Kusche, J., and Stanev, E., 2012. Water mass variation in the Mediterranean
and Black Seas. Journal of Geodynamics, 59:168–182, doi:10.1016/j.jog.2012.04.001.
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- Fersch, B., Kunstmann, H., Bárdossy, A., Devaraju, B., and Sneeuw, N., 2012. Continental-Scale Basin Water Storage
Variation from Global and Dynamically Downscaled Atmospheric Water Budgets in Comparison with GRACE-Derived Observations.
Journal of Hydrometeorology, 13:1589–1603, doi:10.1175/JHM-D-11-0143.1.
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- Forbes, J. M. and Zhang, X., 2012. Lunar tide amplification during the January 2009 stratosphere warming event: Observations
and theory. Journal of Geophysical Research (Space Physics), 117(A16):12312, doi:10.1029/2012JA017963.
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- Forman, B. A., Reichle, R. H., and Rodell, M., 2012. Assimilation of terrestrial water storage from GRACE in a snow-dominated
basin. Water Resources Research, 48:1507, doi:10.1029/2011WR011239.
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- Forootan, E. and Kusche, J., 2012. Separation of global time-variable gravity signals into maximally independent components.
Journal of Geodesy, 86:477–497, doi:10.1007/s00190-011-0532-5.
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- Frappart, F., Papa, F., Santos da Silva, J., Ramillien, G., Prigent, C., Seyler, F., and Calmant, S., 2012. Surface freshwater
storage and dynamics in the Amazon basin during the 2005 exceptional drought. Environmental Research Letters, 7(4):044010,
doi:10.1088/1748-9326/7/4/044010.
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- Fritsche, M., Döll, P., and Dietrich, R., 2012. Global-scale validation of model-based load deformation of the Earth's
crust from continental watermass and atmospheric pressure variations using GPS. Journal of Geodynamics, 59:133–142,
doi:10.1016/j.jog.2011.04.001.
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- Fu, Y. and Freymueller, J. T., 2012. Seasonal and long-term vertical deformation in the Nepal Himalaya constrained by
GPS and GRACE measurements. Journal of Geophysical Research (Solid Earth), 117(B16):3407, doi:10.1029/2011JB008925.
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- Fu, Y., Freymueller, J. T., and Jensen, T., 2012. Seasonal hydrological loading in southern Alaska observed by GPS and
GRACE. Geophysical Research Letters, 39:15310, doi:10.1029/2012GL052453.
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- Fukushima, T., 2012. Parallel computation of satellite orbit acceleration. Computers and Geosciences, 49:1–9,
doi:10.1016/j.cageo.2012.07.009.
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- Garcia-Soto, C., Vazquez-Cuervo, J., Clemente-Colón, P., and Hernandez, F., 2012. Satellite oceanography and climate
change. Deep Sea Research Part II: Topical Studies in Oceanography, 77:1–9, doi:10.1016/j.dsr2.2012.07.004.
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- Gardner, A., Moholdt, G., Arendt, A., and Wouters, B., 2012. Accelerated contributions of Canada's Baffin and Bylot Island
glaciers to sea level rise over the past half century. The Cryosphere, 6:1103–1125, doi:10.5194/tc-6-1103-2012.
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- Göttl, F., Schmidt, M., Heinkelmann, R., Savcenko, R., and Bouman, J., 2012. Combination of gravimetric and altimetric
space observations for estimating oceanic polar motion excitations. Journal of Geophysical Research (Oceans), 117(C16):10022,
doi:10.1029/2012JC007915.
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- Groh, A., Ewert, H., Scheinert, M., Fritsche, M., Rülke, A., Richter, A., Rosenau, R., and Dietrich, R., 2012. An investigation
of Glacial Isostatic Adjustment over the Amundsen Sea sector, West Antarctica. Global and Planetary Change, 98:45–53,
doi:10.1016/j.gloplacha.2012.08.001.
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- Harig, Christopher and Simons, Frederik J., 2012. Mapping Greenland's mass loss in space and time. Proceedings of the National
Academy of Science, 109(49):19934–19937, doi:10.1073/pnas.1206785109.
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- Hayn, M., Panet, I., Diament, M., Holschneider, M., Mandea, M., and Davaille, A., 2012. Wavelet-based directional analysis
of the gravity field: evidence for large-scale undulations. Geophysical Journal International, 189:1430–1456,
doi:10.1111/j.1365-246X.2012.05455.x.
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- Heinzel, G., Sheard, B., Brause, N., Danzmann, K., Dehne, M., Gerberding, O., Mahrdt, C., Müller, V., Schütze, D.,
Stede, G., Klipstein, W., Folkner, W., Speroy, R., Nicklaus, K., Gath, P., and Shaddock, D., 2012. Laser Ranging Interferometer
for GRACE follow-on. In Proceedings of the International Conference on Space Optics (ICSO2012), October 9th-12th 2012,
Ajaccio, Corse, pp. 1–9.
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- Henry, O., Prandi, P., Llovel, W., Cazenave, A., Jevrejeva, S., Stammer, D., Meyssignac, B., and Koldunov, N., 2012. Tide
gauge-based sea level variations since 1950 along the Norwegian and Russian coasts of the Arctic Ocean: Contribution of the
steric and mass components. Journal of Geophysical Research (Oceans), 117(C16):6023, doi:10.1029/2011JC007706.
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- Hinderer, J., Pfeffer, J., Boucher, M., Nahmani, S., De Linage, C., Boy, J.-P., Genthon, P., Seguis, L., Favreau, G., Bock,
O., and Descloitres, M., 2012. Land Water Storage Changes from Ground and Space Geodesy: First Results from the GHYRAF (Gravity
and Hydrology in Africa) Experiment. Pure and Applied Geophysics, 169:1391–1410, doi:10.1007/s00024-011-0417-9.
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- Hoque, M. M. and Jakowski, N., 2012. A new global model for the ionospheric F2 peak height for radio wave propagation.
Annales Geophysicae, 30:797–809, doi:10.5194/angeo-30-797-2012.
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- Horwath, M., Legrésy, B., Rémy, F., Blarel, F., and Lemoine, J.-M., 2012. Consistent patterns of Antarctic ice
sheet interannual variations from ENVISAT radar altimetry and GRACE satellite gravimetry. Geophysical Journal International,
189:863–876, doi:10.1111/j.1365-246X.2012.05401.x.
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- Houborg, R., Rodell, M., Li, B., Reichle, R., and Zaitchik, B. F., 2012. Drought indicators based on model-assimilated
Gravity Recovery and Climate Experiment (GRACE) terrestrial water storage observations. Water Resources Research, 48:7525,
doi:10.1029/2011WR011291.
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- Huang, J., Halpenny, J., van der Wal, W., Klatt, C., James, T. S., and Rivera, A., 2012. Detectability of groundwater
storage change within the Great Lakes Water Basin using GRACE. Journal of Geophysical Research (Solid Earth), 117(B16):8401,
doi:10.1029/2011JB008876.
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- Huang, C. Y., Delay, S. H., Roddy, P. A., Sutton, E. K., and Stoneback, R., 2012. Longitudinal structures
in the equatorial ionosphere during deep solar minimum. Journal of Atmospheric and Solar-Terrestrial Physics, 90:156–163,
doi:10.1016/j.jastp.2012.04.012.
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- Hughes, C. W., Tamisiea, M. E., Bingham, R. J., and Williams, J., 2012. Weighing the ocean: Using a single
mooring to measure changes in the mass of the ocean. Geophysical Research Letters, 39:17602, doi:10.1029/2012GL052935.
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- Iorio, L., 2012. Constraining the electric charges of some astronomical bodies in Reissner-Nordström spacetimes and generic
r $^-2$-type power-law potentials from orbital motions. General Relativity and Gravitation, pp. 1753–1767, doi:10.1007/s10714-012-1365-0.
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- Iorio, L., 2012. Dynamical orbital effects of general relativity on the satellite-to-satellite range and range-rate in the
GRACE mission: A sensitivity analysis. Advances in Space Research, 50:334–345, doi:10.1016/j.asr.2012.04.012.
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- Jacob, T., Wahr, J., Pfeffer, W. T., and Swenson, S., 2012. Recent contributions of glaciers and ice caps to sea level
rise. Nature, 482:514–518, doi:10.1038/nature10847.
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- Jacob, T., Wahr, J., Gross, R., Swenson, S., and A, G., 2012. Estimating geoid height change in North America: past, present
and future. Journal of Geodesy, 86:337–358, doi:10.1007/s00190-011-0522-7.
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- Janjic, T., Schröter, J., Savcenko, R., Bosch, W., Albertella, A., Rummel, R., and Klatt, O., 2012. Impact of combining
GRACE and GOCE gravity data on ocean circulation estimates. Ocean Science, 8:65–79, doi:10.5194/os-8-65-2012.
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- Janjic, T., Schröter, J., Albertella, A., Bosch, W., Rummel, R., Savcenko, R., Schwabe, J., and Scheinert, M., 2012.
Assimilation of geodetic dynamic ocean topography using ensemble based Kalman filter. Journal of Geodynamics, 59:92–98,
doi:10.1016/j.jog.2011.07.001.
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- Jin, S. G., Hassan, A. A., and Feng, G. P., 2012. Assessment of terrestrial water contributions to polar motion
from GRACE and hydrological models. Journal of Geodynamics, 62:40–48, doi:10.1016/j.jog.2012.01.009.
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- Joodaki, G. and Nahavandchi, H., 2012. Mass loss of the Greenland ice sheet from GRACE time-variable gravity measurements.
Studia Geophysica et Geodaetica, 56:197–214, doi:10.1007/s11200-010-0091-x.
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- Joodaki, G. and Nahavandchi, H., 2012. Mass balance and mass loss acceleration of the Greenland ice sheet (2002 - 2011) from
GRACE gravity data. Journal of Geodetic Science, 2:156–161, doi:10.2478/v10156-011-0032-9.
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- Kaban, M. K. and Trubitsyn, V., 2012. Density structure of the mantle transition zone and the dynamic geoid. Journal
of Geodynamics, 59:183–192, doi:10.1016/j.jog.2012.02.007.
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- King, M. A., Bingham, R. J., Moore, P., Whitehouse, P. L., Bentley, M. J., and Milne, G. A., 2012.
Lower satellite-gravimetry estimates of Antarctic sea-level contribution. Nature, 491:586–590, doi:10.1038/nature11621.
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- Ko, U.-D., Tapley, B. D., Ries, J. C., and Bettadpur, S. V., 2012. High-Frequency Noise in the Gravity Recovery
and Climate Experiment Intersatellite Ranging System. Journal of Spacecraft and Rockets, 49:1163–1173, doi:10.2514/1.A32141.
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- Köhl, A., Siegismund, F., and Stammer, D., 2012. Impact of assimilating bottom pressure anomalies from GRACE on ocean
circulation estimates. Journal of Geophysical Research (Oceans), 117(C16):4032, doi:10.1029/2011JC007623.
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- Köther, N., Götze, H.-J., Gutknecht, B. D., Jahr, T., Jentzsch, G., Lücke, O. H., Mahatsente, R.,
Sharma, R., and Zeumann, S., 2012. The seismically active Andean and Central American margins: Can satellite gravity map lithospheric
structures?. Journal of Geodynamics, 59:207–218, doi:10.1016/j.jog.2011.11.004.
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- Kurtenbach, E., Eicker, A., Mayer-Gürr, T., Holschneider, M., Hayn, M., Fuhrmann, M., and Kusche, J., 2012. Improved
daily GRACE gravity field solutions using a Kalman smoother. Journal of Geodynamics, 59:39–48, doi:10.1016/j.jog.2012.02.006.
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- Kusche, J., Klemann, V., and Bosch, W., 2012. Mass distribution and mass transport in the Earth system. Journal of Geodynamics,
59:1–8, doi:10.1016/j.jog.2012.03.003.
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- Landerer, F. W. and Swenson, S. C., 2012. Accuracy of scaled GRACE terrestrial water storage estimates. Water
Resources Research, 48:4531, doi:10.1029/2011WR011453.
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- Lee, C.-K., Han, S.-C., Bilitza, D., and Seo, K.-W., 2012. Global characteristics of the correlation and time lag between
solar and ionospheric parameters in the 27-day period. Journal of Atmospheric and Solar-Terrestrial Physics, 77:219–224,
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- Lei, J., Matsuo, T., Dou, X., Sutton, E., and Luan, X., 2012. Annual and semiannual variations of thermospheric density: EOF
analysis of CHAMP and GRACE data. Journal of Geophysical Research (Space Physics), 117(A16):1310, doi:10.1029/2011JA017324.
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- Lei, J., Burns, A. G., Thayer, J. P., Wang, W., Mlynczak, M. G., Hunt, L. A., Dou, X., and Sutton, E.,
2012. Overcooling in the upper thermosphere during the recovery phase of the 2003 October storms. Journal of Geophysical
Research (Space Physics), 117(A16):3314, doi:10.1029/2011JA016994.
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- Li, B., Rodell, M., Zaitchik, B. F., Reichle, R. H., Koster, R. D., and van Dam, T. M., 2012. Assimilation
of GRACE terrestrial water storage into a land surface model: Evaluation and potential value for drought monitoring in western
and central Europe. Journal of Hydrology, 446:103–115, doi:10.1016/j.jhydrol.2012.04.035.
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- Lin, T., Hwang, C., Tseng, T.-P., and Chao, B. F., 2012. Low-degree gravity change from GPS data of COSMIC and GRACE
satellite missions. Journal of Geodynamics, 53:34–42, doi:10.1016/j.jog.2011.08.004.
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- Livneh, B. and Lettenmaier, D. P., 2012. Multi-criteria parameter estimation for the Unified Land Model. Hydrology
and Earth System Sciences, 16:3029–3048, doi:10.5194/hess-16-3029-2012.
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- Locke, T., Further developments in orbit ephemeris derived neutral density. Ph.D. Thesis, University of Kansas, 2012.
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- Loomis, B. D., Nerem, R. S., and Luthcke, S. B., 2012. Simulation study of a follow-on gravity mission to GRACE.
Journal of Geodesy, 86:319–335, doi:10.1007/s00190-011-0521-8.
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- Lühr, H., Park, J., Ritter, P., and Liu, H., 2012. In-Situ CHAMP Observation of Ionosphere-Thermosphere Coupling. Space
Science Reviews, 168:237–260, doi:10.1007/s11214-011-9798-4.
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- Maier, A., Krauss, S., Hausleitner, W., and Baur, O., 2012. Contribution of satellite laser ranging to combined gravity field
models. Advances in Space Research, 49:556–565, doi:10.1016/j.asr.2011.10.026.
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- Mandea, M., Panet, I., Lesur, V., de Viron, O., Diament, M., and Le Mouel, J. L., 2012. Recent changes of the Earth's
core derived from satellite observations of magnetic and gravity fields. PNAS, 109:19129–19133, doi:10.1073/pnas.1207346109.
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- Matos, A., Blitzkow, D., Almeida, F., Costa, S., Campos, I., and Barbosa, A., 2012. Analysis of water level variations in
Brazilian basins using GRACE. Journal of Geodetic Science, 2:76–87, doi:10.2478/v10156-011-0034-7.
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- Matsuo, T., Fedrizzi, M., Fuller-Rowell, T. J., and Codrescu, M. V., 2012. Data assimilation of thermospheric mass
density. Space Weather, 10:5002, doi:10.1029/2012SW000773.
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- Matsuo, K. and Heki, K., 2012. Anomalous precipitation signatures of the Arctic Oscillation in the time-variable gravity field
by GRACE. Geophysical Journal International, 190:1495–1506, doi:10.1111/j.1365-246X.2012.05588.x.
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- Mayer-Gürr, T., Savcenko, R., Bosch, W., Daras, I., Flechtner, F., and Dahle, C., 2012. Ocean tides from satellite altimetry
and GRACE. Journal of Geodynamics, 59:28–38, doi:10.1016/j.jog.2011.10.009.
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- McGrath, G. S., Sadler, R., Fleming, K., Tregoning, P., Hinz, C., and Veneklaas, E. J., 2012. Tropical cyclones
and the ecohydrology of Australia's recent continental-scale drought. Geophysical Research Letters, 39:3404, doi:10.1029/2011GL050263.
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- Métivier, L., Collilieux, X., and Altamimi, Z., 2012. ITRF2008 contribution to glacial isostatic adjustment and recent
ice melting assessment. Geophysical Research Letters, 39:1309, doi:10.1029/2011GL049942.
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- Meyer, U., Jäggi, A., and Beutler, G., 2012. Monthly gravity field solutions based on GRACE observations generated with
the Celestial Mechanics Approach. Earth and Planetary Science Letters, 345:72–80, doi:10.1016/j.epsl.2012.06.026.
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- Moholdt, G., Wouters, B., and Gardner, A. S., 2012. Recent mass changes of glaciers in the Russian High Arctic. Geophysical
Research Letters, 39:L502, doi:10.1029/2012GL051466.
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- Müller, J., Naeimi, M., Gitlein, O., Timmen, L., and Denker, H., 2012. A land uplift model in Fennoscandia combining
GRACE and absolute gravimetry data. Physics and Chemistry of the Earth, 53:54–60, doi:10.1016/j.pce.2010.12.006.
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- Nahmani, S., Bock, O., Bouin, M.-N., Santamar\'ıa-Gómez, A., Boy, J.-P., Collilieux, X., Métivier, L.,
Panet, I., Genthon, P., de Linage, C., and Wöppelmann, G., 2012. Hydrological deformation induced by the West African
Monsoon: Comparison of GPS, GRACE and loading models. Journal of Geophysical Research (Solid Earth), 117(B16):5409,
doi:10.1029/2011JB009102.
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- Numata, K. and Camp, J., 2012. Precision laser development for interferometric space missions NGO, SGO, and GRACE Follow-On.
Journal of Physics Conference Series, 363(1):012054, doi:10.1088/1742-6596/363/1/012054.
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- Olaizola, M., van de Wal, R. S. W., Helsen, M. M., and de Boer, B., 2012. An ice flow modeling perspective
on bedrock adjustment patterns of the Greenland ice sheet. The Cryosphere, 6:1263–1274, doi:10.5194/tc-6-1263-2012.
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- Park, J., Lühr, H., Jakowski, N., Gerzen, T., Kil, H., Jee, G., Xiong, C., Wook Min, K., and Noja, M., 2012. A long-lived
band of plasma density enhancement at mid-latitudes during the 2003 Halloween magnetic storm. Journal of Atmospheric and
Solar-Terrestrial Physics, 80:100–110, doi:10.1016/j.jastp.2012.03.009.
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- Pavlis, N. K., Holmes, S. A., Kenyon, S. C., and Factor, J. K., 2012. The development and evaluation of
the Earth Gravitational Model 2008 (EGM2008). Journal of Geophysical Research (Solid Earth), 117(B16):4406, doi:10.1029/2011JB008916.
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- Pedinotti, V., Boone, A., Decharme, B., Crétaux, J. F., Mognard, N., Panthou, G., Papa, F., and Tanimoun, B. A.,
2012. Evaluation of the ISBA-TRIP continental hydrologic system over the Niger basin using in situ and satellite derived datasets.
Hydrology and Earth System Sciences, 16:1745–1773, doi:10.5194/hess-16-1745-2012.
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- Peltier, W. R., Drummond, R., and Roy, K., 2012. Comment on “Ocean mass from GRACE and glacial isostatic adjustment”
by D. P. Chambers et al.. Journal of Geophysical Research (Solid Earth), 117(B16):11403, doi:10.1029/2011JB008967.
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- Pereira, A. and Pacino, M. C., 2012. Annual and seasonal water storage changes detected from GRACE data in the La Plata
Basin. Physics of the Earth and Planetary Interiors, 212:88–99, doi:10.1016/j.pepi.2012.09.005.
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- Peterseim, N., Flury, J., and Schlicht, A., 2012. Magnetic torquer induced disturbing signals within GRACE accelerometer data.
Advances in Space Research, 49:1388–1394, doi:10.1016/j.asr.2012.02.013.
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- Phillips, T., Nerem, R. S., Fox-Kemper, B., Famiglietti, J. S., and Rajagopalan, B., 2012. The influence of ENSO
on global terrestrial water storage using GRACE. Geophysical Research Letters, 39:16705, doi:10.1029/2012GL052495.
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- Quinn, K. J. and Ponte, R. M., 2012. High frequency barotropic ocean variability observed by GRACE and satellite
altimetry. Geophysical Research Letters, 39:7603, doi:10.1029/2012GL051301.
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- Ramillien, G. L., Seoane, L., Frappart, F., Biancale, R., Gratton, S., Vasseur, X., and Bourgogne, S., 2012. Constrained
Regional Recovery of Continental Water Mass Time-variations from GRACE-based Geopotential Anomalies over South America. Surveys
in Geophysics, 33:887–905, doi:10.1007/s10712-012-9177-z.
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- Rangelova, E., Sideris, M. G., and Kim, J. W., 2012. On the capabilities of the multi-channel singular spectrum
method for extracting the main periodic and non-periodic variability from weekly GRACE data. Journal of Geodynamics,
54:64–78, doi:10.1016/j.jog.2011.10.006.
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- Rangelova, E., Wal, W. V. D., and Sideris, M. G., 2012. How Significant is the Dynamic Component of the North
American Vertical Datum?. Journal of Geodetic Science, 2:281–289, doi:10.2478/v10156-012-0005-7.
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- Reager, J. T., Terrestrial water storage across scales: Applications of the GRACE satellite mission for global hydrology.
Ph.D. Thesis, University of California, Irvine, 2012.
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- Riegger, J., Tourian, M. J., Devaraju, B., and Sneeuw, N., 2012. Analysis of grace uncertainties by hydrological and
hydro-meteorological observations. Journal of Geodynamics, 59:16–27, doi:10.1016/j.jog.2012.02.001.
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- Rietbroek, R., Brunnabend, S.-E., Kusche, J., and Schröter, J., 2012. Resolving sea level contributions by identifying
fingerprints in time-variable gravity and altimetry. Journal of Geodynamics, 59:72–81, doi:10.1016/j.jog.2011.06.007.
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- Rietbroek, R., Fritsche, M., Brunnabend, S.-E., Daras, I., Kusche, J., Schröter, J., Flechtner, F., and Dietrich, R.,
2012. Global surface mass from a new combination of GRACE, modelled OBP and reprocessed GPS data. Journal of Geodynamics,
59:64–71, doi:10.1016/j.jog.2011.02.003.
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- Rülke, A., Liebsch, G., Sacher, M., Schäfer, U., Schirmer, U., and Ihde, J., 2012. Unification of European height
system realizations. Journal of Geodetic Science, 2:343–354, doi:10.2478/v10156-011-0048-1.
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- Rummel, R., 2012. Height unification using GOCE. Journal of Geodetic Science, 2:355–362, doi:10.2478/v10156-011-0047-2.
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- Sasaki, O., Kim, H., Hirabayashi, Y., Yamada, H. G., and Kanae, S., 2012. Estimation of Glacier Mass Changes in Himalaya
Alpine Region Inferred from GRACE Satellite Gravimetry (Japanese). Journal of Japan Society of Civil Engineers, Ser. B1
(Hydraulic Engineering), 68, doi:10.2208/jscejhe.68.I_313.
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- Sasgen, I., van den Broeke, M., Bamber, J. L., Rignot, E., Sørensen, L. S., Wouters, B., Martinec, Z., Velicogna,
I., and Simonsen, S. B., 2012. Timing and origin of recent regional ice-mass loss in Greenland. Earth and Planetary
Science Letters, 333:293–303, doi:10.1016/j.epsl.2012.03.033.
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- Sasgen, I., Klemann, V., and Martinec, Z., 2012. Towards the inversion of GRACE gravity fields for present-day ice-mass changes
and glacial-isostatic adjustment in North America and Greenland. Journal of Geodynamics, 59:49–63, doi:10.1016/j.jog.2012.03.004.
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- Save, H., Bettadpur, S., and Tapley, B. D., 2012. Reducing errors in the GRACE gravity solutions using regularization.
Journal of Geodesy, 86:695–711, doi:10.1007/s00190-012-0548-5.
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- Scanlon, B. R., Longuevergne, L., and Long, D., 2012. Ground referencing GRACE satellite estimates of groundwater storage
changes in the California Central Valley, USA. Water Resources Research, 48:4520, doi:10.1029/2011WR011312.
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- Scanlon, B. R., Faunt, C. C., Longuevergne, L., Reedy, R. C., Alley, W. M., McGuire, V. L., and McMahon,
P. B., 2012. Groundwater depletion and sustainability of irrigation in the US High Plains and Central Valley. PNAS,
109:9320–9325, doi:10.1073/pnas.1200311109.
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- Schmeer, M., Schmidt, M., Bosch, W., and Seitz, F., 2012. Separation of mass signals within GRACE monthly gravity field models
by means of empirical orthogonal functions. Journal of Geodynamics, 59:124–132, doi:10.1016/j.jog.2012.03.001.
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- Seoane, L., Biancale, R., and Gambis, D., 2012. Agreement between Earth's rotation and mass displacement as detected by GRACE.
Journal of Geodynamics, 62:49–55, doi:10.1016/j.jog.2012.02.008.
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- Shahraki, M. and Schmeling, H., 2012. Plume-induced geoid anomalies from 2D axi-symmetric temperature- and pressure-dependent
mantle convection models. Journal of Geodynamics, 59:193–206, doi:10.1016/j.jog.2012.01.006.
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- Shamsudduha, M., Taylor, R. G., and Longuevergne, L., 2012. Monitoring groundwater storage changes in the highly seasonal
humid tropics: Validation of GRACE measurements in the Bengal Basin. Water Resources Research, 48(2):W02508, doi:10.1029/2011WR010993.
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- Sheard, B. S., Heinzel, G., Danzmann, K., Shaddock, D. A., Klipstein, W. M., and Folkner, W. M., 2012.
Intersatellite laser ranging instrument for the GRACE follow-on mission. Journal of Geodesy, 86:1083–1095, doi:10.1007/s00190-012-0566-3.
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- Shepherd, A., Ivins, E. R., A, G., Barletta, V. R., Bentley, M. J., Bettadpur, S., Briggs, K. H., Bromwich,
D. H., Forsberg, R., Galin, N., Horwath, M., Jacobs, S., Joughin, I., King, M. A., Lenaerts, J. T. M.,
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- Slobbe, D. C., Simons, F. J., and Klees, R., 2012. The spherical Slepian basis as a means to obtain spectral consistency
between mean sea level and the geoid. Journal of Geodesy, 86:609–628, doi:10.1007/s00190-012-0543-x.
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- Spada, G., Ruggieri, G., Sørensen, L. S., Nielsen, K., Melini, D., and Colleoni, F., 2012. Greenland uplift and
regional sea level changes from ICESat observations and GIA modelling. Geophysical Journal International, 189:1457–1474,
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- Steffen, H., Wu, P., and Wang, H., 2012. Optimal locations for absolute gravity measurements and sensitivity of GRACE observations
for constraining glacial isostatic adjustment on the northern hemisphere. Geophysical Journal International, 190:1483–1494,
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- Sun, A. Y., Green, R., Swenson, S., and Rodell, M., 2012. Toward calibration of regional groundwater models using GRACE
data. Journal of Hydrology, 422:1–9, doi:10.1016/j.jhydrol.2011.10.025.
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- Sun, W. and Zhou, X., 2012. Coseismic deflection change of the vertical caused by the 2011 Tohoku-Oki earthquake (M$_w$ 9.0).
Geophysical Journal International, 189:937–955, doi:10.1111/j.1365-246X.2012.05434.x.
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- Sun, R., Li, L., and Li, P., 2012. An analysis of the steric sea level change by introducing sea surface temperature. Journal
of Ocean University of China, 12:37–44, doi:10.1007/s11802-013-1919-0.
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- Tang, J., Cheng, H., and Liu, L., 2012. Using nonlinear programming to correct leakage and estimate mass change from GRACE
observation and its application to Antarctica. Journal of Geophysical Research (Solid Earth), 117(B16):11410, doi:10.1029/2012JB009480.
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- Tangdamrongsub, N., Hwang, C., Shum, C. K., and Wang, L., 2012. Regional surface mass anomalies from GRACE KBR measurements:
Application of L-curve regularization and a priori hydrological knowledge. Journal of Geophysical Research (Solid Earth),
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- Tondi, R., Schivardi, R., Molinari, I., and Morelli, A., 2012. Upper mantle structure below the European continent: Constraints
from surface-wave tomography and GRACE satellite gravity data. Journal of Geophysical Research (Solid Earth), 117(B16):9401,
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- Ueda, T., Koike, T., and Wang, L., 2012. Application of a distributed hydrological model and satellite observations for soil
moisture and groundwater level simulation. Journal of Japan Society of Civil Engineers, Ser. B1 (Hydraulic Engineering),
67, doi:10.2208/jscejhe.67.I_373.
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- Velicogna, I., Tong, J., Zhang, T., and Kimball, J. S., 2012. Increasing subsurface water storage in discontinuous permafrost
areas of the Lena River basin, Eurasia, detected from GRACE. Geophysical Research Letters, 39:9403, doi:10.1029/2012GL051623.
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- Vergnes, J.-P. and Decharme, B., 2012. A simple groundwater scheme in the TRIP river routing model: global off-line evaluation
against GRACE terrestrial water storage estimates and observed river discharges. Hydrology and Earth System Sciences,
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- Volkov, D. L. and Zlotnicki, V., 2012. Performance of GOCE and GRACE-derived mean dynamic topographies in resolving Antarctic
Circumpolar Current fronts. Ocean Dynamics, 62:893–905, doi:10.1007/s10236-012-0541-9.
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- Wagner, C. A. and McAdoo, D. C., 2012. Error calibration of geopotential harmonics in recent and past gravitational
fields. Journal of Geodesy, 86:99–108, doi:10.1007/s00190-011-0494-7.
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- Wang, Y. M., Saleh, J., Li, X., and Roman, D. R., 2012. The US Gravimetric Geoid of 2009 (USGG2009): model development
and evaluation. Journal of Geodesy, 86:165–180, doi:10.1007/s00190-011-0506-7.
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- Wang, L., Shum, C. K., Simons, F. J., Tapley, B., and Dai, C., 2012. Coseismic and postseismic deformation of the
2011 Tohoku-Oki earthquake constrained by GRACE gravimetry. Geophysical Research Letters, 39:7301, doi:10.1029/2012GL051104.
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- Wang, L., Shum, C. K., Simons, F. J., Tassara, A., Erkan, K., Jekeli, C., Braun, A., Kuo, C., Lee, H., and Yuan,
D.-N., 2012. Coseismic slip of the 2010 Mw 8.8 Great Maule, Chile, earthquake quantified by the inversion of GRACE observations.
Earth and Planetary Science Letters, 335:167–179, doi:10.1016/j.epsl.2012.04.044.
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- Wang, X., Gerlach, C., and Rummel, R., 2012. Time-variable gravity field from satellite constellations using the energy integral.
Geophysical Journal International, 190:1507–1525, doi:10.1111/j.1365-246X.2012.05578.x.
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- Wang, H., Xiang, L., Jia, L., Jiang, L., Wang, Z., Hu, B., and Gao, P., 2012. Load Love numbers and Green's functions for
elastic Earth models PREM, iasp91, ak135, and modified models with refined crustal structure from Crust 2.0. Computers
and Geosciences, 49:190–199, doi:10.1016/j.cageo.2012.06.022.
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- Wang, L., Shum, C. K., and Jekeli, C., 2012. Gravitational gradient changes following the 2004 December 26 Sumatra-Andaman
Earthquake inferred from GRACE. Geophysical Journal International, 191:1109–1118, doi:10.1111/j.1365-246X.2012.05674.x.
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- Wang, L., Coseismic Deformation Detection and Quantification for Great Earthquakes Using Spaceborne Gravimetry. Ph.D. Thesis,
The Ohio State University, 2012.
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- Weise, A., Kroner, C., Abe, M., Creutzfeldt, B., Förste, C., Güntner, A., Ihde, J., Jahr, T., Jentzsch, G., Wilmes,
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- Wiese, D. N., Nerem, R. S., and Lemoine, F. G., 2012. Design considerations for a dedicated gravity recovery
satellite mission consisting of two pairs of satellites. Journal of Geodesy, 86:81–98, doi:10.1007/s00190-011-0493-8.
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- Willis, M. J., Melkonian, A. K., Pritchard, M. E., and Rivera, A., 2012. Ice loss from the Southern Patagonian
Ice Field, South America, between 2000 and 2012. Geophysical Research Letters, 39:17501, doi:10.1029/2012GL053136.
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- Wise, J. O., Burke, W. J., and Sutton, E. K., 2012. Globally averaged exospheric temperatures derived from
CHAMP and GRACE accelerometer measurements. Journal of Geophysical Research (Space Physics), 117(A16):4312, doi:10.1029/2011JA017108.
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- Xie, H., Longuevergne, L., Ringler, C., and Scanlon, B. R., 2012. Calibration and evaluation of a semi-distributed watershed
model of Sub-Saharan Africa using GRACE data. Hydrology and Earth System Sciences, 16:3083–3099, doi:10.5194/hess-16-3083-2012.
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- Yamamoto, T., 2012. Design and Performance Analysis of GPS Based Precise Relative Navigation for Rendezvous and Formation
Flying Missions in Low Earth Orbit. Transactions of the Japanese Society for Artificial Intelligence, Aerospace Technology
Japan, 8, doi:10.2322/tastj.8.Pd_75.
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- Yue, X., Schreiner, W. S., Kuo, Y.-H., Hunt, D. C., Wang, W., Solomon, S. C., Burns, A. G., Bilitza, D.,
Liu, J.-Y., Wan, W., and Wickert, J., 2012. Global 3-D ionospheric electron density reanalysis based on multisource data assimilation.
Journal of Geophysical Research (Space Physics), 117(A16):9325, doi:10.1029/2012JA017968.
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- Zeng, Z., Piao, S., Lin, X., Yin, G., Peng, S., Ciais, P., and Myneni, R. B., 2012. Global evapotranspiration over the
past three decades: estimation based on the water balance equation combined with empirical models. Environmental Research
Letters, 7(1):014026, doi:10.1088/1748-9326/7/1/014026.
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- Zenner, L., Fagiolini, E., Daras, I., Flechtner, F., Gruber, T., Schmidt, T., and Schwarz, G., 2012. Non-tidal atmospheric
and oceanic mass variations and their impact on GRACE data analysis. Journal of Geodynamics, 59:9–15, doi:10.1016/j.jog.2012.01.010.
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- Zheng, W., Hsu, H., Zhong, M., and Yun, M., 2012. Efficient accuracy improvement of GRACE global gravitational field recovery
using a new Inter-satellite Range Interpolation Method. Journal of Geodynamics, 53:1–7, doi:10.1016/j.jog.2011.07.003.
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- Zheng, W., Hsu, H., Zhong, M., and Yun, M., 2012. Precise Recovery of the Earth's Gravitational Field With GRACE: Intersatellite
Range-Rate Interpolation Approach. IEEE Geoscience and Remote Sensing Letters, 9:422–426, doi:10.1109/LGRS.2011.2171475.
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- Zhou, X., Sun, W., Zhao, B., Fu, G., Dong, J., and Nie, Z., 2012. Geodetic observations detecting coseismic displacements
and gravity changes caused by the Mw = 9.0 Tohoku-Oki earthquake. Journal of Geophysical Research (Solid Earth), 117(B16):5408,
doi:10.1029/2011JB008849.
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- Zotov, L. V., 2012. Application of multichannel singular spectrum analysis to geophysical fields and astronomical images.
Advances in Astronomy and Space Physics, 2:82–84.
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- Anlauf, H., Pingel, D., and Rhodin, A., 2011. Assimilation of GPS radio occultation data at DWD. Atmospheric Measurement
Techniques, 4:1105–1113, doi:10.5194/amt-4-1105-2011.
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- Anthes, R. A., 2011. Exploring Earth's atmosphere with radio occultation: contributions to weather, climate and space
weather. Atmospheric Measurement Techniques, 4:1077–1103, doi:10.5194/amt-4-1077-2011.
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- Argus, D. F., Blewitt, G., Peltier, W. R., and Kreemer, C., 2011. Rise of the Ellsworth mountains and parts of the
East Antarctic coast observed with GPS. Geophysical Research Letters, 381:L16303, doi:10.1029/2011GL048025.
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- Arudra, A. K., Atmospheric density estimation using satellite precision orbit ephemerides. Ph.D. Thesis, University of
Kansas, 2011.
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- Baur, O. and Sneeuw, N., 2011. Assessing Greenland ice mass loss by means of point-mass modeling: a viable methodology. Journal
of Geodesy, 85:607–615, doi:10.1007/s00190-011-0463-1.
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- Becker, M., Meyssignac, B., Xavier, L., Cazenave, A., Alkama, R., and Decharme, B., 2011. Past terrestrial water storage (1980-2008)
in the Amazon Basin reconstructed from GRACE and in situ river gauging data. Hydrology and Earth System Sciences, 15:533–546,
doi:10.5194/hess-15-533-2011.
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- Beyerle, G., Grunwaldt, L., Heise, S., Köhler, W., König, R., Michalak, G., Rothacher, M., Schmidt, T., Wickert,
J., Tapley, B. D., and Giesinger, B., 2011. First results from the GPS atmosphere sounding experiment TOR aboard the
TerraSAR-X satellite. Atmospheric Chemistry & Physics, 11:6687–6699, doi:10.5194/acp-11-6687-2011.
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- Bingham, R. J., Knudsen, P., Andersen, O., and Pail, R., 2011. An initial estimate of the North Atlantic steady-state
geostrophic circulation from GOCE. Geophysical Research Letters, 38:1606–+, doi:10.1029/2010GL045633.
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- Biondi, R., Neubert, T., Syndergaard, S., and Nielsen, J. K., 2011. Radio occultation bending angle anomalies during
tropical cyclones. Atmospheric Measurement Techniques, 4:1053–1060, doi:10.5194/amt-4-1053-2011.
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- Boening, C., Lee, T., and Zlotnicki, V., 2011. A record-high ocean bottom pressure in the South Pacific observed by GRACE.
Geophysical Research Letters, 38:4602–+, doi:10.1029/2010GL046013.
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- Bonin, J. A. and Chambers, D. P., 2011. Evaluation of high-frequency oceanographic signal in GRACE data: Implications
for de-aliasing. Geophysical Research Letters, 381:L17608, doi:10.1029/2011GL048881.
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- Broerse, D. B. T., Vermeersen, L. L. A., Riva, R. E. M., and van der Wal, W., 2011. Ocean contribution
to co-seismic crustal deformation and geoid anomalies: Application to the 2004 December 26 Sumatra–Andaman earthquake.
Earth and Planetary Science Letters, 305:341–349, doi:10.1016/j.epsl.2011.03.011.
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- Brunnabend, S.-E., Rietbroek, R., Timmermann, R., Schröter, J., and Kusche, J., 2011. Improving mass redistribution estimates
by modeling ocean bottom pressure uncertainties. Journal of Geophysical Research (Oceans), 116(C15):C08037, doi:10.1029/2010JC006617.
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- Burke, W. J., Wilson, G. R., Lin, C. S., Rich, F. J., Wise, J. O., and Hagan, M. P., 2011. Estimating
Dst indices and exospheric temperatures from equatorial magnetic fields measured by DMSP satellites. Journal of Geophysical
Research (Space Physics), 116(A15):1205–+, doi:10.1029/2010JA015310.
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- Burke, W. J., 2011. Solar cycle dependence of solar wind energy coupling to the thermosphere. Journal of Geophysical
Research (Space Physics), 116(A15):A06302, doi:10.1029/2011JA016437.
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- Cadio, C., Panet, I., Davaille, A., Diament, M., Métivier, L., and de Viron, O., 2011. Pacific geoid anomalies revisited
in light of thermochemical oscillating domes in the lower mantle. Earth and Planetary Science Letters, 306:123–135,
doi:10.1016/j.epsl.2011.03.040.
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- Cambiotti, G., Bordoni, A., Sabadini, R., and Colli, L., 2011. GRACE gravity data help constraining seismic models of the
2004 Sumatran earthquake. Journal of Geophysical Research (Solid Earth), 116(B15):B10403, doi:10.1029/2010JB007848.
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- Cesanelli, A. and Guarracino, L., 2011. Estimation of regional evapotranspiration in the extended Salado Basin (Argentina)
from satellite gravity measurements. Hydrogeology Journal, 19:629–639, doi:10.1007/s10040-011-0708-3.
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- Chambers, D. P. and Schröter, J., 2011. Measuring ocean mass variability from satellite gravimetry. Journal of
Geodynamics, 52:333–343, doi:10.1016/j.jog.2011.04.004.
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- Chambers, D. P., 2011. ENSO-correlated fluctuations in ocean bottom pressure and wind-stress curl in the North Pacific.
Ocean Science, 7:685–692, doi:10.5194/os-7-685-2011.
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- Chen, J. L., Wilson, C. R., and Tapley, B. D., 2011. Interannual variability of Greenland ice losses from satellite
gravimetry. Journal of Geophysical Research (Solid Earth), 116(B15):B07406, doi:10.1029/2010JB007789.
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- Cheng, M., Ries, J. C., and Tapley, B. D., 2011. Variations of the Earth's figure axis from satellite laser ranging
and GRACE. Journal of Geophysical Research (Solid Earth), 116(B15):1409–+, doi:10.1029/2010JB000850.
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- Ciufolini, I., Paolozzi, A., Pavlis, E. C., Ries, J., Koenig, R., Matzner, R., Sindoni, G., and Neumeyer, H., 2011. Testing
gravitational physics with satellite laser ranging. European Physical Journal Plus, 126:72–+, doi:10.1140/epjp/i2011-11072-2.
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- Dai, A., 2011. Characteristics and trends in various forms of the Palmer Drought Severity Index during 1900–2008. Journal
of Geophysical Research (Atmospheres), 116(D15):D12115, doi:10.1029/2010JD015541.
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- DeBra, D. B. and Conklin, J. W., 2011. Measurement of drag and its cancellation. Classical and Quantum Gravity,
28(9):094015–+, doi:10.1088/0264-9381/28/9/094015.
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- Deus, D., Gloaguen, R., and Krause, P., 2011. Water balance modelling in a semi-arid environment with limited in-situ data:
remote sensing coupled with satellite gravimetry, Lake Manyara, East African Rift, Tanzania. Hydrology and Earth System
Sciences Discussions, 8:8737–8792, doi:10.5194/hessd-8-8737-2011.
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- Famiglietti, J. S., Lo, M., Ho, S. L., Bethune, J., Anderson, K. J., Syed, T. H., Swenson, S. C.,
de Linage, C. R., and Rodell, M., 2011. Satellites measure recent rates of groundwater depletion in California's Central
Valley. Geophysical Research Letters, 38:3403–+, doi:10.1029/2010GL046442.
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- Fattig, E. D., Comparison of precision orbit derived density estimates for CHAMP and GRACE satellites. Ph.D. Thesis,
University of Kansas, 2011.
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- Foelsche, U., Scherllin-Pirscher, B., Ladstädter, F., Steiner, A. K., and Kirchengast, G., 2011. Refractivity and
temperature climate records from multiple radio occultation satellites consistent within 0.05%. Atmospheric Measurement
Techniques, 4:2007–2018, doi:10.5194/amt-4-2007-2011.
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- Forbes, J. M., Zhang, X., Bruinsma, S., and Oberheide, J., 2011. Sun-synchronous thermal tides in exosphere temperature
from CHAMP and GRACE accelerometer measurements. Journal of Geophysical Research (Space Physics), 116(A15):11309, doi:10.1029/2011JA016855.
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- Frappart, F., Ramillien, G., and Famiglietti, J., 2011. Water balance of the Arctic drainage system using GRACE gravimetry
products. International Journal of Remote Sensing, 32:431–453, doi:10.1080/01431160903474954.
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- Frappart, F., Papa, F., Güntner, A., Werth, S., Santos da Silva, J., Tomasella, J., Seyler, F., Prigent, C., Rossow,
W. B., Calmant, S., and Bonnet, M.-P., 2011. Satellite-based estimates of groundwater storage variations in large drainage
basins with extensive floodplains. Remote Sensing of Environment, 115(6):1588–1594, doi:10.1016/j.rse.2011.02.003.
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- Gardner, A. S., Moholdt, G., Wouters, B., Wolken, G. J., Burgess, D. O., Sharp, M. J., Cogley, J. G.,
Braun, C., and Labine, C., 2011. Sharply increased mass loss from glaciers and ice caps in the Canadian Arctic Archipelago.
Nature, 473:357–360, doi:10.1038/nature10089.
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- Grippa, M., Kergoat, L., Frappart, F., Araud, Q., Boone, A., de Rosnay, P., Lemoine, J.-M., Gascoin, S., Balsamo, G., Ottlé,
C., Decharme, B., Saux-Picart, S., and Ramillien, G., 2011. Land water storage variability over West Africa estimated by Gravity
Recovery and Climate Experiment (GRACE) and land surface models. Water Resources Research, 470:W05549, doi:10.1029/2009WR008856.
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- Gruber, T., Bamber, J. L., Bierkens, M. F. P., Dobslaw, H., Murböck, M., Thomas, M., van Beek, L. P. H.,
van Dam, T., Vermeersen, L. L. A., and Visser, P. N. A. M., 2011. Simulation of the time-variable
gravity field by means of coupled geophysical models. Earth System Science Data, 3:19–35, doi:10.5194/essd-3-19-2011.
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- Gruber, T., Visser, P. N. A. M., Ackermann, C., and Hosse, M., 2011. Validation of GOCE gravity field models
by means of orbit residuals and geoid comparisons. Journal of Geodesy, 85:845–860, doi:10.1007/s00190-011-0486-7.
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- Gunter, B. C., Encarnañão, J., Ditmar, P., and Klees, R., 2011. Using Satellite Constellations for Improved
Determination of Earth's Time-Variable Gravity. Journal of Spacecraft and Rockets, 48:368–377, doi:10.2514/1.50926.
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- Haines, K., Johannessen, J. A., Knudsen, P., Lea, D., Rio, M.-H., Bertino, L., Davidson, F., and Hernandez, F., 2011.
An ocean modelling and assimilation guide to using GOCE geoid products. Ocean Science, 7:151–164, doi:10.5194/os-7-151-2011.
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- Han, S.-C., Sauber, J., and Riva, R., 2011. Contribution of satellite gravimetry to understanding seismic source processes
of the 2011 Tohoku-Oki earthquake. Geophysical Research Letters, 38:24312, doi:10.1029/2011GL049975.
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- Haranas, I. and Ragos, O., 2011. Yukawa-type effects in satellite dynamics. Astrophysics and Space Science, 331:115–119,
doi:10.1007/s10509-010-0440-9.
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- Haranas, I., Ragos, O., and Mioc, V., 2011. Yukawa-type potential effects in the anomalistic period of celestial bodies. Astrophysics
and Space Science, 332:107–113, doi:10.1007/s10509-010-0497-5.
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- Henry, C. M., Allen, D. M., and Huang, J., 2011. Groundwater storage variability and annual recharge using well-hydrograph
and GRACE satellite data. Hydrogeology Journal, 19:741–755, doi:10.1007/s10040-011-0724-3.
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- Higginson, S., Thompson, K. R., Huang, J., Véronneau, M., and Wright, D. G., 2011. The mean surface circulation
of the North Atlantic subpolar gyre: A comparison of estimates derived from new gravity and oceanographic measurements. Journal
of Geophysical Research (Oceans), 116(C15):C08016, doi:10.1029/2010JC006877.
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- Hill, E. M., Davis, J. L., Tamisiea, M. E., Ponte, R. M., and Vinogradova, N. T., 2011. Using a spatially
realistic load model to assess impacts of Alaskan glacier ice loss on sea level. Journal of Geophysical Research (Solid
Earth), 116(B15):10407, doi:10.1029/2011JB008339.
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- Hirt, C., Gruber, T., and Featherstone, W. E., 2011. Evaluation of the first GOCE static gravity field models using terrestrial
gravity, vertical deflections and EGM2008 quasigeoid heights. Journal of Geodesy, 85:723–740, doi:10.1007/s00190-011-0482-y.
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- Hoechner, A., Sobolev, S. V., Einarsson, I., and Wang, R., 2011. Investigation on afterslip and steady state and transient
rheology based on postseismic deformation and geoid change caused by the Sumatra 2004 earthquake. Geochemistry, Geophysics,
Geosystems, 12:Q07010, doi:10.1029/2010GC003450.
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- Horwath, M., Lemoine, J.-M., Biancale, R., and Bourgogne, S., 2011. Improved GRACE science results after adjustment of geometric
biases in the Level-1B K-band ranging data. Journal of Geodesy, 85:23–38, doi:10.1007/s00190-010-0414-2.
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- Ivins, E. R., Watkins, M. M., Yuan, D.-N., Dietrich, R., Casassa, G., and Rülke, A., 2011. On-land ice loss
and glacial isostatic adjustment at the Drake Passage: 2003–2009. Journal of Geophysical Research (Solid Earth),
116(B15):2403–+, doi:10.1029/2010JB007607.
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- Jäggi, A., Bock, H., Prange, L., Meyer, U., and Beutler, G., 2011. GPS-only gravity field recovery with GOCE, CHAMP,
and GRACE. Advances in Space Research, 47:1020–1028, doi:10.1016/j.asr.2010.11.008.
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- Jäggi, A., Prange, L., and Hugentobler, U., 2011. Impact of covariance information of kinematic positions on orbit reconstruction
and gravity field recovery. Advances in Space Research, 47:1472–1479, doi:10.1016/j.asr.2010.12.009.
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- Jin, S., Zhang, L. J., and Tapley, B. D., 2011. The understanding of length-of-day variations from satellite gravity
and laser ranging measurements. Geophysical Journal International, 184:651–660, doi:10.1111/j.1365-246X.2010.04869.x.
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- Killett, B., Wahr, J., Desai, S., Yuan, D., and Watkins, M., 2011. Arctic Ocean tides from GRACE satellite accelerations.
Journal of Geophysical Research (Oceans), 116(C15):11005, doi:10.1029/2011JC007111.
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- Killett, Bryan, Arctic Ocean Tides from GRACE Satellite Accelerations. Ph.D. Thesis, University of Colorado at Boulder, 2011.
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- King, M. A., Padman, L., Nicholls, K., Clarke, P. J., Gudmundsson, G. H., Kulessa, B., and Shepherd, A., 2011.
Ocean tides in the Weddell Sea: New observations on the Filchner-Ronne and Larsen C ice shelves and model validation. Journal
of Geophysical Research (Oceans), 116(C15):C06006, doi:10.1029/2011JC006949.
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- Knudsen, P., Bingham, R., Andersen, O., and Rio, M.-H., 2011. A global mean dynamic topography and ocean circulation estimation
using a preliminary GOCE gravity model. Journal of Geodesy, 85:861–879, doi:10.1007/s00190-011-0485-8.
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- Ladstädter, F., Steiner, A. K., Foelsche, U., Haimberger, L., Tavolato, C., and Kirchengast, G., 2011. An assessment
of differences in lower stratospheric temperature records from (A)MSU, radiosondes, and GPS radio occultation. Atmospheric
Measurement Techniques, 4:1965–1977, doi:10.5194/amt-4-1965-2011.
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- Lee, C.-K., Han, S.-C., Bilitza, D., and Chung, J.-K., 2011. Validation of international reference ionosphere models using
in situ measurements from GRACE K-band ranging system and CHAMP planar Langmuir probe. Journal of Geodesy, 85:921–929,
doi:10.1007/s00190-011-0442-6.
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- Lei, J., Thayer, J. P., Lu, G., Burns, A. G., Wang, W., Sutton, E. K., and Emery, B. A., 2011. Rapid recovery
of thermosphere density during the October 2003 geomagnetic storms. Journal of Geophysical Research (Space Physics),
116(A15):A03306, doi:10.1029/2010JA016164.
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- Liu, R., Ma, S.-Y., and Lühr, H., 2011. Predicting storm-time thermospheric mass density variations at CHAMP and GRACE
altitudes. Annales Geophysicae, 29:443–453, doi:10.5194/angeo-29-443-2011.
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- Liu, H., Doornbos, E., Yamamoto, M., and Tulasi Ram, S., 2011. Strong thermospheric cooling during the 2009 major stratosphere
warming. Geophysical Research Letters, 38:L12102, doi:10.1029/2011GL047898.
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- Liu, W. and Miao, Y.-X., 2011. Analysis of Land Water Storage in Southwest China Based on GRACE Data. Chinese Astronomy
and Astrophysics, 35:421–427, doi:10.1016/j.chinastron.2011.10.009.
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- Llovel, W., Becker, M., Cazenave, A., Jevrejeva, S., Alkama, R., Decharme, B., Douville, H., Ablain, M., and Beckley, B.,
2011. Terrestrial waters and sea level variations on interannual time scale. Global and Planetary Change, 75:76–82,
doi:10.1016/j.gloplacha.2010.10.008.
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- Matsuo, K. and Heki, K., 2011. Coseismic gravity changes of the 2011 Tohoku-Oki earthquake from satellite gravimetry. Geophysical
Research Letters, 380:L00G12, doi:10.1029/2011GL049018.
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- Mémin, A., Rogister, Y., Hinderer, J., Omang, O. C., and Luck, B., 2011. Secular gravity variation at Svalbard
(Norway) from ground observations and GRACE satellite data. Geophysical Journal International, 184:1119–1130,
doi:10.1111/j.1365-246X.2010.04922.x.
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- Milzow, C., Krogh, P. E., and Bauer-Gottwein, P., 2011. Combining satellite radar altimetry, SAR surface soil moisture
and GRACE total storage changes for hydrological model calibration in a large poorly gauged catchment. Hydrology and Earth
System Sciences, 15:1729–1743, doi:10.5194/hess-15-1729-2011.
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- Mitrovica, J. X., Gomez, N., Morrow, E., Hay, C., Latychev, K., and Tamisiea, M. E., 2011. On the robustness of
predictions of sea level fingerprints. Geophysical Journal International, 187:729–742, doi:10.1111/j.1365-246X.2011.05090.x.
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- Moiwo, J. P., Yang, Y., Tao, F., Lu, W., and Han, S., 2011. Water storage change in the Himalayas from the Gravity Recovery
and Climate Experiment (GRACE) and an empirical climate model. Water Resources Research, 470:W07521, doi:10.1029/2010WR010157.
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- Morrow, E., Mitrovica, J. X., and Fotopoulos, G., 2011. Water Storage, Net Precipitation, and Evapotranspiration in the
Mackenzie River Basin from October 2002 to September 2009 Inferred from GRACE Satellite Gravity Data. Journal of Hydrometeorology,
12:467–473, doi:10.1175/2010JHM1278.1.
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- Muskett, R. R. and Romanovsky, V. E., 2011. Alaskan Permafrost Groundwater Storage Changes Derived from GRACE and
Ground Measurements. Remote Sensing, 3:378–397, doi:10.3390/rs3020378.
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- Nastula, J., Pasnicka, M., and Kolaczek, B., 2011. Comparison of the geophysical excitations of polar motion from the period:
1980.0-2009.0. Acta Geophysica, 59:561–577, doi:10.2478/s11600-011-0008-2.
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- Nerem, R. S. and Wahr, J., 2011. Recent changes in the Earth's oblateness driven by Greenland and Antarctic ice mass
loss. Geophysical Research Letters, 38:L13501, doi:10.1029/2011GL047879.
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- O'Donnell, J. P., Daly, E., Tiberi, C., Bastow, I. D., O'Reilly, B. M., Readman, P. W., and Hauser, F.,
2011. Lithosphere-asthenosphere interaction beneath Ireland from joint inversion of teleseismic P-wave delay times and GRACE
gravity. Geophysical Journal International, 184:1379–1396, doi:10.1111/j.1365-246X.2011.04921.x.
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- Ogawa, R., Chao, B. F., and Heki, K., 2011. Acceleration signal in GRACE time-variable gravity in relation to interannual
hydrological changes. Geophysical Journal International, 184:673–679, doi:10.1111/j.1365-246X.2010.04843.x.
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- Panet, I., Kuroishi, Y., and Holschneider, M., 2011. Wavelet modelling of the gravity field by domain decomposition methods:
an example over Japan. Geophysical Journal International, 184:203–219, doi:10.1111/j.1365-246X.2010.04840.x.
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- Peng, D. J. and Wu, B., 2011. Kinematic Precise Orbit Determination for LEO Satellites Using Space-borne Dual-frequency
GPS Measurements. Acta Astronomica Sinica, 52:495–509.
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- Peralta-Ferriz, C., Morison, J. H., Wallace, J. M., and Zhang, J., 2011. A basin-coherent mode of sub-monthly variability
in Arctic Ocean bottom pressure. Geophysical Research Letters, 38:14606, doi:10.1029/2011GL048142.
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- Pfeffer, J., Boucher, M., Hinderer, J., Favreau, G., Boy, J.-P., de Linage, C., Cappelaere, B., Luck, B., Oi, M., and Le Moigne,
N., 2011. Local and global hydrological contributions to time-variable gravity in Southwest Niger. Geophysical Journal
International, 184:661–672, doi:10.1111/j.1365-246X.2010.04894.x.
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- Pilinski, M. D., Dynamic Gas-Surface Interaction Modeling for Satellite Aerodynamic Computations. Ph.D. Thesis, University
of Colorado at Boulder, 2011.
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- Purcell, A., Dehecq, A., Tregoning, P., Potter, E.-K., McClusky, S. C., and Lambeck, K., 2011. Relationship between glacial
isostatic adjustment and gravity perturbations observed by GRACE. Geophysical Research Letters, 381:L18305, doi:10.1029/2011GL048624.
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- Ramillien, G., Biancale, R., Gratton, S., Vasseur, X., and Bourgogne, S., 2011. GRACE-derived surface water mass anomalies
by energy integral approach: application to continental hydrology. Journal of Geodesy, 85:313–328, doi:10.1007/s00190-010-0438-7.
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- Ren, D., Fu, R., Leslie, L. M., Karoly, D. J., Chen, J., and Wilson, C., 2011. A multirheology ice model: Formulation
and application to the Greenland ice sheet. Journal of Geophysical Research (Atmospheres), 116(D15):D05112, doi:10.1029/2010JD014855.
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- Rignot, E., Velicogna, I., van den Broeke, M. R., Monaghan, A., and Lenaerts, J., 2011. Acceleration of the contribution
of the Greenland and Antarctic ice sheets to sea level rise. Geophysical Research Letters, 38:L05503, doi:10.1029/2011GL046583.
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- Rio, M. H., Guinehut, S., and Larnicol, G., 2011. New CNES-CLS09 global mean dynamic topography computed from the combination
of GRACE data, altimetry, and in situ measurements. Journal of Geophysical Research (Oceans), 116(C15):C07018, doi:10.1029/2010JC006505.
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- Rodell, M., McWilliams, E. B., Famiglietti, J. S., Beaudoing, H. K., and Nigro, J., 2011. Estimating evapotranspiration
using an observation based terrestrial water budget. Hydrological Processes, 25:4082–4092, doi:10.1002/hyp.8369.
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- Roy, K. and Peltier, W. R., 2011. GRACE era secular trends in Earth rotation parameters: A global scale impact of the
global warming process?. Geophysical Research Letters, 38:L10306, doi:10.1029/2011GL047282.
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- Rummel, R., Horwath, M., Yi, W., Albertella, A., Bosch, W., and Haagmans, R., 2011. GOCE, Satellite Gravimetry and Antarctic
Mass Transports. Surveys in Geophysics, 32:643–657, doi:10.1007/s10712-011-9115-5.
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- Scherllin-Pirscher, B., Steiner, A. K., Kirchengast, G., Kuo, Y.-H., and Foelsche, U., 2011. Empirical analysis and modeling
of errors of atmospheric profiles from GPS radio occultation. Atmospheric Measurement Techniques, 4:1875–1890,
doi:10.5194/amt-4-1875-2011.
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- Schrama, E. J. O. and Wouters, B., 2011. Revisiting Greenland ice sheet mass loss observed by GRACE. Journal
of Geophysical Research (Solid Earth), 116(B15):2407–+, doi:10.1029/2009JB006847.
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- Schrama, E., Wouters, B., and Vermeersen, B., 2011. Present Day Regional Mass Loss of Greenland Observed with Satellite Gravimetry.
Surveys in Geophysics, 32:377–385, doi:10.1007/s10712-011-9113-7.
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- Song, Y. T. and Colberg, F., 2011. Deep ocean warming assessed from altimeters, Gravity Recovery and Climate Experiment,
in situ measurements, and a non-Boussinesq ocean general circulation model. Journal of Geophysical Research (Oceans),
116(C15):2020–+, doi:10.1029/2010JC006601.
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- Steffen, H. and Wu, P., 2011. Glacial isostatic adjustment in Fennoscandia—A review of data and modeling. Journal
of Geodynamics, 52:169–204, doi:10.1016/j.jog.2011.03.002.
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- Swenson, S. C. and Wahr, J. M., 2011. Estimating signal loss in regularized GRACE gravity field solutions. Geophysical
Journal International, 185:693–702, doi:10.1111/j.1365-246X.2011.04977.x.
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- Tamisiea, M. E., 2011. Ongoing glacial isostatic contributions to observations of sea level change. Geophysical Journal
International, 186:1036–1044, doi:10.1111/j.1365-246X.2011.05116.x.
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- Tedla, G. E., Meijde, M. V. D., Nyblade, A. A., and Meer, F. D. V. D., 2011. A crustal
thickness map of Africa derived from a global gravity field model using Euler deconvolution. Geophysical Journal International,
187:1–9, doi:10.1111/j.1365-246X.2011.05140.x.
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- Tesmer, V., Steigenberger, P., van Dam, T., and Mayer-Gürr, T., 2011. Vertical deformations from homogeneously processed
GRACE and global GPS long-term series. Journal of Geodesy, 85:291–310, doi:10.1007/s00190-010-0437-8.
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- Thomas, I. D., King, M. A., Bentley, M. J., Whitehouse, P. L., Penna, N. T., Williams, S. D. P.,
Riva, R. E. M., Lavallee, D. A., Clarke, P. J., King, E. C., Hindmarsh, R. C. A., and Koivula,
H., 2011. Widespread low rates of Antarctic glacial isostatic adjustment revealed by GPS observations. Geophysical Research
Letters, 38:L22302, doi:10.1029/2011GL049277.
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- Tourian, M. J., Riegger, J., Sneeuw, N., and Devaraju, B., 2011. Outlier identification and correction for GRACE aggregated
data. Studia Geophysica et Geodaetica, 55:627–640, doi:10.1007/s11200-009-9007-z.
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- van der Wal, W., Kurtenbach, E., Kusche, J., and Vermeersen, B., 2011. Radial and tangential gravity rates from GRACE in areas
of glacial isostatic adjustment. Geophysical Journal International, 187:797–812, doi:10.1111/j.1365-246X.2011.05206.x.
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- van Dijk, A. I. J. M., Renzullo, L. J., and Rodell, M., 2011. Use of Gravity Recovery and Climate Experiment
terrestrial water storage retrievals to evaluate model estimates by the Australian water resources assessment system. Water
Resources Research, 47(11):W11524, doi:10.1029/2011WR010714.
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- Vinogradova, N. T., Ponte, R. M., Tamisiea, M. E., Quinn, K. J., Hill, E. M., and Davis, J. L.,
2011. Self-attraction and loading effects on ocean mass redistribution at monthly and longer time scales. Journal of Geophysical
Research (Oceans), 116(C15):C08041, doi:10.1029/2011JC007037.
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- Wang, X., de Linage, C., Famiglietti, J., and Zender, C. S., 2011. Gravity Recovery and Climate Experiment (GRACE) detection
of water storage changes in the Three Gorges Reservoir of China and comparison with in situ measurements. Water Resources
Research, 47:12502, doi:10.1029/2011WR010534.
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- Weimer, D. R., Bowman, B. R., Sutton, E. K., and Tobiska, W. K., 2011. Predicting global average thermospheric
temperature changes resulting from auroral heating. Journal of Geophysical Research (Space Physics), 116(A15):1312–+,
doi:10.1029/2010JA015685.
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- Wen, H., Zhu, G., Cheng, P., Chang, X., and Liu, H., 2011. The ice sheet height changes and mass variations in Antarctica
by using ICESat and GRACE data. International Journal of Image and Data Fusion, 2:255–265, doi:10.1080/19479832.2010.491803.
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- Wiese, D. N., Visser, P., and Nerem, R. S., 2011. Estimating low resolution gravity fields at short time intervals
to reduce temporal aliasing errors. Advances in Space Research, 48:1094–1107, doi:10.1016/j.asr.2011.05.027.
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- Wiese, D. N., Nerem, R. S., and Han, S.-C., 2011. Expected improvements in determining continental hydrology, ice
mass variations, ocean bottom pressure signals, and earthquakes using two pairs of dedicated satellites for temporal gravity
recovery. Journal of Geophysical Research (Solid Earth), 116(B15):11405, doi:10.1029/2011JB008375.
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- Wiese, D. N., Optimizing Two Pairs of GRACE-like Satellites for Recovering Temporal Gravity Variations. Ph.D. Thesis,
University of Colorado at Boulder, 2011.
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- Wouters, B., Riva, R. E. M., Lavallée, D. A., and Bamber, J. L., 2011. Seasonal variations in sea
level induced by continental water mass: First results from GRACE. Geophysical Research Letters, 38:3303–+, doi:10.1029/2010GL046128.
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- Wu, X., Collilieux, X., Altamimi, Z., Vermeersen, B. L. A., Gross, R. S., and Fukumori, I., 2011. Accuracy
of the International Terrestrial Reference Frame origin and Earth expansion. Geophysical Research Letters, 38:L13304,
doi:10.1029/2011GL047450.
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- Xiong, Y., 2011. The calibration research for GRACE accelerometer (Chinese). Scientia Sinica Physica, Mechanica & Astronomica,
41:1319, doi:10.1360/132010-1234.
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- Xu, J., Wang, W., Lei, J., Sutton, E. K., and Chen, G., 2011. The effect of periodic variations of thermospheric density
on CHAMP and GRACE orbits. Journal of Geophysical Research (Space Physics), 116(A15):2315–+, doi:10.1029/2010JA015995.
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- Yamamoto, K., Fukuda, Y., and Doi, K., 2011. Interpretation of GIA and ice-sheet mass trends over Antarctica using GRACE and
ICESat data as a constraint to GIA models. Tectonophysics, 511:69–78, doi:10.1016/j.tecto.2010.11.010.
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- Yildiz, H., Andersen, O. B., Simav, M., Kilicoglu, A., and Lenk, O., 2011. Black sea annual and inter-annual water mass
variations from space. Journal of Geodesy, 85:119–127, doi:10.1007/s00190-010-0421-3.
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- Zhao, Q., Guo, J., Hu, Z., Shi, C., Liu, J., Cai, H., and Liu, X., 2011. GRACE gravity field modeling with an investigation
on correlation between nuisance parameters and gravity field coefficients. Advances in Space Research, 47:1833–1850,
doi:10.1016/j.asr.2010.11.041.
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- Zheng, W., Hsu, H., Zhong, M., and Yun, M., 2011. Efficient Calibration of the Non-Conservative Force Data from the Space-Borne
Accelerometers of the Twin GRACE Satellites. Japan Society of Aeronautical Space Sciences Transactions, 54:106–110,
doi:10.2322/tjsass.54.106.
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- Zwally, H. J. and Giovinetto, M. B., 2011. Overview and Assessment of Antarctic Ice-Sheet Mass Balance Estimates:
1992-2009. Surveys in Geophysics, 32:351–376, doi:10.1007/s10712-011-9123-5.
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- Agboma, C. O., Subsurface moisture storage patterns derived from hydrologic model and satellite measurements during extreme
period of dryness. Ph.D. Thesis, Memorial University of Newfoundland (Canada), 2010.
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- Alkama, R., Decharme, B., Douville, H., Becker, M., Cazenave, A., Sheffield, J., Voldoire, A., Tyteca, S., and Le Moigne,
P., 2010. Global Evaluation of the ISBA-TRIP Continental Hydrological System. Part I: Comparison to GRACE Terrestrial Water
Storage Estimates and In Situ River Discharges. Journal of Hydrometeorology, 11:583–600, doi:10.1175/2010JHM1211.1.
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- Arabelos, D. N. and Tscherning, C. C., 2010. A comparison of recent Earth gravitational models with emphasis on
their contribution in refining the gravity and geoid at continental or regional scale. Journal of Geodesy, 84:643–660,
doi:10.1007/s00190-010-0397-z.
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- Argus, D. F. and Peltier, W. R., 2010. Constraining models of postglacial rebound using space geodesy: a detailed
assessment of model ICE-5G (VM2) and its relatives. Geophysical Journal International, 181:697–723, doi:10.1111/j.1365-246X.2010.04562.x.
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- Arras, C., Jacobi, C., Wickert, J., Heise, S., and Schmidt, T., 2010. Sporadic E signatures revealed from multi-satellite
radio occultation measurements. Advances in Radio Science, 8:225–230, doi:10.5194/ars-8-225-2010.
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- Becker, Mélanie, LLovel, William, Cazenave, Anny, Güntner, Andreas, and Crétaux, Jean-Fran\ccois, 2010.
Recent hydrological behavior of the East African great lakes region inferred from GRACE, satellite altimetry and rainfall
observations. Comptes Rendus Geoscience, 342(3):223–233, doi:10.1016/j.crte.2009.12.010.
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- Bertiger, W., Desai, S. D., Haines, B., Harvey, N., Moore, A. W., Owen, S., and Weiss, J. P., 2010. Single
receiver phase ambiguity resolution with GPS data. Journal of Geodesy, 84:327–337, doi:10.1007/s00190-010-0371-9.
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- Beutler, G., Jäggi, A., Mervart, L., and Meyer, U., 2010. The celestial mechanics approach: theoretical foundations.
Journal of Geodesy, 84:605–624, doi:10.1007/s00190-010-0401-7.
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- Beutler, G., Jäggi, A., Mervart, L., and Meyer, U., 2010. The celestial mechanics approach: application to data of the
GRACE mission. Journal of Geodesy, 84:661–681, doi:10.1007/s00190-010-0402-6.
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- Bezdek, A., 2010. Calibration of accelerometers aboard GRACE satellites by comparison with POD-based nongravitational accelerations.
Journal of Geodynamics, 50:410–423, doi:10.1016/j.jog.2010.05.001.
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- Bloom, A. A., Palmer, P. I., Fraser, A., Reay, D. S., and Frankenberg, C., 2010. Large-Scale Controls of Methanogenesis
Inferred from Methane and Gravity Spaceborne Data. Science, 327:322–, doi:10.1126/science.1175176.
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- Böning, C., Timmermann, R., Danilov, S., and Schröter, J., 2010. Antarctic Circumpolar Current Transport Variability
in GRACE Gravity Solutions and Numerical Ocean Model Simulations. In Flechtner, F., Gruber, T., Güntner, A., Mandea,
M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical Space Techniques,
pp. 187–199, Springer, Berlin, Heidelberg.
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- Bonsor, H. C., Mansour, M. M., MacDonald, A. M., Hughes, A. G., Hipkin, R. G., and Bedada, T., 2010.
Interpretation of GRACE data of the Nile Basin using a groundwater recharge model. Hydrology and Earth System Sciences
Discussions, 7:4501–4533, doi:10.5194/hessd-7-4501-2010.
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- Brown, N. J. and Tregoning, P., 2010. Quantifying GRACE data contamination effects on hydrological analysis in the Murray–Darling
Basin, southeast Australia. Australian Journal of Earth Sciences, 57:329–335, doi:10.1080/08120091003619241.
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- Bruinsma, S., Lemoine, J.-M., Biancale, R., and Valès, N., 2010. CNES/GRGS 10-day gravity field models (release 2)
and their evaluation. Advances in Space Research, 45:587–601, doi:10.1016/j.asr.2009.10.012.
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- Bruinsma, S. L. and Forbes, J. M., 2010. Large-scale traveling atmospheric disturbances (LSTADs) in the thermosphere
inferred from CHAMP, GRACE, and SETA accelerometer data. Journal of Atmospheric and Solar-Terrestrial Physics, 72:1057–1066,
doi:10.1016/j.jastp.2010.06.010.
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- Bruinsma, S. L. and Forbes, J. M., 2010. Anomalous behavior of the thermosphere during solar minimum observed by
CHAMP and GRACE. Journal of Geophysical Research (Space Physics), 115(A14):11323–+, doi:10.1029/2010JA015605.
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- Burke, W. J., Gentile, L. C., and Hagan, M. P., 2010. Thermospheric heating by high-speed streams in the solar
wind. Journal of Geophysical Research (Space Physics), 115(A14):6318–+, doi:10.1029/2009JA014585.
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- Cazenave, A. and Chen, J., 2010. Time-variable gravity from space and present-day mass redistribution in theEarth system.
Earth and Planetary Science Letters, 298:263–274, doi:10.1016/j.epsl.2010.07.035.
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- Chambers, D. P. and Willis, J. K., 2010. A Global Evaluation of Ocean Bottom Pressure from GRACE, OMCT, and Steric-Corrected
Altimetry. Journal of Atmospheric and Oceanic Technology, 27:1395–1402, doi:10.1175/2010JTECHO738.1.
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- Chambers, D. P., Wahr, J., Tamisiea, M. E., and Nerem, R. S., 2010. Ocean mass from GRACE and glacial isostatic
adjustment. Journal of Geophysical Research (Solid Earth), 115(B14):11415–+, doi:10.1029/2010JB007530.
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- Chen, J., Bender, M., Beyerle, G., Dick, G., Falck, C., Ge, M., Gendt, G., Heise, S., Ramatschi, M., Schmidt, T., Stosius,
R., and Wickert, J., 2010. GNSS Activities for Natural Disaster Monitoring and Climate Change Detection at GFZ – an Overview.
In Chuvieco and Li, Yang (editors), Advances in Earth Observation of Global Change, pp. 159–172, Springer, Dordrecht,
Heidelberg, London, New York.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Longuevergne, L., Yang, Z. L., and Scanlon, B. R., 2010.
Recent La Plata basin drought conditions observed by satellite gravimetry. Journal of Geophysical Research (Atmospheres),
115(D14):22108–+, doi:10.1029/2010JD014689.
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- Chen, J. L., Wilson, C. R., and Tapley, B. D., 2010. The 2009 exceptional Amazon flood and interannual terrestrial
water storage change observed by GRACE. Water Resources Research, 46:12526–+, doi:10.1029/2010WR009383.
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- Ciufolini, I., Pavlis, E. C., Ries, J., Koenig, R., Sindoni, G., Paolozzi, A., and Newmayer, H., 2010. Gravitomagnetism
and Its Measurement with Laser Ranging to the LAGEOS Satellites and GRACE Earth Gravity Models. In I. Ciufolini and R. A.
Matzner (editors), General Relativity and John Archibald Wheeler, pp. 371–434.
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- Creutzfeldt, B., The effect of water storages on temporal gravity measurements and the benefits for hydrology. Ph.D. Thesis,
University of Potsdam, Germany, 2010.
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- de la Torre, A., Llamedo, P., Alexander, P., Schmidt, T., and Wickert, J., 2010. Estimated errors in a global gravity wave
climatology from GPS radio occultation temperature profiles. Advances in Space Research, 46:174–179, doi:10.1016/j.asr.2010.02.033.
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- Dietrich, R., Ivins, E. R., Casassa, G., Lange, H., Wendt, J., and Fritsche, M., 2010. Rapid crustal uplift in Patagonia
due to enhanced ice loss. Earth and Planetary Science Letters, 289:22–29, doi:10.1016/j.epsl.2009.10.021.
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- Dumberry, M., 2010. Gravity variations induced by core flows. Geophysical Journal International, 180:635–650,
doi:10.1111/j.1365-246X.2009.04437.x.
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- Einarsson, I., Hoechner, A., Wang, R., and Kusche, J., 2010. Gravity changes due to the Sumatra-Andaman and Nias earthquakes
as detected by the GRACE satellites: a reexamination. Geophysical Journal International, 183:733–747, doi:10.1111/j.1365-246X.2010.04756.x.
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- Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), 2010.
System Earth via Geodetic-Geophysical Space Techniques, pp. 595, Springer, Berlin, Heidelberg.
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- Flechtner, F., 2010. More Accurate and Faster Available CHAMP and GRACE Gravity Fields for the User Community. In Flechtner,
F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via
Geodetic-Geophysical Space Techniques, pp. 3–13, Springer, Berlin, Heidelberg.
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- Flechtner, F., Thomas, M., and Dobslaw, H., 2010. Improved Non-tidal Atmospheric and Oceanic De-aliasing for GRACE and SLR
Satellites. In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors),
System Earth via Geodetic-Geophysical Space Techniques, pp. 131–142, Springer, Berlin, Heidelberg.
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- Flechtner, F., Dahle, C., Neumayer, K. H., König, R., and Förste, C., 2010. The Release 04 CHAMP and GRACE EIGEN
Gravity Field Models. In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert,
J. (editors), System Earth via Geodetic-Geophysical Space Techniques, pp. 41–58, Springer, Berlin, Heidelberg.
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- Flechtner, F., 2010. Improved GRACE Level-1 and Level-2 Products and Their Validation by Ocean Bottom Pressure. In Flechtner,
F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via
Geodetic-Geophysical Space Techniques, pp. 95–104, Springer, Berlin, Heidelberg.
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- Frappart, F., Ramillien, G., Maisongrande, P., and Bonnet, M. -P., 2010. Denoising Satellite Gravity Signals by Independent
Component Analysis. IEEE Geoscience and Remote Sensing Letters, 7(3):421–425, doi:10.1109/LGRS.2009.2037837.
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- Frappart, F., Papa, F., Güntner, A., Werth, S., Ramillien, G., Prigent, C., Rossow, W. B., and Bonnet, M.-P., 2010.
Interannual variations of the terrestrial water storage in the Lower Ob' Basin from a multisatellite approach. Hydrology
and Earth System Sciences, 14:2443–2453, doi:10.5194/hess-14-2443-2010.
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- Freeden, W., Nutz, H., and Wolf, K., 2010. Time-Space Multiscale Analysis and Its Application to GRACE and Hydrology Data.
In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System
Earth via Geodetic-Geophysical Space Techniques, pp. 387–397, Springer, Berlin, Heidelberg.
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- Frommknecht, B. and Schlicht, A., 2010. The GRACE Gravity Sensor System. In Flechtner, F., Gruber, T., Güntner, A., Mandea,
M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical Space Techniques,
pp. 105–118, Springer, Berlin, Heidelberg.
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- Garc\'ıa-Garc\'ıa, D., Chao, B. F., and Boy, J.-P., 2010. Steric and mass-induced sea level variations in
the Mediterranean Sea revisited. Journal of Geophysical Research (Oceans), 115(C14):12016–+, doi:10.1029/2009JC005928.
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- Grayek, S., Observation Assessment and Adapted Assimilation in Different Coastal Ocean Regions (Black Sea and German Bight).
Ph.D. Thesis, University of Oldenburg, Germany, 2010.
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- Güntner, A., 2010. Continental Water Storage Variations from GRACE Time-Variable Gravity Data. In Flechtner, F., Gruber,
T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical
Space Techniques, pp. 369–375, Springer, Berlin, Heidelberg.
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- Guo, J. Y., Duan, X. J., and Shum, C. K., 2010. Non-isotropic Gaussian smoothing and leakage reduction for
determining mass changes over land and ocean using GRACE data. Geophysical Journal International, 181:290–302,
doi:10.1111/j.1365-246X.2010.04534.x.
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- Han, S.-C., Yeo, I.-Y., Alsdorf, D., Bates, P., Boy, J.-P., Kim, H., Oki, T., and Rodell, M., 2010. Movement of Amazon surface
water from time-variable satellite gravity measurements and implications for water cycle parameters in land surface models.
Geochemistry, Geophysics, Geosystems, 11:9007–+, doi:10.1029/2010GC003214.
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- Han, S.-C., Sauber, J., and Luthcke, S., 2010. Regional gravity decrease after the 2010 Maule (Chile) earthquake indicates
large-scale mass redistribution. Geophysical Research Letters, 37:23307–+, doi:10.1029/2010GL045449.
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- Han, S.-C., Ray, R. D., and Luthcke, S. B., 2010. One centimeter-level observations of diurnal ocean tides from
global monthly mean time-variable gravity fields. Journal of Geodesy, 84:715–729, doi:10.1007/s00190-010-0405-3.
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- Hei, M. A. and Valladares, C. E., 2010. The November 2004 superstorm: Comparison of low-latitude TEC observations
with LLIONS model results. Journal of Atmospheric and Solar-Terrestrial Physics, 72:334–343, doi:10.1016/j.jastp.2009.03.025.
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- Heki, K. and Matsuo, K., 2010. Coseismic gravity changes of the 2010 earthquake in central Chile from satellite gravimetry.
Geophysical Research Letters, 37:24306–+, doi:10.1029/2010GL045335.
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- Hill, E. M., Davis, J. L., Tamisiea, M. E., and Lidberg, M., 2010. Combination of geodetic observations and
models for glacial isostatic adjustment fields in Fennoscandia. Journal of Geophysical Research (Solid Earth), 115(B14):7403–+,
doi:10.1029/2009JB006967.
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- Horwath, M., Rülke, A., Fritsche, M., and Dietrich, R., 2010. Mass Variation Signals in GRACE Products and in Crustal
Deformations from GPS: A Comparison. In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne,
T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical Space Techniques, pp. 399–406, Springer,
Berlin, Heidelberg.
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- Jin, S., Chambers, D. P., and Tapley, B. D., 2010. Hydrological and oceanic effects on polar motion from GRACE and
models. Journal of Geophysical Research (Solid Earth), 115(B14):2403–+, doi:10.1029/2009JB006635.
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- Kaban, M. K., Tesauro, M., and Cloetingh, S., 2010. An integrated gravity model for Europe's crust and upper mantle.
Earth and Planetary Science Letters, 296:195–209, doi:10.1016/j.epsl.2010.04.041.
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- Khan, S. A., Wahr, J., Bevis, M., Velicogna, I., and Kendrick, E., 2010. Spread of ice mass loss into northwest Greenland
observed by GRACE and GPS. Geophysical Research Letters, 37:6501–+, doi:10.1029/2010GL042460.
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- Kiamehr, R. and Sjöberg, L. E., 2010. An optimum way to determine a precise gravimetric geoid model based on the least-squares
modification of Stokes' formula - a case study of Sweden. Acta Geod. Geoph. Hung., 45:148–164, doi:10.1556/AGeod.45.2010.2.2.
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- King, M. A., Altamimi, Z., Boehm, J., Bos, M., Dach, R., Elosegui, P., Fund, F., Hernández-Pajares, M., Lavallee,
D., Mendes Cerveira, P. J., Penna, N., Riva, R. E. M., Steigenberger, P., van Dam, T., Vittuari, L., Williams,
S., and Willis, P., 2010. Improved Constraints on Models of Glacial Isostatic Adjustment: A Review of the Contribution of
Ground-Based Geodetic Observations. Surveys in Geophysics, 31:465–507, doi:10.1007/s10712-010-9100-4.
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- Klokocn\'ık, J., Kostelecký, J., Pesek, I., Novák, P., Wagner, C. A., and Sebera, J., 2010. Candidates
for multiple impact craters?: Popigai and Chicxulub as seen by the global high resolution gravitational field model EGM2008.
Solid Earth, 1:71–83, doi:10.5194/se-1-71-2010.
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- Krogh, P., Andersen, O., Michailovsky, C., Bauer-Gottwein, P., Rowlands, D., Luthcke, S., and Chinn, D., 2010. Evaluating
terrestrial water storage variations from regionally constrained GRACE mascon data and hydrological models over Southern Africa
- preliminary results. International Journal of Remote Sensing, 31:3899–3912, doi:10.1080/01431161.2010.483483.
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- Landerer, F. W., Dickey, J. O., and Güntner, A., 2010. Terrestrial water budget of the Eurasian pan-Arctic
from GRACE satellite measurements during 2003–2009. Journal of Geophysical Research (Atmospheres), 115(D14):23115–+,
doi:10.1029/2010JD014584.
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- Lavallée, D. A., Moore, P., Clarke, P. J., Petrie, E. J., van Dam, T., and King, M. A., 2010. J2:
An evaluation of new estimates from GPS, GRACE, and load models compared to SLR. Geophysical Research Letters, 37:22403–+,
doi:10.1029/2010GL045229.
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- Le Bail, K., Lemoine, F. G., and Chinn, D. S., 2010. GSFC DORIS contribution to ITRF2008. Advances in Space Research,
45:1481–1499, doi:10.1016/j.asr.2010.01.030.
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- Lemoine, F. G., Zelensky, N. P., Chinn, D. S., Pavlis, D. E., Rowlands, D. D., Beckley, B. D.,
Luthcke, S. B., Willis, P., Ziebart, M., Sibthorpe, A., Boy, J. P., and Luceri, V., 2010. Towards development of
a consistent orbit series for TOPEX, Jason-1, and Jason-2. Advances in Space Research, 46:1513–1540, doi:10.1016/j.asr.2010.05.007.
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- Liu, X., Ditmar, P., Siemes, C., Slobbe, D. C., Revtova, E., Klees, R., Riva, R., and Zhao, Q., 2010. DEOS Mass Transport
model (DMT-1) based on GRACE satellite data: methodology and validation. Geophysical Journal International, 181:769–788,
doi:10.1111/j.1365-246X.2010.04533.x.
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- Llovel, William, Becker, Mélanie, Cazenave, Anny, Crétaux, Jean-Fran\ccois, and Ramillien, Guillaume, 2010.
Global land water storage change from GRACE over 2002-2009; Inference on sea level. Comptes Rendus Geoscience, 342(3):179–188,
doi:10.1016/j.crte.2009.12.004.
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- Llovel, W., Guinehut, S., and Cazenave, A., 2010. Regional and interannual variability in sea level over 2002-2009 based on
satellite altimetry, Argo float data and GRACE ocean mass. Ocean Dynamics, 60:1193–1204, doi:10.1007/s10236-010-0324-0.
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- Lo, M.-H., Famiglietti, J. S., Yeh, P. J.-F., and Syed, T. H., 2010. Improving parameter estimation and water
table depth simulation in a land surface model using GRACE water storage and estimated base flow data. Water Resources
Research, 46:5517–+, doi:10.1029/2009WR007855.
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- Lo, M.-H., The role of groundwater in hydrological processes and memory. Ph.D. Thesis, University of California, Irvine, 2010.
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- Löcher, A., 2010. Möglichkeiten der Nutzung kinematischer Satellitenbahnen zurBestimmung des Gravitationsfeldes
der Erde, Dissertations D 98, IGG Universität Bonn, Bonn.
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- Longuevergne, L., Scanlon, B. R., and Wilson, C. R., 2010. GRACE Hydrological estimates for small basins: Evaluating
processing approaches on the High Plains Aquifer, USA. Water Resources Research, 46:11517, doi:10.1029/2009WR008564.
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- Lühr, H. and Xiong, C., 2010. IRI-2007 model overestimates electron density during the 23/24 solar minimum. Geophysical
Research Letters, 37:23101–+, doi:10.1029/2010GL045430.
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- Macrander, A., Böning, C., Boebel, O., and Schröter, J., 2010. Validation of GRACE Gravity Fields by In-Situ Data
of Ocean Bottom Pressure. In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and
Wickert, J. (editors), System Earth via Geodetic-Geophysical Space Techniques, pp. 169–185, Springer, Berlin,
Heidelberg.
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- Matsuo, K. and Heki, K., 2010. Time-variable ice loss in Asian high mountains from satellite gravimetry. Earth and Planetary
Science Letters, 290:30–36, doi:10.1016/j.epsl.2009.11.053.
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- Mayer-Gürr, T., Eicker, A., Kurtenbach, E., and Ilk, K.-H., 2010. ITG-GRACE: Global Static and Temporal Gravity Field
Models from GRACE Data. In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert,
J. (editors), System Earth via Geodetic-Geophysical Space Techniques, pp. 159–168, Springer, Berlin, Heidelberg.
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- Métivier, L., Greff-Lefftz, M., and Altamimi, Z., 2010. On secular geocenter motion: The impact of climate changes.
Earth and Planetary Science Letters, 296:360–366, doi:10.1016/j.epsl.2010.05.021.
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- Meyer, U., Frommknecht, B., and Flechtner, F., 2010. Global Gravity Fields from Simulated Level-1 GRACE Data. In Flechtner,
F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via
Geodetic-Geophysical Space Techniques, pp. 143–158, Springer, Berlin, Heidelberg.
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- Michalak, G. and König, R., 2010. Improvements for the CHAMP and GRACE Observation Model. In Flechtner, F., Gruber, T.,
Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical
Space Techniques, pp. 29–39, Springer, Berlin, Heidelberg.
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- Michalak, G. and König, R., 2010. Rapid Science Orbits for CHAMP and GRACE Radio Occultation Data Analysis. In Flechtner,
F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via
Geodetic-Geophysical Space Techniques, pp. 67–77, Springer, Berlin, Heidelberg.
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- Neumayer, K. H., 2010. Parallelization and High Performance Computation for Accelerated CHAMP and GRACE Data Analysis. In
Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System
Earth via Geodetic-Geophysical Space Techniques, pp. 79–92, Springer, Berlin, Heidelberg.
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- Pail, R., Goiginger, H., Schuh, W.-D., Höck, E., Brockmann, J. M., Fecher, T., Gruber, T., Mayer-Gürr, T.,
Kusche, J., Jäggi, A., and Rieser, D., 2010. Combined satellite gravity field model GOCO01S derived from GOCE and GRACE.
Geophysical Research Letters, 37:20314–+, doi:10.1029/2010GL044906.
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- Panet, I., Pollitz, F., Mikhailov, V., Diament, M., Banerjee, P., and Grijalva, K., 2010. Upper mantle rheology from GRACE
and GPS postseismic deformation after the 2004 Sumatra-Andaman earthquake. Geochemistry, Geophysics, Geosystems, 11:6008–+,
doi:10.1029/2009GC002905.
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- Pavelyev, A. G., Liou, Y. A., Wickert, J., Zhang, K., Wang, C.-S., and Kuleshov, Y., 2010. Analytical model of electromagnetic
waves propagation and location of inclined plasma layers using occultation data. Progress in Electromagnetics Research,
106:177–206, doi:10.2528/PIER10042707.
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- Pavelyev, A. G., Liou, Y. A., Wickert, J., Schmidt, T., and Pavelyev, A. A., 2010. Phase acceleration: a new
important parameter in GPS occultation technology. GPS Solutions, 14:3–11, doi:10.1007/s10291-009-0128-1.
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- Peralta-Ferriz, C. and Morison, J., 2010. Understanding the annual cycle of the Arctic Ocean bottom pressure. Geophysical
Research Letters, 37:10603–+, doi:10.1029/2010GL042827.
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- Petrovic, S., Braun, R., Barthelmes, F., Wünsch, J., Kusche, J., and Hengst, R., 2010. Surface Mass Variability from
GRACE and Hydrological Models: Characteristic Periods and the Reconstruction of Significant Signals. In Flechtner, F., Gruber,
T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical
Space Techniques, pp. 377–386, Springer, Berlin, Heidelberg.
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- Pingel, D., Rhodin, A., Wergen, W., Tomassini, M., Gorbunov, M., and Wickert, J., 2010. Assimilation of CHAMP and GRACE-A
Radio Occultation Data in the GME Global Meteorological Model of the German Weather Service. In Flechtner, F., Gruber, T.,
Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical
Space Techniques, pp. 461–471, Springer, Berlin, Heidelberg.
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- Pommier, M., Law, K. S., Clerbaux, C., Turquety, S., Hurtmans, D., Hadji-Lazaro, J., Coheur, P.-F., Schlager, H., Ancellet,
G., Paris, J.-D., Nédélec, P., Diskin, G. S., Podolske, J. R., Holloway, J. S., and Bernath,
P., 2010. IASI carbon monoxide validation over the Arctic during POLARCAT spring and summer campaigns. Atmospheric Chemistry
& Physics, 10:10655–10678, doi:10.5194/acp-10-10655-2010.
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- Quinn, K. J. and Ponte, R. M., 2010. Uncertainty in ocean mass trends from GRACE. Geophysical Journal International,
181:762–768, doi:10.1111/j.1365-246X.2010.04508.x.
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- Ren, D., Fu, R., Karoly, D. J., Leslie, L. M., Chen, J., and Wilson, C. R., 2010. A new ice sheet model validated
by remote sensing of the Greenland ice sheet. Central European Journal of Geosciences, 2:501–513, doi:10.2478/v10085-010-0012-9.
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- Richter, F., Sidorenko, D., Danilov, S., and Schröter, J., 2010. Using ARGO, GRACE and Altimetry Data to Assess the Quasi
Stationary North Atlantic Circulation. In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne,
T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical Space Techniques, pp. 351–358, Springer,
Berlin, Heidelberg.
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- Rieser, D., Kuhn, M., Pail, R., Anjasmara, I. M., and Awange, J., 2010. Relation between GRACE-derived surface mass variations
and precipitation over Australia. Australian Journal of Earth Sciences, 57:887–900, doi:10.1080/08120099.2010.512645.
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- Ritschel, B., Gericke, L., Kopischke, R., and Mende, V., 2010. The CHAMP/GRACE User Portal ISDC. In Flechtner, F., Gruber,
T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical
Space Techniques, pp. 15–28, Springer, Berlin, Heidelberg.
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- Riva, R. E. M., Bamber, J. L., Lavallée, D. A., and Wouters, B., 2010. Sea-level fingerprint of
continental water and ice mass change from GRACE. Geophysical Research Letters, 37:19605–+, doi:10.1029/2010GL044770.
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- Rowlands, D. D., Luthcke, S. B., McCarthy, J. J., Klosko, S. M., Chinn, D. S., Lemoine, F. G.,
Boy, J.-P., and Sabaka, T. J., 2010. Global mass flux solutions from GRACE: A comparison of parameter estimation strategies—Mass
concentrations versus Stokes coefficients. Journal of Geophysical Research (Solid Earth), 115(B14):1403–+, doi:10.1029/2009JB006546.
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- Sabaka, T. J., Rowlands, D. D., Luthcke, S. B., and Boy, J.-P., 2010. Improving global mass flux solutions
from Gravity Recovery and Climate Experiment (GRACE) through forward modeling and continuous time correlation. Journal
of Geophysical Research (Solid Earth), 115(B14):11403–+, doi:10.1029/2010JB007533.
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- Sadiq, M., Tscherning, C. C., and Ahmad, Z., 2010. Regional gravity field model in Pakistan area from the combination
of CHAMP, GRACE and ground data using least squares collocation: A case study. Advances in Space Research, 46:1466–1476,
doi:10.1016/j.asr.2010.07.004.
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- Sasgen, I., Dobslaw, H., Martinec, Z., and Thomas, M., 2010. Satellite gravimetry observation of Antarctic snow accumulation
related to ENSO. Earth and Planetary Science Letters, 299:352–358, doi:10.1016/j.epsl.2010.09.015.
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- Sasgen, I., Martinec, Z., and Bamber, J., 2010. Combined GRACE and InSAR estimate of West Antarctic ice mass loss. Journal
of Geophysical Research (Earth Surface), 115(F14):4010–+, doi:10.1029/2009JF001525.
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- Schmidt, T., Wickert, J., and Michalak, G., 2010. The operational processing system for GPS radio occultation data from CHAMP
and GRACE. In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors),
System Earth via Geodetic-Geophysical Space Techniques, pp. 455–460, Springer, Berlin, Heidelberg.
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- Schmidt, T., Wickert, J., and Haser, A., 2010. Variability of the upper troposphere and lower stratosphere observed with GPS
radio occultation bending angles and temperatures. Advances in Space Research, 46:150–161, doi:10.1016/j.asr.2010.01.021.
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- Schmidt, T., Cammas, J.-P., Smit, H. G. J., Heise, S., Wickert, J., and Haser, A., 2010. Observational characteristics
of the tropopause inversion layer derived from CHAMP/GRACE radio occultations and MOZAIC aircraft data. Journal of Geophysical
Research (Atmospheres), 115(D14):24304–+, doi:10.1029/2010JD014284.
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- Seo, K.-W., Ryu, D., Kim, B.-M., Waliser, D. E., Tian, B., and Eom, J., 2010. GRACE and AMSR-E-based estimates of winter
season solid precipitation accumulation in the Arctic drainage region. Journal of Geophysical Research (Atmospheres),
115(D14):20117–+, doi:10.1029/2009JD013504.
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- Snopek, K., König, D., and König, R., 2010. Orbit Predictions for CHAMP and GRACE. In Flechtner, F., Gruber, T.,
Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical
Space Techniques, pp. 59–66, Springer, Berlin, Heidelberg.
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- Stammer, D., Köhl, A., Romanova, V., and Siegismund, F., 2010. Comparison of GRACE and Model-Based Estimates of Bottom
Pressure Variations Against In Situ Bottom Pressure Measurements. In Flechtner, F., Gruber, T., Güntner, A., Mandea,
M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical Space Techniques,
pp. 297–309, Springer, Berlin, Heidelberg.
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- Steckler, M. S., Nooner, S. L., Akhter, S. H., Chowdhury, S. K., Bettadpur, S., Seeber, L., and Kogan,
M. G., 2010. Modeling Earth deformation from monsoonal flooding in Bangladesh using hydrographic, GPS, and Gravity Recovery
and Climate Experiment (GRACE) data. Journal of Geophysical Research (Solid Earth), 115(B14):8407–+, doi:10.1029/2009JB007018.
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- Steffen, H., Wu, P., and Wang, H., 2010. Determination of the Earth's structure in Fennoscandia from GRACE and implications
for the optimal post-processing of GRACE data. Geophysical Journal International, 182:1295–1310, doi:10.1111/j.1365-246X.2010.04718.x.
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- Su, H., Yang, Z.-L., Dickinson, R. E., Wilson, C. R., and Niu, G.-Y., 2010. Multisensor snow data assimilation at
the continental scale: The value of Gravity Recovery and Climate Experiment terrestrial water storage information. Journal
of Geophysical Research (Atmospheres), 115(D14):10104–+, doi:10.1029/2009JD013035.
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- Sun, A. Y., Green, R., Rodell, M., and Swenson, S., 2010. Inferring aquifer storage parameters using satellite and in
situ measurements: Estimation under uncertainty. Geophysical Research Letters, 37:10401–+, doi:10.1029/2010GL043231.
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- Swenson, S., 2010. Assessing High-Latitude Winter Precipitation from Global Precipitation Analyses Using GRACE. Journal
of Hydrometeorology, 11:405–420, doi:10.1175/2009JHM1194.1.
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- Ustun, A. and Abbak, R. A., 2010. On global and regional spectral evaluation of global geopotential models. Journal
of Geophysics and Engineering, 7:369–379, doi:10.1088/1742-2132/7/4/003.
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- Valette, J.-J., Lemoine, F. G., Ferrage, P., Yaya, P., Altamimi, Z., Willis, P., and Soudarin, L., 2010. IDS contribution
to ITRF2008. Advances in Space Research, 46:1614–1632, doi:10.1016/j.asr.2010.05.029.
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- van den Ijssel, J. and Visser, P., 2010. Performance of GPS-based accelerometry: A simulation experiment. Advances in Space
Research, 45:225–238, doi:10.1016/j.asr.2009.09.012.
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- Vianna, M. L. and Menezes, V. V., 2010. Mean mesoscale global ocean currents from geodetic pre-GOCE MDTs with a
synthesis of the North Pacific circulation. Journal of Geophysical Research (Oceans), 115(C14):2016–+, doi:10.1029/2009JC005494.
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- Visser, P. N. A. M., Sneeuw, N., Reubelt, T., Losch, M., and van Dam, T., 2010. Space-borne gravimetric satellite
constellations and ocean tides: aliasing effects. Geophysical Journal International, 181:789–805, doi:10.1111/j.1365-246X.2010.04557.x.
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- Wang, H. B., 2010. The Application of Satellite Borne Accelerometer Data to the Study of Upper Atmosphere. Acta Astronomica
Sinica, 51:435–436.
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- Wang, Furun, Bettadpur, Srinivas, Save, Himanshu, and Kruizinga, Gerhard, 2010. Determination of Center-of-Mass of Gravity
Recovery and Climate Experiment Satellites. Journal of Spacecraft and Rockets, 47(2):371–379, doi:10.2514/1.46086.
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- Werth, S. and Güntner, A., 2010. Calibration analysis for water storage variability of the global hydrological model
WGHM. Hydrology and Earth System Sciences, 14:59–78, doi:10.5194/hess-14-59-2010.
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- Werth, S., Integration von Wasserspeicheränderungen aus GRACE-Schwerefelddaten in das globale hydrologische Modell WGHM.
Ph.D. Thesis, University of Potsdam, 2010.
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- Werth, S. and Güntner, A., 2010. Calibration of a Global Hydrological Model with GRACE Data. In Flechtner, F., Gruber,
T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via Geodetic-Geophysical
Space Techniques, pp. 417–426, Springer, Berlin, Heidelberg.
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- Wickert, J., 2010. Near-real-time provision and usage of global atmospheric data from CHAMP and GRACE (NRT-RO): Motivation
and Introduction. In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert,
J. (editors), System Earth via Geodetic-Geophysical Space Techniques, pp. 429–432, Springer, Berlin, Heidelberg.
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- Wickert, J., Beyerle, G., Falck, C., Healy, S. B., Heise, S., Köhler, W., Michalak, G., Offiler, D., Pingel, D.,
Ramatschi, M., Rothacher, M., and Schmidt, T., 2010. Global atmospheric data from CHAMP and GRACE-A: Overview and results.
In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System
Earth via Geodetic-Geophysical Space Techniques, pp. 433–441, Springer, Berlin, Heidelberg.
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- Wouters, B., 2010. Identification and Modeling of Sea Level Change Contributors, Dissertations 73, Netherlands Geodetic
Commission, Delft.
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- Wouters, B. and Chambers, D., 2010. Analysis of seasonal ocean bottom pressure variability in the Gulf of Thailand from GRACE.
Global and Planetary Change, 74:76–81, doi:10.1016/j.gloplacha.2010.08.002.
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- Wu, X., Heflin, M. B., Schotman, H., Vermeersen, B. L. A., Dong, D., Gross, R. S., Ivins, E. R.,
Moore, A. W., and Owen, S. E., 2010. Simultaneous estimation of global present-day water transport and glacial isostatic
adjustment. Nature Geoscience, 3:642–646, doi:10.1038/ngeo938.
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- Xiong, C., Park, J., Lühr, H., Stolle, C., and Ma, S. Y., 2010. Comparing plasma bubble occurrence rates at CHAMP
and GRACE altitudes during high and low solar activity. Annales Geophysicae, 28:1647–1658, doi:10.5194/angeo-28-1647-2010.
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- Yirdaw-Zeleke, S., Implications of GRACE Satellite Gravity Measurements for Diverse Hydrological Applications. Ph.D. Thesis,
University of Manitoba (Canada), 2010.
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- Zelensky, N. P., Lemoine, F. G., Ziebart, M., Sibthorpe, A., Willis, P., Beckley, B. D., Klosko, S. M.,
Chinn, D. S., Rowlands, D. D., Luthcke, S. B., Pavlis, D. E., and Luceri, V., 2010. DORIS/SLR POD modeling
improvements for Jason-1 and Jason-2. Advances in Space Research, 46:1541–1558, doi:10.1016/j.asr.2010.05.008.
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- Zenner, L., Gruber, T., Jäggi, A., and Beutler, G., 2010. Propagation of atmospheric model errors to gravity potential
harmonics-impact on GRACE de-aliasing. Geophysical Journal International, 182:797–807, doi:10.1111/j.1365-246X.2010.04669.x.
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- Zheng, W., Hsu, H.-T., Zhong, M., Yun, M.-J., Zhou, X.-H., and Peng, B.-B., 2010. An Analysis on Requirements of Orbital Parameters
in Satellite-to-Satellite Tracking Mode. Chinese Astronomy and Astrophysics, 34:413–423, doi:10.1016/j.chinastron.2010.10.013.
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- Zheng, W., Hsu, H. T., Zhong, M., Yun, M. J., Zhou, X. H., and Peng, B. B., 2010. Requirement Analysis
of Orbital Parameters in the Satellite-to-Satellite Tracking Model. Acta Astronomica Sinica, 51:65–74.
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- Zotov, L. V. and Shum, C. K., 2010. Multichannel singular spectrum analysis of the gravity field data from GRACE
satellites. In Chakrabarti, S. K., Zhuk, A. I., and Bisnovatyi-Kogan, G. S. (editors), Astrophysics and
Cosmology After Gamow, pp. 473–479.
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- Albertella, A. and Rummel, R., 2009. On the spectral consistency of the altimetric ocean and geoid surface: a one-dimensional
example. Journal of Geodesy, 83:805–815, doi:10.1007/s00190-008-0299-5.
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- Ao, C. O., Hajj, G. A., Meehan, T. K., Dong, D., Iijima, B. A., Mannucci, A. J., and Kursinski, E. R.,
2009. Rising and setting GPS occultations by use of open-loop tracking. Journal of Geophysical Research (Atmospheres),
114(D13):4101–+, doi:10.1029/2008JD010483.
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- Aparicio, J. M., Deblonde, G., Garand, L., and Laroche, S., 2009. Signature of the atmospheric compressibility factor
in COSMIC, CHAMP, and GRACE radio occultation data. Journal of Geophysical Research (Atmospheres), 114(D13):16114–+,
doi:10.1029/2008JD011156.
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- Arendt, A. A., Luthcke, S. B., and Hock, R., 2009. Glacier changes in Alaska: can mass-balance models explain GRACE
mascon trends?. Annals of Glaciology, 50:148–154, doi:10.3189/172756409787769753.
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- Arras, C., Jacobi, C., and Wickert, J., 2009. Semidiurnal tidal signature in sporadic E occurrence rates derived from GPS
radio occultation measurements at higher midlatitudes. Annales Geophysicae, 27:2555–2563, doi:10.5194/angeo-27-2555-2009.
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- Balmino, G., 2009. Efficient propagation of error covariance matrices of gravitational models: application to GRACE and GOCE.
Journal of Geodesy, 83:989–995, doi:10.1007/s00190-009-0317-2.
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- Barletta, V. R. and Bordoni, A., 2009. Clearing observed PGR in GRACE data aimed at global viscosity inversion: Weighted
Mass Trends technique. Geophysical Research Letters, 36:2305–+, doi:10.1029/2008GL036429.
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- Baur, O., Kuhn, M., and Featherstone, W. E., 2009. GRACE-derived ice-mass variations over Greenland by accounting for
leakage effects. Journal of Geophysical Research (Solid Earth), 114(B13):6407–+, doi:10.1029/2008JB006239.
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- Benahmeddaho, S., Mendas, A., Fairhead, J., and Derkaoui, A., 2009. Impact of the new GRACE Geopotential Model and SRTM data
on the geoid modelling in Algeria. Journal of Geodynamics, 47:63–71, doi:10.1016/j.jog.2008.07.006.
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- Bevis, M., Kendrick, E., Smalley, R., Dalziel, I., Caccamise, D., Sasgen, I., Helsen, M., Taylor, F. W., Zhou, H., Brown,
A., Raleigh, D., Willis, M., Wilson, T., and Konfal, S., 2009. Geodetic measurements of vertical crustal velocity in West
Antarctica and the implications for ice mass balance. Geochemistry, Geophysics, Geosystems, 10:10005–+, doi:10.1029/2009GC002642.
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- Block, A. E., Bell, R. E., and Studinger, M., 2009. Antarctic crustal thickness from satellite gravity: Implications
for the Transantarctic and Gamburtsev Subglacial Mountains. Earth and Planetary Science Letters, 288:194–203,
doi:10.1016/j.epsl.2009.09.022.
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- Bock, H., Jäggi, A., Dach, R., Schaer, S., and Beutler, G., 2009. GPS single-frequency orbit determination for low Earth
orbiting satellites. Advances in Space Research, 43:783–791, doi:10.1016/j.asr.2008.12.003.
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- Bosch, W., Savcenko, R., Flechtner, F., Dahle, C., Mayer-Gürr, T., Stammer, D., Taguchi, E., and Ilk, K.-H., 2009. Residual
ocean tide signals from satellite altimetry, GRACE gravity fields, and hydrodynamic modelling. Geophysical Journal International,
178:1185–1192, doi:10.1111/j.1365-246X.2009.04281.x.
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- Braitenberg, C. and Ebbing, J., 2009. New insights into the basement structure of the West Siberian Basin from forward and
inverse modeling of GRACE satellite gravity data. Journal of Geophysical Research (Solid Earth), 114(B13):6402–+,
doi:10.1029/2008JB005799.
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- Braitenberg, C. and Ebbing, J., 2009. The GRACE-satellite gravity and geoid fields in analysing large-scale, cratonic or intracratonic
basins. Geophysical Prospecting, 57:559–571, doi:10.1111/j.1365-2478.2009.00793.x.
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- Brzezinski, A., Nastula, J., and Kolaczek, B., 2009. Seasonal excitation of polar motion estimated from recent geophysical
models and observations. Journal of Geodynamics, 48:235–240, doi:10.1016/j.jog.2009.09.021.
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- Cadden, D. D. H., A study of the Indian Ocean response to ENSO and IOD using satellite observations. Ph.D. Thesis,
University of South Carolina, 2009.
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- Catalão, J. and Sevilla, M. J., 2009. Mapping the geoid for Iberia and the Macaronesian Islands using multi-sensor
gravity data and the GRACE geopotential model. Journal of Geodynamics, 48:6–15, doi:10.1016/j.jog.2009.03.001.
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- Cazenave, A., Dominh, K., Guinehut, S., Berthier, E., Llovel, W., Ramillien, G., Ablain, M., and Larnicol, G., 2009. Sea level
budget over 2003–2008: A reevaluation from GRACE space gravimetry, satellite altimetry and Argo. Global and Planetary
Change, 65:83–88, doi:10.1016/j.gloplacha.2008.10.004.
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- Chambers, D. P. and Willis, J. K., 2009. Low-frequency exchange of mass between ocean basins. Journal of Geophysical
Research (Oceans), 114(C13):11008–+, doi:10.1029/2009JC005518.
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- Chambers, D. P., 2009. Calculating trends from GRACE in the presence of large changes in continental ice storage and
ocean mass. Geophysical Journal International, 176:415–419, doi:10.1111/j.1365-246X.2008.04012.x.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Yang, Z. L., and Niu, G. Y., 2009. 2005 drought event
in the Amazon River basin as measured by GRACE and estimated by climate models. Journal of Geophysical Research (Solid
Earth), 114(B13):5404–+, doi:10.1029/2008JB006056.
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- Chen, J. L., Wilson, C. R., and Seo, K.-W., 2009. S_2 tide aliasing in GRACE time-variable gravity solutions. Journal
of Geodesy, 83:679–687, doi:10.1007/s00190-008-0282-1.
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- Chen, J. L., Wilson, C. R., Blankenship, D., and Tapley, B. D., 2009. Accelerated Antarctic ice loss from satellite
gravity measurements. Nature Geoscience, 2:859–862, doi:10.1038/ngeo694.
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- Ciufolini, I., Paolozzi, A., Pavlis, E. C., Ries, J. C., Koenig, R., Matzner, R. A., Sindoni, G., and Neumayer,
H., 2009. Towards a One Percent Measurement of Frame Dragging by Spin with Satellite Laser Ranging to LAGEOS, LAGEOS 2 and
LARES and GRACE Gravity Models. Space Science Reviews, 148:71–104, doi:10.1007/s11214-009-9585-7.
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- de la Torre, A., Alexander, P., Llamedo, P., Schmidt, T., and Wickert, J., 2009. Recent Advances in GW analysis from Long
Term Global GPS RO observations. In Steiner, A., Pirscher, B., Foelsche, U., and Kirchengast, G. (editors), New Horizons
in Occultation Research: Studies in Atmosphere and Climate, pp. 151–162, Springer, Berlin Heidelberg.
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- de Linage, C., Rivera, L., Hinderer, J., Boy, J.-P., Rogister, Y., Lambotte, S., and Biancale, R., 2009. Separation of coseismic
and postseismic gravity changes for the 2004 Sumatra-Andaman earthquake from 4.6 yr of GRACE observations and modelling of
the coseismic change by normal-modes summation. Geophysical Journal International, 176:695–714, doi:10.1111/j.1365-246X.2008.04025.x.
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- Dehne, M., Guzmán Cervantes, F., Sheard, B., Heinzel, G., and Danzmann, K., 2009. Laser interferometer for spaceborne
mapping of the Earth's gravity field. Journal of Physics Conference Series, 154(1):012023–+, doi:10.1088/1742-6596/154/1/012023.
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- Duan, X. J., Guo, J. Y., Shum, C. K., and van der Wal, W., 2009. On the postprocessing removal of correlated
errors in GRACE temporal gravity field solutions. Journal of Geodesy, 83:1095–1106, doi:10.1007/s00190-009-0327-0.
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- Egbert, G. D., Erofeeva, S. Y., Han, S.-C., Luthcke, S. B., and Ray, R. D., 2009. Assimilation of GRACE
tide solutions into a numerical hydrodynamic inverse model. Geophysical Research Letters, 36:20609–+, doi:10.1029/2009GL040376.
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- Fersch, B., Large scale water balance estimations from downscaled atmospheric moisture budgets and evaluation with global
climatological data sets and GRACE spaceborn gravimetry. Ph.D. Thesis, University of Stuttgart, Germany, 2009.
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- Foelsche, Ulrich, Pirscher, Barbara, Borsche, Michael, Kirchengast, Gottfried, and Wickert, Jens, 2009. Assessing the Climate
Monitoring Utility of Radio Occultation Data: From CHAMP to FORMOSAT-3/COSMIC. Terrestrial, Atmospheric and Oceanic Sciences,
20(1):155, doi:10.3319/TAO.2008.01.14.01(F3C).
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- Fukuda, Y., Yamamoto, K., Hasegawa, T., Nakaegawa, T., Nishijima, J., and Taniguchi, M., 2009. Monitoring groundwater variation
by satellite and implications for in-situ gravity measurements. Science of the Total Environment, 407:3173–3180,
doi:10.1016/j.scitotenv.2008.05.018.
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- Gitlein, O., Absolutgravimetrische Bestimmung der Fennoskandischen Landhebung mit dem FG5-220. Ph.D. Thesis, University of
Hannover, Germany, 2009.
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- Gunter, B., Urban, T., Riva, R., Helsen, M., Harpold, R., Poole, S., Nagel, P., Schutz, B., and Tapley, B., 2009. A comparison
of coincident GRACE and ICESat data over Antarctica. Journal of Geodesy, 83:1051–1060, doi:10.1007/s00190-009-0323-4.
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- Han, S.-C., Kim, H., Yeo, I.-Y., Yeh, P., Oki, T., Seo, K.-W., Alsdorf, D., and Luthcke, S. B., 2009. Dynamics of surface
water storage in the Amazon inferred from measurements of inter-satellite distance change. Geophysical Research Letters,
36:9403–+, doi:10.1029/2009GL037910.
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- Hasegawa, T., Fukuda, Y., Yamamoto, K., and Nakaegawa, T., 2009. The 2006 Australian drought by GRACE. In Taniguchi, M., Burnett,
W. C., Fukushima, Y., Haigh, M., and Umezawa, Y. (editors), From Headwaters to the Ocean, pp. 363–367, Taylor
and Francis Group, London.
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- Hinderer, J., de Linage, C., Boy, J.-P., Gegout, P., Masson, F., Rogister, Y., Amalvict, M., Pfeffer, J., Littel, F., Luck,
B., Bayer, R., Champollion, C., Collard, P., Le Moigne, N., Diament, M., Deroussi, S., de Viron, O., Biancale, R., Lemoine,
J.-M., Bonvalot, S., Gabalda, G., Bock, O., Genthon, P., Boucher, M., Favreau, G., Séguis, L., Delclaux, F., Cappelaere,
B., Oi, M., Descloitres, M., Galle, S., Laurent, J.-P., Legchenko, A., and Bouin, M.-N., 2009. The GHYRAF (Gravity and Hydrology
in Africa) experiment: Description and first results. Journal of Geodynamics, 48:172–181, doi:10.1016/j.jog.2009.09.014.
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- Horwath, M. and Dietrich, R., 2009. Signal and error in mass change inferences from GRACE: the case of Antarctica. Geophysical
Journal International, 177:849–864, doi:10.1111/j.1365-246X.2009.04139.x.
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- Hunegnaw, A., Siegismund, F., Hipkin, R., and Mork, K. A., 2009. Absolute flow field estimation for the Nordic seas from
combined gravimetric, altimetric, and in situ data. Journal of Geophysical Research (Oceans), 114(C13):2022–+,
doi:10.1029/2008JC004797.
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- Iorio, L., 2009. An Assessment of the Systematic Uncertainty in Present and Future Tests of the Lense-Thirring Effect with
Satellite Laser Ranging. Space Science Reviews, 148:363–381, doi:10.1007/s11214-008-9478-1.
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- Iorio, L., 2009. Will the recently approved LARES mission be able to measure the Lense-Thirring effect at 1%?. General
Relativity and Gravitation, 41:1717–1724, doi:10.1007/s10714-008-0742-1.
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- Iorio, L., 2009. Towards a 1% measurement of the Lense-Thirring effect with LARES?. Advances in Space Research, 43:1148–1157,
doi:10.1016/j.asr.2008.10.016.
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- Jäggi, A., Dach, R., Montenbruck, O., Hugentobler, U., Bock, H., and Beutler, G., 2009. Phase center modeling for LEO
GPS receiver antennas and its impact on precise orbit determination. Journal of Geodesy, 83:1145–1162, doi:10.1007/s00190-009-0333-2.
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- Jansen, M. J. F., Gunter, B. C., and Kusche, J., 2009. The impact of GRACE, GPS and OBP data on estimates of
global mass redistribution. Geophysical Journal International, 177:1–13, doi:10.1111/j.1365-246X.2008.04031.x.
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- Kang, Z., Tapley, B., Chen, J., Ries, J., and Bettadpur, S., 2009. Geocenter variations derived from GPS tracking of the GRACE
satellites. Journal of Geodesy, 83:895–901, doi:10.1007/s00190-009-0307-4.
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- Kim, H., Yeh, P. J.-F., Oki, T., and Kanae, S., 2009. Role of rivers in the seasonal variations of terrestrial water
storage over global basins. Geophysical Research Letters, 36:17402–+, doi:10.1029/2009GL039006.
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- Kim, J. and Lee, S. W., 2009. Flight performance analysis of GRACE K-band ranging instrument with simulation data. Acta
Astronautica, 65:1571–1581, doi:10.1016/j.actaastro.2009.04.010.
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- Klosko, S., Rowlands, D., Luthcke, S., Lemoine, F., Chinn, D., and Rodell, M., 2009. Evaluation and validation of mascon recovery
using GRACE KBRR data with independent mass flux estimates in the Mississippi Basin. Journal of Geodesy, 83:817–827,
doi:10.1007/s00190-009-0301-x.
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- Kotsakis, C., 2009. A study on the reference frame consistency in recent Earth gravitational models. Journal of Geodesy,
83:31–50, doi:10.1007/s00190-008-0227-8.
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- Kuroishi, Y., 2009. Improved geoid model determination for Japan from GRACE and a regional gravity field model. Earth,
Planets, and Space, 61:807–813, doi:10.1186/BF03353191.
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- Kurtenbach, E., Mayer-Gürr, T., and Eicker, A., 2009. Deriving daily snapshots of the Earth's gravity field from GRACE
L1B data using Kalman filtering. Geophysical Research Letters, 36:17102–+, doi:10.1029/2009GL039564.
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- Kusche, J., Schmidt, R., Petrovic, S., and Rietbroek, R., 2009. Decorrelated GRACE time-variable gravity solutions by GFZ,
and their validation using a hydrological model. Journal of Geodesy, 83:903–913, doi:10.1007/s00190-009-0308-3.
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- Lai, M. J., Shum, C. K., Baramidze, V., and Wenston, P., 2009. Triangulated spherical splines for geopotential reconstruction.
Journal of Geodesy, 83:695–708, doi:10.1007/s00190-008-0283-0.
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- Leblanc, M. J., Tregoning, P., Ramillien, G., Tweed, S. O., and Fakes, A., 2009. Basin-scale, integrated observations
of the early 21st century multiyear drought in southeast Australia. Water Resources Research, 45:4408–+, doi:10.1029/2008WR007333.
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- Leuliette, E. W. and Miller, L., 2009. Closing the sea level rise budget with altimetry, Argo, and GRACE. Geophysical
Research Letters, 36:4608–+, doi:10.1029/2008GL036010.
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- Loomis, B., Simulation study of a follow-on gravity mission to GRACE. Ph.D. Thesis, University of Colorado at Boulder, 2009.
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- Maceira, M. and Ammon, C. J., 2009. Joint inversion of surface wave velocity and gravity observations and its application
to central Asian basins shear velocity structure. Journal of Geophysical Research (Solid Earth), 114(B13):2314–+,
doi:10.1029/2007JB005157.
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- Melachroinos, S. A., Lemoine, J.-M., Tregoning, P., and Biancale, R., 2009. Quantifying FES2004 S_2 tidal model from
multiple space-geodesy techniques, GPS and GRACE, over North West Australia. Journal of Geodesy, 83:915–923,
doi:10.1007/s00190-009-0309-2.
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- Muskett, R. R. and Romanovsky, V. E., 2009. Groundwater storage changes in arctic permafrost watersheds from GRACE
and in situ measurements. Environmental Research Letters, 4(4):045009–+, doi:10.1088/1748-9326/4/4/045009.
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- Paulson, A. and Richards, M. A., 2009. On the resolution of radial viscosity structure in modelling long-wavelength postglacial
rebound data. Geophysical Journal International, 179:1516–1526, doi:10.1111/j.1365-246X.2009.04362.x.
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- Peltier, W. R. and Luthcke, S. B., 2009. On the origins of Earth rotation anomalies: New insights on the basis of
both “paleogeodetic” data and Gravity Recovery and Climate Experiment (GRACE) data. Journal of Geophysical
Research (Solid Earth), 114(B13):11405–+, doi:10.1029/2009JB006352.
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- Peltier, W. R., 2009. Closure of the budget of global sea level rise over the GRACE era: the importance and magnitudes
of the required corrections for global glacial isostatic adjustment. Quaternary Science Reviews, 28:1658–1674,
doi:10.1016/j.quascirev.2009.04.004.
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- Peng, D.-J. and Wu, B., 2009. The Effect of GPS Ephemeris on the Accuracy of Precise Orbit Determination of LEO Satellite-borne
GPS. Chinese Astronomy and Astrophysics, 33:206–216, doi:10.1016/j.chinastron.2009.03.007.
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- Ponte, R. M. and Quinn, K. J., 2009. Bottom pressure changes around Antarctica and wind-driven meridional flows.
Geophysical Research Letters, 36:13604–+, doi:10.1029/2009GL039060.
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- Rangelova, E., Fotopoulos, G., and Sideris, M. G., 2009. On the use of iterative re-weighting least-squares and outlier
detection for empirically modelling rates of vertical displacement. Journal of Geodesy, 83:523–535, doi:10.1007/s00190-008-0261-6.
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- Ray, R. D., Luthcke, S. B., and Boy, J.-P., 2009. Qualitative comparisons of global ocean tide models by analysis
of intersatellite ranging data. Journal of Geophysical Research (Oceans), 114(C13):9017–+, doi:10.1029/2009JC005362.
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- Reager, J. T. and Famiglietti, J. S., 2009. Global terrestrial water storage capacity and flood potential using
GRACE. Geophysical Research Letters, 36:23402–+, doi:10.1029/2009GL040826.
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- Rietbroek, R., Brunnabend, S.-E., Dahle, C., Kusche, J., Flechtner, F., Schröter, J., and Timmermann, R., 2009. Changes
in total ocean mass derived from GRACE, GPS, and ocean modeling with weekly resolution. Journal of Geophysical Research
(Oceans), 114(C13):11004–+, doi:10.1029/2009JC005449.
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- Riva, R. E. M., Gunter, B. C., Urban, T. J., Vermeersen, B. L. A., Lindenbergh, R. C.,
Helsen, M. M., Bamber, J. L., van de Wal, R. S. W., van den Broeke, M. R., and Schutz, B. E.,
2009. Glacial Isostatic Adjustment over Antarctica from combined ICESat and GRACE satellite data. Earth and Planetary Science
Letters, 288:516–523, doi:10.1016/j.epsl.2009.10.013.
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- Rodell, M., Velicogna, I., and Famiglietti, J. S., 2009. Satellite-based estimates of groundwater depletion in India.
Nature, 460:999–1002, doi:10.1038/nature08238.
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- Sadiq, M. and Ahmad, Z., 2009. On the selection of optimal global geopotential model for geoid modeling: A case study in Pakistan.
Advances in Space Research, 44:627–639, doi:10.1016/j.asr.2009.05.004.
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- Sasgen, I., Present-day ice-mass change and glacial-isostatic adjustment in the polar regions from satellite gravimetry and
geophysical modelling. Ph.D. Thesis, Free University of Berlin, Germany, 2009.
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- Save, H. V., Using regularization for error reduction in GRACE gravity estimation. Ph.D. Thesis, The University of Texas
at Austin, 2009.
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- Seo, K.-W., Waliser, D. E., Tian, B., Famiglietti, J. S., and Syed, T. H., 2009. Evaluation of global land-to-ocean
fresh water discharge and evapotranspiration using space-based observations. Journal of Hydrology, 373:508–515,
doi:10.1016/j.jhydrol.2009.05.014.
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- Seoane, L., Nastula, J., Bizouard, C., and Gambis, D., 2009. The use of gravimetric data from GRACE mission in the understanding
of polar motion variations. Geophysical Journal International, 178:614–622, doi:10.1111/j.1365-246X.2009.04181.x.
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- Sheffield, J., Ferguson, C. R., Troy, T. J., Wood, E. F., and McCabe, M. F., 2009. Closing the terrestrial
water budget from satellite remote sensing. Geophysical Research Letters, 36:7403–+, doi:10.1029/2009GL037338.
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- Shin, Y. H., Shum, C.-K., Braitenberg, C., Lee, S. M., Xu, H., Choi, K. S., Baek, J. H., and Park, J. U.,
2009. Three-dimensional fold structure of the Tibetan Moho from GRACE gravity data. Geophysical Research Letters, 36:1302–+,
doi:10.1029/2008GL036068.
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- Slobbe, D. C., Ditmar, P., and Lindenbergh, R. C., 2009. Estimating the rates of mass change, ice volume change
and snow volume change in Greenland from ICESat and GRACE data. Geophysical Journal International, 176:95–106,
doi:10.1111/j.1365-246X.2008.03978.x.
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- Soldati, G., Boschi, L., Deschamps, F., and Giardini, D., 2009. Inferring radial models of mantle viscosity from gravity (GRACE)
data and an evolutionary algorithm. Physics of the Earth and Planetary Interiors, 176:19–32, doi:10.1016/j.pepi.2009.03.013.
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- Steffen, H., Gitlein, O., Denker, H., Müller, J., and Timmen, L., 2009. Present rate of uplift in Fennoscandia from GRACE
and absolute gravimetry. Tectonophysics, 474:69–77, doi:10.1016/j.tecto.2009.01.012.
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- Steffen, H., Petrovic, S., Müller, J., Schmidt, R., Wünsch, J., Barthelmes, F., and Kusche, J., 2009. Significance
of secular trends of mass variations determined from GRACE solutions. Journal of Geodynamics, 48:157–165, doi:10.1016/j.jog.2009.09.029.
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- Strassberg, G., Scanlon, B. R., and Chambers, D., 2009. Evaluation of groundwater storage monitoring with the GRACE satellite:
Case study of the High Plains aquifer, central United States. Water Resources Research, 45:5410–+, doi:10.1029/2008WR006892.
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- Sun, W., Okubo, S., Fu, G., and Araya, A., 2009. General formulations of global co-seismic deformations caused by an arbitrary
dislocation in a spherically symmetric earth model-applicable to deformed earth surface and space-fixed point. Geophysical
Journal International, 177:817–833, doi:10.1111/j.1365-246X.2009.04113.x.
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- Swenson, S. and Wahr, J., 2009. Monitoring the water balance of Lake Victoria, East Africa, from space. Journal of Hydrology,
370:163–176, doi:10.1016/j.jhydrol.2009.03.008.
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- Syed, T. H., Famiglietti, J. S., and Chambers, D. P., 2009. GRACE-Based Estimates of Terrestrial Freshwater
Discharge from Basin to Continental Scales. Journal of Hydrometeorology, 10:22–40, doi:10.1175/2008JHM993.1.
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- Tanaka, Y., Klemann, V., Fleming, K., and Martinec, Z., 2009. Spectral finite element approach to postseismic deformation
in a viscoelastic self-gravitating spherical Earth. Geophysical Journal International, 176:715–739, doi:10.1111/j.1365-246X.2008.04015.x.
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- Tesauro, M., An integrated study of the structure and thermomechanical properties of the European lithosphere. Ph.D. Thesis,
VU Amsterdam, The Netherlands, 2009.
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- Thompson, K. R., Huang, J., Véronneau, M., Wright, D. G., and Lu, Y., 2009. Mean surface topography of the
northwest Atlantic: Comparison of estimates based on satellite, terrestrial gravity, and oceanographic observations. Journal
of Geophysical Research (Oceans), 114(C13):7015–+, doi:10.1029/2008JC004859.
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- Tiwari, V. M., Wahr, J., and Swenson, S., 2009. Dwindling groundwater resources in northern India, from satellite gravity
observations. Geophysical Research Letters, 36:18401–+, doi:10.1029/2009GL039401.
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- Tregoning, P., Ramillien, G., McQueen, H., and Zwartz, D., 2009. Glacial isostatic adjustment and nonstationary signals observed
by GRACE. Journal of Geophysical Research (Solid Earth), 114(B13):6406–+, doi:10.1029/2008JB006161.
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- van Barneveld, P. W. L., Montenbruck, O., and Visser, P. N. A. M., 2009. Epochwise prediction of
GPS single differenced ionospheric delays of formation flying spacecraft. Advances in Space Research, 44:987–1001,
doi:10.1016/j.asr.2009.07.006.
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- van den Broeke, M., Bamber, J., Ettema, J., Rignot, E., Schrama, E., van de Berg, W. J., van Meijgaard, E., Velicogna,
I., and Wouters, B., 2009. Partitioning Recent Greenland Mass Loss. Science, 326:984–, doi:10.1126/science.1178176.
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- van Helleputte, T., Doornbos, E., and Visser, P., 2009. CHAMP and GRACE accelerometer calibration by GPS-based orbit determination.
Advances in Space Research, 43:1890–1896, doi:10.1016/j.asr.2009.02.017.
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- Velicogna, I., 2009. Increasing rates of ice mass loss from the Greenland and Antarctic ice sheets revealed by GRACE. Geophysical
Research Letters, 36:19503–+, doi:10.1029/2009GL040222.
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- von Frese, R. R. B., Potts, L. V., Wells, S. B., Leftwich, T. E., Kim, H. R., Kim, J. W.,
Golynsky, A. V., Hernandez, O., and Gaya-Piqué, L. R., 2009. GRACE gravity evidence for an impact basin in
Wilkes Land, Antarctica. Geochemistry, Geophysics, Geosystems, 10:2014–+, doi:10.1029/2008GC002149.
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- Weigelt, M., Sideris, M. G., and Sneeuw, N., 2009. On the influence of the ground track on the gravity field recovery
from high–low satellite-to-satellite tracking missions: CHAMP monthly gravity field recovery using the energy balance
approach revisited. Journal of Geodesy, 83:1131–1143, doi:10.1007/s00190-009-0330-5.
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- Weise, A., Kroner, C., Abe, M., Ihde, J., Jentzsch, G., Naujoks, M., Wilmes, H., and Wziontek, H., 2009. Gravity field variations
from superconducting gravimeters for GRACE validation. Journal of Geodynamics, 48:325–330, doi:10.1016/j.jog.2009.09.034.
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- Wermuth, M. K., Gravity field analysis from the satellite missions CHAMP and GOCE. Ph.D. Thesis, Technical University
Munich, Germany, 2009.
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- Werth, S., Güntner, A., Petrovic, S., and Schmidt, R., 2009. Integration of GRACE mass variations into a global hydrological
model. Earth and Planetary Science Letters, 277:166–173, doi:10.1016/j.epsl.2008.10.021.
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- Werth, S., Güntner, A., Schmidt, R., and Kusche, J., 2009. Evaluation of GRACE filter tools from a hydrological perspective.
Geophysical Journal International, 179:1499–1515, doi:10.1111/j.1365-246X.2009.04355.x.
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- Wickert, J., Michalak, G., Schmidt, T., Beyerle, G., Cheng, C. Z., Healy, S. B., Heise, S., Huang, C. Y., Jakowski,
N., Köhler, W., Mayer, C., Offiler, D., Ozawa, E., Pavelyev, A. G., Rothacher, M., Tapley, B., and Arras, C., 2009.
GPS radio occultation: Results from CHAMP, GRACE and FORMOSAT-3/COSMIC. Terrestrial, Atmospheric and Oceanic Sciences,
20:45–50, doi:10.3319/TAO.2007.12.26.01(F3C).
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- Wickert, J., Schmidt, T., Michalak, G., Heise, S., Arras, C., Beyerle, G., Falck, C., König, R., Pingel, D., and Rothacher,
M., 2009. GPS radio occultation with CHAMP, GRACE, SAC-C, TerraSAR-X and COSMIC: Brief review of results from GFZ, New Horizons.
In Steiner, A., Pirscher, B., Foelsche, U., and Kirchengast, G. (editors), Occultation Research: Studies in Atmosphere
and Climate, pp. 3–16, Springer, Berlin Heidelberg.
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- Wiese, D. N., Folkner, W. M., and Nerem, R. S., 2009. Alternative mission architectures for a gravity recovery
satellite mission. Journal of Geodesy, 83:569–581, doi:10.1007/s00190-008-0274-1.
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- Wu, X., Blom, R. G., Ivins, E. R., Oyafuso, F. A., and Zhong, M., 2009. Improved inverse and probabilistic
methods for geophysical applications of GRACE gravity data. Geophysical Journal International, 177:865–877, doi:10.1111/j.1365-246X.2009.04141.x.
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- Yamamoto, K., Hasegawa, T., Fukuda, Y., Nakaegawa, T., and Taniguchi, M., 2009. Improvement of JLG terrestrial water storage
model using GRACE satellite gravity data. In Taniguchi, M., Burnett, W. C., Fukushima, Y., Haigh, M., and Umezawa, Y. (editors),
From Headwaters to the Ocean, pp. 369–374, Taylor and Francis Group, London.
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- Yirdaw, S. Z., Snelgrove, K. R., Seglenieks, F. R., Agboma, C. O., and Soulis, E. D., 2009. Assessment
of the WATCLASS hydrological model result of the Mackenzie River basin using the GRACE satellite total water storage measurement.
Hydrological Processes, 23:3391–3400, doi:10.1002/hyp.7450.
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- Zhang, Z.-Z., Chao, B. F., Lu, Y., and Hsu, H.-T., 2009. An effective filtering for GRACE time-variable gravity: Fan
filter. Geophysical Research Letters, 36:17311–+, doi:10.1029/2009GL039459.
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- Zheng, W., Hsu, H.-T., Zhong, M., and Yun, M.-J., 2009. Accurate and rapid error estimation on global gravitational field
from current GRACE and future GRACE Follow-On missions. Chinese Physics B, 18:3597–3604, doi:10.1088/1674-1056/18/8/077.
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- Zheng, W., Xu, H.-Z., Zhong, M., and Yun, M.-J., 2009. Physical Explanation of Influence of Twin and Three Satellite Formation
Mode on the Accuracy of Earth's Gravitational Field. Chinese Physics Letters, 26(2):029101–+, doi:10.1088/0256-307X/26/2/029101.
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- Andersen, O., Berry, P., Freeman, J., Lemoine, F. G., Luthcke, S., Jakobsen, K., and Butts, M., 2008. Satellite Altimetry
and GRACE Gravimetry for Studies of Annual Water Storage Variations in Bangladesh. Terrestrial, Atmospheric and Ocean Sciences,
19:47–52, doi:10.3319/TAO.2008.19.1-2.47(SA).
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- Arendt, A. A., Luthcke, S. B., Larsen, C. F., Abdalati, W., Krabill, W. B., and Beedle, M. J., 2008.
Validation of high-resolution GRACE mascon estimates of glacier mass changes in the St Elias Mountains, Alaska, USA, using
aircraft laser altimetry. Journal of Glaciology, 54:778–787, doi:10.3189/002214308787780067.
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- Arras, C., Wickert, J., Beyerle, G., Heise, S., Schmidt, T., and Jacobi, C., 2008. A global climatology of ionospheric irregularities
derived from GPS radio occultation. Geophysical Research Letters, 35:14809–+, doi:10.1029/2008GL034158.
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- Awange, Joseph L., Ogalo, Laban, Bae, Kwang-Ho, Were, Paul, Omondi, Philip, Omute, Paul, and Omullo, Monica, 2008. Falling
Lake Victoria water levels: Is climate a contributing factor?. Climatic Change, 89(3-4):281–297, doi:10.1007/s10584-008-9409-x.
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- Barletta, V. R., Sabadini, R., and Bordoni, A., 2008. Isolating the PGR signal in the GRACE data: impact on mass balance
estimates in Antarctica and Greenland. Geophysical Journal International, 172:18–30, doi:10.1111/j.1365-246X.2007.03630.x.
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- Böning, C., Timmermann, R., Macrander, A., and Schröter, J., 2008. A pattern-filtering method for the determination
of ocean bottom pressure anomalies from GRACE solutions. Geophysical Research Letters, 35:18611–+, doi:10.1029/2008GL034974.
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- Boronina, A. and Ramillien, G., 2008. Application of AVHRR imagery and GRACE measurements for calculation of actual evapotranspiration
over the Quaternary aquifer (Lake Chad basin) and validation of groundwater models. Journal of Hydrology, 348:98–109,
doi:10.1016/j.jhydrol.2007.09.061.
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- Bourda, G., 2008. Length-of-day and space-geodetic determination of the Earth's variable gravity field. Journal of Geodesy,
82:295–305, doi:10.1007/s00190-007-0180-y.
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- Burke, W. J., 2008. Storm time energy budgets of the global thermosphere. Washington DC American Geophysical Union
Geophysical Monograph Series, 181:235–246, doi:10.1029/181GM21.
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- Cannelli, V., Melini, D., Piersanti, A., and Boschi, E., 2008. Postseismic signature of the 2004 Sumatra earthquake on low-degree
gravity harmonics. Journal of Geophysical Research (Solid Earth), 113(B12):12414–+, doi:10.1029/2007JB005296.
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- Castruccio, F., Verron, J., Gourdeau, L., Brankart, J.-M., and Brasseur, P., 2008. Joint altimetric and in-situ data assimilation
using the GRACE mean dynamic topography: a 1993 1998 hindcast experiment in the Tropical Pacific Ocean. Ocean Dynamics,
58:43–63, doi:10.1007/s10236-007-0131-4.
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- Chambers, D. P. and Willis, J. K., 2008. Analysis of large-scale ocean bottom pressure variability in the North
Pacific. Journal of Geophysical Research (Oceans), 113(C12):11003–+, doi:10.1029/2008JC004930.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Blankenship, D., and Young, D., 2008. Antarctic regional ice loss
rates from GRACE. Earth and Planetary Science Letters, 266:140–148, doi:10.1016/j.epsl.2007.10.057.
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- Chen, J. L. and Wilson, C. R., 2008. Low degree gravity changes from GRACE, Earth rotation, geophysical models,
and satellite laser ranging. Journal of Geophysical Research (Solid Earth), 113(B12):6402–+, doi:10.1029/2007JB005397.
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- Crowley, J. W., Mitrovica, J. X., Bailey, R. C., Tamisiea, M. E., and Davis, J. L., 2008. Annual
variations in water storage and precipitation in the Amazon Basin. Journal of Geodesy, 82:9–13, doi:10.1007/s00190-007-0153-1.
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- Daho, S. A. B., Fairhead, J. D., Zeggai, A., Ghezali, B., Derkaoui, A., Gourine, B., and Khelifa, S., 2008.
New investigation on the choice of the tailored geopotential model for Algeria. Journal of Geodynamics, 45:154–162,
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- Davis, J. L., Tamisiea, M. E., Elósegui, P., Mitrovica, J. X., and Hill, E. M., 2008. A statistical
filtering approach for Gravity Recovery and Climate Experiment (GRACE) gravity data. Journal of Geophysical Research (Solid
Earth), 113(B12):4410–+, doi:10.1029/2007JB005043.
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- de Viron, O., Panet, I., Mikhailov, V., van Camp, M., and Diament, M., 2008. Retrieving earthquake signature in grace gravity
solutions. Geophysical Journal International, 174:14–20, doi:10.1111/j.1365-246X.2008.03807.x.
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- Döll, P. and Fiedler, K., 2008. Global-scale modeling of groundwater recharge. Hydrology and Earth System Sciences,
12:863–885, doi:10.5194/hess-12-863-2008.
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- Eicker, A., 2008. Gravity Field Refinement by Radial Basis Functions from In-situ Satellite Data, Dissertation Univ.
Bonn D 98, pp. 137, Univ. Bonn, Bonn.
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- Ellmann, A. and Jürgenson, H., 2008. Evaluation of a Grace-Based Combined Geopotential Model over the Baltic Countries.
Geodesy and Cartography, 34:35–44, doi:10.3846/1392-1541.2008.34.35-44.
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- Eshagh, M., Abdollahzadeh, M., and Najafi-Alamdari, M., 2008. Simplification of Geopotential Perturbing Force Acting on A
Satellite. Artificial Satellites, 43:45–64, doi:10.2478/v10018-009-0006-7.
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- Flury, J., Bettadpur, S., and Tapley, B. D., 2008. Precise accelerometry onboard the GRACE gravity field satellite mission.
Advances in Space Research, 42:1414–1423, doi:10.1016/j.asr.2008.05.004.
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- Foelsche, U., Borsche, M., Steiner, A. K., Gobiet, A., Pirscher, B., Kirchengast, G., Wickert, J., and Schmidt, T., 2008.
Observing upper troposphere-lower stratosphere climate with radio occultation data from the CHAMP satellite. Climate Dynamics,
31:49–65, doi:10.1007/s00382-007-0337-7.
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- Förste, C., Schmidt, R., Stubenvoll, R., Flechtner, F., Meyer, U., König, R., Neumayer, H., Biancale, R., Lemoine,
J.-M., Bruinsma, S., Loyer, S., Barthelmes, F., and Esselborn, S., 2008. The GeoForschungsZentrum Potsdam/Groupe de Recherche
de Gèodésie Spatiale satellite-only and combined gravity field models: EIGEN-GL04S1 and EIGEN-GL04C. Journal
of Geodesy, 82:331–346, doi:10.1007/s00190-007-0183-8.
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- Frappart, F., Papa, F., Famiglietti, J. S., Prigent, C., Rossow, W. B., and Seyler, F., 2008. Interannual variations
of river water storage from a multiple satellite approach: A case study for the Rio Negro River basin. Journal of Geophysical
Research (Atmospheres), 113(D12):21104–+, doi:10.1029/2007JD009438.
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- Frommknecht, B., 2008. Integrated Sensor Analysis of the GRACE Mission, Deutsche Geod. Kommission, Reihe C 617, pp.
192, Bayer. Akademie der Wissenschaften, Munich.
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- Güntner, A., 2008. Improvement of Global Hydrological Models Using GRACE Data. Surveys in Geophysics, 29:375–397,
doi:10.1007/s10712-008-9038-y.
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- Hall, Dorothy K., Williams, Richard S., Luthcke, Scott B., and Digirolamo, Nicolo E., 2008. Greenland ice sheet surface temperature,
melt and mass loss: 2000-06. Journal of Glaciology, 54(184):81–93, doi:10.3189/002214308784409170.
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- Han, S.-C. and Simons, F. J., 2008. Spatiospectral localization of global geopotential fields from the Gravity Recovery
and Climate Experiment (GRACE) reveals the coseismic gravity change owing to the 2004 Sumatra-Andaman earthquake. Journal
of Geophysical Research (Solid Earth), 113(B12):1405–+, doi:10.1029/2007JB004927.
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- Han, S.-C., Rowlands, D. D., Luthcke, S. B., and Lemoine, F. G., 2008. Localized analysis of satellite tracking
data for studying time-variable Earth's gravity fields. Journal of Geophysical Research (Solid Earth), 113(B12):6401–+,
doi:10.1029/2007JB005218.
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- Han, S.-C., Sauber, J., Luthcke, S. B., Ji, C., and Pollitz, F. F., 2008. Implications of postseismic gravity change
following the great 2004 Sumatra-Andaman earthquake from the regional harmonic analysis of GRACE intersatellite tracking data.
Journal of Geophysical Research (Solid Earth), 113(B12):11413–+, doi:10.1029/2008JB005705.
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- Han, S.-C. and Ditmar, P., 2008. Localized spectral analysis of global satellite gravity fields for recovering time-variable
mass redistributions. Journal of Geodesy, 82:423–430, doi:10.1007/s00190-007-0194-5.
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- Huang, J., Véronneau, M., and Mainville, A., 2008. Assessment of systematic errors in the surface gravity anomalies
over North America using the GRACE gravity model. Geophysical Journal International, 175:46–54, doi:10.1111/j.1365-246X.2008.03924.x.
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- Iorio, L., 2008. Perspectives on Measuring the PPN Parameters $\beta$ and $\gamma$ in Earth's Gravitational Field to High
Accuracy with Champ/grace Models. International Journal of Modern Physics D, 17:815–829, doi:10.1142/S0218271808012516.
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- Kiamehr, R., Eshagh, M., and Sjöberg, L. E., 2008. Interpretation of general geophysical patterns in Iran based
on GRACE gradient component analysis. Acta Geophysica, 56:440–454, doi:10.2478/s11600-007-0050-2.
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- Klees, R., Revtova, E. A., Gunter, B. C., Ditmar, P., Oudman, E., Winsemius, H. C., and Savenije, H. H. G.,
2008. The design of an optimal filter for monthly GRACE gravity models. Geophysical Journal International, 175:417–432,
doi:10.1111/j.1365-246X.2008.03922.x.
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- Klees, R., Liu, X., Wittwer, T., Gunter, B. C., Revtova, E. A., Tenzer, R., Ditmar, P., Winsemius, H. C., and
Savenije, H. H. G., 2008. A Comparison of Global and Regional GRACE Models for Land Hydrology. Surveys in Geophysics,
29:335–359, doi:10.1007/s10712-008-9049-8.
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- Klokocn\'ık, J., Wagner, C. A., Kostelecký, J., Bezdek, A., Novák, P., and McAdoo, D., 2008. Variations
in the accuracy of gravity recovery due to ground track variability: GRACE, CHAMP, and GOCE. Journal of Geodesy, 82:917–927,
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- Ko, U. D., Analysis of the characteristics of GRACE dual one-way ranging system. Ph.D. Thesis, The University of Texas
at Austin, 2008.
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- Kuo, C.-Y., Shum, C. K., Guo, J., Yi, Y., Braun, A., Fukumori, I., Matsumoto, K., Sato, T., and Shibuya, K., 2008. Southern
Ocean mass variation studies using GRACE and satellite altimetry. Earth, Planets, and Space, 60:477–485, doi:10.1186/BF03352814.
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- Lee, H. K., Radar altimetry methods for solid earth geodynamics studies. Ph.D. Thesis, The Ohio State University, 2008.
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- Luthcke, S. B., Arendt, A. A., Rowlands, D. D., McCarthy, J. J., and Larsen, C. F., 2008. Recent
glacier mass changes in the Gulf of Alaska region from GRACE mascon solutions. Journal of Glaciology, 54:767–777,
doi:10.3189/002214308787779933.
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- McAdoo, D. C., Farrell, S. L., Laxon, S. W., Zwally, H. J., Yi, D., and Ridout, A. L., 2008. Arctic
Ocean gravity field derived from ICESat and ERS-2 altimetry: Tectonic implications. Journal of Geophysical Research (Solid
Earth), 113(B12):5408–+, doi:10.1029/2007JB005217.
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- Migliaccio, F., Reguzzoni, M., Sansò, F., Via, G. D., and Sabadini, R., 2008. Detecting geophysical signals in
gravity satellite missions. Geophysical Journal International, 172:56–66, doi:10.1111/j.1365-246X.2007.03600.x.
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- Montenbruck, O. and Ramos-Bosch, P., 2008. Precision real-time navigation of LEO satellites using global positioning system
measurements. GPS Solutions, 12:187–198.
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- Moore, P. and King, M. A., 2008. Antarctic ice mass balance estimates from GRACE: Tidal aliasing effects. Journal
of Geophysical Research (Earth Surface), 113(F12):2005–+, doi:10.1029/2007JF000871.
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- Morishita, Y. and Heki, K., 2008. Characteristic precipitation patterns of El Niño/La Niña in time-variable
gravity fields by GRACE. Earth and Planetary Science Letters, 272:677–682, doi:10.1016/j.epsl.2008.06.003.
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- Neumeyer, J., Barthelmes, F., Kroner, C., Petrovic, S., Schmidt, R., Virtanen, H., and Wilmes, H., 2008. Analysis of gravity
field variations derived from Superconducting Gravimeter recordings, the GRACE satellite and hydrological models at selected
European sites. Earth, Planets, and Space, 60:505–518, doi:10.1186/BF03352817.
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- Nutz, H. and Wolf, K., 2008. Time-space multiscale analysis by use of tensor product wavelets and its application to hydrology
and GRACE data. Studia Geophysica et Geodaetica, 52(3):321–339, doi:10.1007/s11200-008-0024-0.
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- Papa, F., Güntner, A., Frappart, F., Prigent, C., and Rossow, W. B., 2008. Variations of surface water extent and
water storage in large river basins: A comparison of different global data sources. Geophysical Research Letters, 35:11401–+,
doi:10.1029/2008GL033857.
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- Papa, F., Prigent, C., and Rossow, W. B., 2008. Monitoring Flood and Discharge Variations in the Large Siberian Rivers
From a Multi-Satellite Technique. Surveys in Geophysics, 29:297–317, doi:10.1007/s10712-008-9036-0.
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- Park, J.-H., Watts, D. R., Donohue, K. A., and Jayne, S. R., 2008. A comparison of in situ bottom pressure
array measurements with GRACE estimates in the Kuroshio Extension. Geophysical Research Letters, 35:17601–+,
doi:10.1029/2008GL034778.
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- Peng, D. J. and Wu, B., 2008. The impact of GPS ephemeris on the accuracy of precise orbit determination for LEO using
GPS. Acta Astronomica Sinica, 49:434–443.
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- Peng, D.-J. and Wu, B., 2008. Application of Accelerometer Data in Precise Orbit Determination of GRACE -A and -B. Chinese
Journal of Astronomy and Astrophysics, 8:603–610, doi:10.1088/1009-9271/8/5/11.
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- Petrovskaya, M. S. and Vershkov, A. N., 2008. Development of the second-order derivatives of the Earth's potential
in the local north-oriented reference frame in orthogonal series of modified spherical harmonics. Journal of Geodesy,
82:929–944, doi:10.1007/s00190-008-0223-z.
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- Poli, P., Healy, S. B., Rabier, F., and Pailleux, J., 2008. Preliminary assessment of the scalability of GPS radio occultations
impact in numerical weather prediction. Geophysical Research Letters, 35:23811–+, doi:10.1029/2008GL035873.
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- Quinn, K. J. and Ponte, R. M., 2008. Estimating weights for the use of time-dependent gravity recovery and climate
experiment data in constraining ocean models. Journal of Geophysical Research (Oceans), 113(C12):12013–+, doi:10.1029/2008JC004903.
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- Ramillien, G., Bouhours, S., Lombard, A., Cazenave, A., Flechtner, F., and Schmidt, R., 2008. Land water storage contribution
to sea level from GRACE geoid data over 2003-2006. Global and Planetary Change, 60:381–392, doi:10.1016/j.gloplacha.2007.04.002.
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- Ramillien, G., Famiglietti, J. S., and Wahr, J., 2008. Detection of Continental Hydrology and Glaciology Signals from
GRACE: A Review. Surveys in Geophysics, 29:361–374, doi:10.1007/s10712-008-9048-9.
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- Rangelova, E. and Sideris, M. G., 2008. Contributions of terrestrial and GRACE data to the study of the secular geoid
changes in North America. Journal of Geodynamics, 46:131–143, doi:10.1016/j.jog.2008.03.006.
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- Rignot, E., Box, J. E., Burgess, E., and Hanna, E., 2008. Mass balance of the Greenland ice sheet from 1958 to 2007.
Geophysical Research Letters, 35:20502–+, doi:10.1029/2008GL035417.
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- Rogozhina, I., Global modeling of the effect of strong lateral viscosity variations on dynamic geoid and mantle flow velocities.
Ph.D. Thesis, Technical University Berlin, Germany, 2008.
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- Salstein, D. A., Ponte, R. M., and Cady-Pereira, K., 2008. Uncertainties in atmospheric surface pressure fields
from global analyses. Journal of Geophysical Research (Atmospheres), 113(D12):14107–+, doi:10.1029/2007JD009531.
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- Schmidt, R., Petrovic, S., Güntner, A., Barthelmes, F., Wünsch, J., and Kusche, J., 2008. Periodic components of
water storage changes from GRACE and global hydrology models. Journal of Geophysical Research (Solid Earth), 113(B12):8419–+,
doi:10.1029/2007JB005363.
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- Schmidt, T., Wickert, J., Beyerle, G., and Heise, S., 2008. Global tropopause height trends estimated from GPS radio occultation
data. Geophysical Research Letters, 35:11806–+, doi:10.1029/2008GL034012.
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- Schmidt, M., Seitz, F., and Shum, C. K., 2008. Regional four-dimensional hydrological mass variations from GRACE, atmospheric
flux convergence, and river gauge data. Journal of Geophysical Research (Solid Earth), 113(B12):10402–+, doi:10.1029/2008JB005575.
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- Schmidt, R., Flechtner, F., Meyer, U., Neumayer, K.-H., Dahle, C., König, R., and Kusche, J., 2008. Hydrological Signals
Observed by the GRACE Satellites. Surveys in Geophysics, 29:319–334, doi:10.1007/s10712-008-9033-3.
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- Schmidt, T., de la Torre, A., and Wickert, J., 2008. Global gravity wave activity in the tropopause region from CHAMP radio
occultation data. Geophysical Research Letters, 35:16807–+, doi:10.1029/2008GL034986.
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- Seitz, F., Schmidt, M., and Shum, C. K., 2008. Signals of extreme weather conditions in Central Europe in GRACE 4-D hydrological
mass variations. Earth and Planetary Science Letters, 268:165–170, doi:10.1016/j.epsl.2008.01.001.
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- Seo, K. W., Wilson, C. R., Han, S. C., and Waliser, D. E., 2008. Gravity Recovery and Climate Experiment
(GRACE) alias error from ocean tides. Journal of Geophysical Research (Solid Earth), 113(B12):3405–+, doi:10.1029/2006JB004747.
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- Seo, K.-W., Wilson, C. R., Chen, J., and Waliser, D. E., 2008. GRACE's spatial aliasing error. Geophysical Journal
International, 172:41–48, doi:10.1111/j.1365-246X.2007.03611.x.
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- Shabanloui, A., A new approach for a kinematic-dynamic determination of low sate llite orbits based on GNSS observations.
Ph.D. Thesis, University of Bonn, Germany, 2008.
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- Steffen, H., Denker, H., and Müller, J., 2008. Glacial isostatic adjustment in Fennoscandia from GRACE data and comparison
with geodynamical models. Journal of Geodynamics, 46:155–164, doi:10.1016/j.jog.2008.03.002.
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- Swenson, S., Famiglietti, J., Basara, J., and Wahr, J., 2008. Estimating profile soil moisture and groundwater variations
using GRACE and Oklahoma Mesonet soil moisture data. Water Resources Research, 44:1413–+, doi:10.1029/2007WR006057.
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- Swenson, S., Chambers, D., and Wahr, J., 2008. Estimating geocenter variations from a combination of GRACE and ocean model
output. Journal of Geophysical Research (Solid Earth), 113(B12):8410–+, doi:10.1029/2007JB005338.
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- Syed, T. H., Famiglietti, J. S., Rodell, M., Chen, J., and Wilson, C. R., 2008. Analysis of terrestrial water
storage changes from GRACE and GLDAS. Water Resources Research, 44:2433–+, doi:10.1029/2006WR005779.
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- Tregoning, P., Lambeck, K., and Ramillien, G., 2008. GRACE estimates of sea surface height anomalies in the Gulf of Carpentaria,
Australia. Earth and Planetary Science Letters, 271:241–244, doi:10.1016/j.epsl.2008.04.018.
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- van der Wal, W., Wu, P., Sideris, M. G., and Shum, C. K., 2008. Use of GRACE determined secular gravity rates for
glacial isostatic adjustment studies in North-America. Journal of Geodynamics, 46:144–154, doi:10.1016/j.jog.2008.03.007.
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- Willis, J. K., Chambers, D. P., and Nerem, R. S., 2008. Assessing the globally averaged sea level budget on
seasonal to interannual timescales. Journal of Geophysical Research (Oceans), 113(C12):6015–+, doi:10.1029/2007JC004517.
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- Witze, Alexandra, 2008. Climate change: Losing Greenland. Nature, 452(7189), doi:10.1038/452798a.
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- Wouters, B., Chambers, D., and Schrama, E. J. O., 2008. GRACE observes small-scale mass loss in Greenland. Geophysical
Research Letters, 35:20501–+, doi:10.1029/2008GL034816.
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- Xu, P., 2008. Position and velocity perturbations for the determination of geopotential from space geodetic measurements.
Celestial Mechanics and Dynamical Astronomy, 100:231–249, doi:10.1007/s10569-008-9117-x.
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- Yamamoto, Keiko, Fukuda, Yoichi, Doi, Koichiro, and Motoyama, Hideaki, 2008. Interpretation of the GRACE-derived mass trend
in Enderby Land, Antarctica. Polar Science, 2(4):267–276, doi:10.1016/j.polar.2008.10.001.
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- Yirdaw, S. Z., Snelgrove, K. R., and Agboma, C. O., 2008. GRACE satellite observations of terrestrial moisture
changes for drought characterization in the Canadian Prairie. Journal of Hydrology, 356:84–92, doi:10.1016/j.jhydrol.2008.04.004.
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- Zaitchik, B. F., Rodell, M., and Reichle, R. H., 2008. Assimilation of GRACE terrestrial water storage data into a land surface
model: results for the Mississippi River Basin. Journal of Hydrometeorology, 9:535–548, doi:10.1175/2007JHM951.1.
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- Zeng, N., Yoon, J.-H., Mariotti, A., and Swenson, S., 2008. Variability of Basin-Scale Terrestrial Water Storage from a PER
Water Budget Method: The Amazon and the Mississippi. Journal of Climate, 21:248–+, doi:10.1175/2007JCLI1639.1.
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- Zheng, W., Shao, C. G., Luo, J., and Xu, H. Z., 2008. Improving the accuracy of GRACE Earth's gravitational field
using the combination of different inclinations. Progress in Natural Science, 18:555–561.
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- Zheng, W., Xu, H.-Z., Zhong, M., and Yun, M.-J., 2008. Physical Explanation on Designing Three Axes as Different Resolution
Indexes from GRACE Satellite-Borne Accelerometer. Chinese Physics Letters, 25:4482–4485, doi:10.1088/0256-307X/25/12/084.
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- Ziebart, M. K., Iliffe, J. C., Forsberg, R., and Strykowski, G., 2008. Convergence of the UK OSGM05 GRACE-based
geoid and the UK fundamental benchmark network. Journal of Geophysical Research (Solid Earth), 113(B12):12401–+,
doi:10.1029/2007JB004959.
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- Bock, H., Jäggi, A., Švehla, D., Beutler, G., Hugentobler, U., and Visser, P., 2007. Precise orbit determination
for the GOCE satellite using GPS. Advances in Space Research, 39:1638–1647, doi:10.1016/j.asr.2007.02.053.
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- Borghi, A., Carrion, D., and Sona, G., 2007. Validation and fusion of different databases in preparation of high-resolution
geoid determination. Geophysical Journal International, 171:539–549, doi:10.1111/j.1365-246X.2007.03541.x.
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- Bruinsma, S. L. and Forbes, J. M., 2007. Storm-Time Equatorial Density Enhancements Observed by CHAMP and GRACE.
Journal of Spacecraft and Rockets, 44:1154–1159, doi:10.2514/1.28134.
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- Burke, W. J., Huang, C. Y., Marcos, F. A., and Wise, J. O., 2007. Interplanetary control of thermospheric
densities during large magnetic storms. Journal of Atmospheric and Solar-Terrestrial Physics, 69:279–287, doi:10.1016/j.jastp.2006.05.027.
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- Chambers, D. P., Tamisiea, M. E., Nerem, R. S., and Ries, J. C., 2007. Effects of ice melting on GRACE
observations of ocean mass trends. Geophysical Research Letters, 34:5610–+, doi:10.1029/2006GL029171.
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- Chen, J. L., Wilson, C. R., Famiglietti, J. S., and Rodell, M., 2007. Attenuation effect on seasonal basin-scale
water storage changes from GRACE time-variable gravity. Journal of Geodesy, 81:237–245, doi:10.1007/s00190-006-0104-2.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., and Grand, S., 2007. GRACE detects coseismic and postseismic deformation
from the Sumatra-Andaman earthquake. Geophysical Research Letters, 34:13302–+, doi:10.1029/2007GL030356.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Blankenship, D. D., and Ivins, E. R., 2007. Patagonia
Icefield melting observed by Gravity Recovery and Climate Experiment (GRACE). Geophysical Research Letters, 34:22501–+,
doi:10.1029/2007GL031871.
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- Chen, J. and Wang, J., 2007. Reduced-Dynamic Precise Orbit Determination for Low Earth Orbiters Based on Helmert Transformation.
Artificial Satellites, 42:155–165, doi:10.2478/v10018-0008-008-x.
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- Chen, Y., Recovery of terrestrial water storage change from low-low satellite-to-satellite tracking. Ph.D. Thesis, The Ohio
State University, 2007.
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- Ciufolini, I., 2007. Dragging of inertial frames. Nature, 449:41–47, doi:10.1038/nature06071.
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- Clarke, P. J., Lavallée, D. A., Blewitt, G., and van Dam, T., 2007. Basis functions for the consistent and
accurate representation of surface mass loading. Geophysical Journal International, 171:1–10, doi:10.1111/j.1365-246X.2007.03493.x.
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- Cromwell, D., Shaw, A. G. P., Challenor, P., Houseago-Stokes, R. E., and Tokmakian, R., 2007. Towards measuring
the meridional overturning circulation from space. Ocean Science, 3:223–228, doi:10.5194/os-3-223-2007.
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- Ditmar, P., Klees, R., and Liu, X., 2007. Frequency-dependent data weighting in global gravity field modeling from satellite
data contaminated by non-stationary noise. Journal of Geodesy, 81:81–96, doi:10.1007/s00190-006-0074-4.
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- Dobslaw, H. and Thomas, M., 2007. Impact of river run-off on global ocean mass redistribution. Geophysical Journal International,
168:527–532, doi:10.1111/j.1365-246X.2006.03247.x.
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- Dobslaw, H. and Thomas, M., 2007. Simulation and observation of global ocean mass anomalies. Journal of Geophysical Research
(Oceans), 112(C11):5040–+, doi:10.1029/2006JC004035.
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- Ellmann, A. and Van\'ıcek, P., 2007. UNB application of Stokes Helmert's approach to geoid computation. Journal of
Geodynamics, 43:200–213, doi:10.1016/j.jog.2006.09.019.
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- Featherstone, W. E., 2007. Augmentation of AUSGeoid98 with GRACE satellite gravity data. Journal of spatial science,
52:75–86.
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- Fengler, M. J., Freeden, W., Kohlhaas, A., Michel, V., and Peters, T., 2007. Wavelet Modeling of Regional and Temporal
Variations of the Earth's Gravitational Potential Observed by GRACE. Journal of Geodesy, 81:5–15, doi:10.1007/s00190-006-0040-1.
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- Fenoglio-Marc, L., Kusche, J., Becker, M., and Fukumori, I., 2007. Comment on ``On the steric and mass-induced contributions
to the annual sea level variations in the Mediterranean Sea'' by David Garc\'ıa et al.. Journal of Geophysical Research
(Oceans), 112(C11):12018–+, doi:10.1029/2007JC004196.
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- Fiedler, K. and Döll, P., 2007. Global modelling of continental water storage changes - sensitivity to different climate
data sets. Advances in Geosciences, 11:63–68, doi:10.5194/adgeo-11-63-2007.
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- Garc\'ıa, D., Chao, B. F., Del R\'ıo, J., Vigo, I., and Garc\'ıa-Lafuente, J., 2007. Reply to comment
by L. Fenoglio-Marc et al. on ``On the steric and mass-induced contributions to the annual sea level variations in the Mediterranean
Sea''. Journal of Geophysical Research (Oceans), 112(C11):12019–+, doi:10.1029/2007JC004465.
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- Garc\'ıa, D., Ramillien, G., Lombard, A., and Cazenave, A., 2007. Steric Sea-level Variations Inferred from Combined
Topex/Poseidon Altimetry and GRACE Gravimetry. Pure and Applied Geophysics, 164:721–731, doi:10.1007/s00024-007-0182-y.
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- Gooding, R. H., Wagner, C. A., Klokocn\'ık, J., Kostelecký, J., and Gruber, C., 2007. CHAMP and GRACE
resonances, and the gravity field of the Earth. Advances in Space Research, 39:1604–1611, doi:10.1016/j.asr.2007.02.086.
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- Güntner, A., Schmidt, R., and Döll, P., 2007. Supporting large-scale hydrogeological monitoring and modelling by
time-variable gravity data. Hydrogeology Journal, 15:167–170, doi:10.1007/s10040-006-0089-1.
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- Güntner, A., Stuck, J., Werth, S., Döll, P., Verzano, K., and Merz, B., 2007. A global analysis of temporal and
spatial variations in continental water storage. Water Resources Research, 43:5416–+, doi:10.1029/2006WR005247.
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- Han, S.-C., Ray, R. D., and Luthcke, S. B., 2007. Ocean tidal solutions in Antarctica from GRACE inter-satellite
tracking data. Geophysical Research Letters, 34:21607–+, doi:10.1029/2007GL031540.
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- Hancock, C. M. and Moore, P., 2007. On the usefulness of atmospheric and oceanic angular momentum in recovering polar
motion and gravity field variations in a unified process. Advances in Space Research, 39:1648–1655, doi:10.1016/j.asr.2007.02.051.
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- Healy, S. B., Wickert, J., Michalak, G., Schmidt, T., and Beyerle, G., 2007. Combined forecast impact of GRACE-A and
CHAMP GPS radio occultation bending angle profiles. Atmospheric Science Letters, 8:43–50, doi:10.1002/asl.149.
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- Horwath, M., Zur Ermittlung geophysikalischer Massensignale mit Schwerefeldmissionen: Eine Analyse des gegenwärtigen
Standes am Beispiel der Antarktis. Ph.D. Thesis, Technical University of Dresden, Germany, 2007.
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- Iorio, L., 2007. An assessment of the measurement of the Lense Thirring effect in the Earth gravity field, in reply to: ``On
the measurement of the Lense Thirring effect using the nodes of the LAGEOS satellites, in reply to ``On the reliability of
the so far performed tests for measuring the Lense Thirring effect with the LAGEOS satellites'' by L. Iorio,'' by I. Ciufolini
and E. Pavlis. Planetary and Space Science, 55:503–511, doi:10.1016/j.pss.2006.08.001.
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- Jäggi, A., Hugentobler, U., Bock, H., and Beutler, G., 2007. Precise orbit determination for GRACE using undifferenced
or doubly differenced GPS data. Advances in Space Research, 39:1612–1619, doi:10.1016/j.asr.2007.03.012.
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- Kang, Z., Tapley, B., Ries, J., Bettadpur, S., and Nagel, P., 2007. Impact of GPS satellite antenna offsets on GPS-based precise
orbit determination. Advances in Space Research, 39:1524–1530, doi:10.1016/j.asr.2006.11.003.
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- Klees, R., Zapreeva, E. A., Winsemius, H. C., and Savenije, H. H. G., 2007. The bias in GRACE estimates
of continental water storage variations. Hydrology and Earth System Sciences, 11:1227–1241, doi:10.5194/hess-11-1227-2007.
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- Klemann, V., Ivins, E. R., Martinec, Z., and Wolf, D., 2007. Models of active glacial isostasy roofing warm subduction:
Case of the South Patagonian Ice Field. Journal of Geophysical Research (Solid Earth), 112(B11):9405–+, doi:10.1029/2006JB004818.
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- Kohler, J., James, T. D., Murray, T., Nuth, C., Brandt, O., Barrand, N. E., Aas, H. F., and Luckman, A., 2007.
Acceleration in thinning rate on western Svalbard glaciers. Geophysical Research Letters, 34:18502–+, doi:10.1029/2007GL030681.
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- Kusche, J., 2007. Approximate decorrelation and non-isotropic smoothing of time-variable GRACE-type gravity field models.
Journal of Geodesy, 81:733–749, doi:10.1007/s00190-007-0143-3.
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- Larson, K. M., Ashby, N., Hackman, C., and Bertiger, W., 2007. An assessment of relativistic effects for low Earth orbiters:
the GRACE satellites. Metrologia, 44:484–490, doi:10.1088/0026-1394/44/6/007.
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- Lejba, P., Schillak, S., and Wnuk, E., 2007. Determination of orbits and SLR stations\rsquo coordinates on the basis of laser
observations of the satellites Starlette and Stella. Advances in Space Research, 40:143–149, doi:10.1016/j.asr.2007.01.067.
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- Lemoine, J.-M., Bruinsma, S., Loyer, S., Biancale, R., Marty, J.-C., Perosanz, F., and Balmino, G., 2007. Temporal gravity
field models inferred from GRACE data. Advances in Space Research, 39:1620–1629, doi:10.1016/j.asr.2007.03.062.
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- Llubes, M., Lemoine, J.-M., and Rémy, F., 2007. Antarctica seasonal mass variations detected by GRACE. Earth and
Planetary Science Letters, 260:127–136, doi:10.1016/j.epsl.2007.05.022.
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- Lombard, A., Garcia, D., Ramillien, G., Cazenave, A., Biancale, R., Lemoine, J. M., Flechtner, F., Schmidt, R., and Ishii,
M., 2007. Estimation of steric sea level variations from combined GRACE and Jason-1 data. Earth and Planetary Science Letters,
254:194–202, doi:10.1016/j.epsl.2006.11.035.
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- Mayer-Gürr, T., 2007. Ein GRACE-Gravitationsfeld berechnet aus der Analyse kurzer Bahnbögen - Die Bonner Lösung
ITG-Grace02s (in german). Zeitschrift für Vermessungswesen, 132:285–291.
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- Merry, C. L., 2007. Evaluation of global geopotential models in determining the quasi-geoid for Southern Africa. Survey
Review, 39:180–192.
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- Morison, J., Wahr, J., Kwok, R., and Peralta-Ferriz, C., 2007. Recent trends in Arctic Ocean mass distribution revealed by
GRACE. Geophysical Research Letters, 34:7602–+, doi:10.1029/2006GL029016.
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- Müller, J., Neumann-Redlin, M., Jarecki, F., Denker, H., and Gitlein, O., 2007. Gravity Changes in Northern Europe as
Observed by GRACE. In Tregoning, P. and Rizos, Chr. (editors), Dynamic Planet, IAG Symposium 130, ISBN 3-540-49349-5,
pp. 523–527, Springer, Berlin.
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- Munekane, H., 2007. Ocean mass variations from GRACE and tsunami gauges. Journal of Geophysical Research (Solid Earth),
112(B11):7403–+, doi:10.1029/2006JB004618.
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- Nastula, J., Ponte, R. M., and Salstein, D. A., 2007. Comparison of polar motion excitation series derived from
GRACE and from analyses of geophysical fluids. Geophysical Research Letters, 34:11306–+, doi:10.1029/2006GL028983.
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- Ngo-Duc, T., Laval, K., Ramillien, G., Polcher, J., and Cazenave, A., 2007. Validation of the land water storage simulated
by Organising Carbon and Hydrology in Dynamic Ecosystems (ORCHIDEE) with Gravity Recovery and Climate Experiment (GRACE) data.
Water Resources Research, 43:4427–+, doi:10.1029/2006WR004941.
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- Niu, G.-Y., Seo, K.-W., Yang, Z.-L., Wilson, C., Su, H., Chen, J., and Rodell, M., 2007. Retrieving snow mass from GRACE terrestrial
water storage change with a land surface model. Geophysical Research Letters, 34:15704–+, doi:10.1029/2007GL030413.
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- Niu, G.-Y., Yang, Z.-L., Dickinson, R. E., Gulden, L. E., and Su, H., 2007. Development of a simple groundwater
model for use in climate models and evaluation with Gravity Recovery and Climate Experiment data. Journal of Geophysical
Research (Atmospheres), 112(D11):7103–+, doi:10.1029/2006JD007522.
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- Novák, P., 2007. Integral inversion of SST data of type GRACE. Studia Geophysica et Geodaetica, 51(3):351–367,
doi:10.1007/s11200-007-0020-9.
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- Ogawa, R. and Heki, K., 2007. Slow postseismic recovery of geoid depression formed by the 2004 Sumatra-Andaman Earthquake
by mantle water diffusion. Geophysical Research Letters, 34:6313–+, doi:10.1029/2007GL029340.
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- Panet, I., Mikhailov, V., Diament, M., Pollitz, F., King, G., de Viron, O., Holschneider, M., Biancale, R., and Lemoine, J.-M.,
2007. Coseismic and post-seismic signatures of the Sumatra 2004 December and 2005 March earthquakes in GRACE satellite gravity.
Geophysical Journal International, 171:177–190, doi:10.1111/j.1365-246X.2007.03525.x.
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- Paulson, A., Zhong, S., and Wahr, J., 2007. Inference of mantle viscosity from GRACE and relative sea level data. Geophysical
Journal International, 171:497–508, doi:10.1111/j.1365-246X.2007.03556.x.
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- Paulson, A., Zhong, S., and Wahr, J., 2007. Limitations on the inversion for mantle viscosity from postglacial rebound. Geophysical
Journal International, 168:1195–1209, doi:10.1111/j.1365-246X.2006.03222.x.
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- Peng, D. J. and Wu, B., 2007. Zero-difference and single-difference precise orbit determination for LEO using GPS. Chinese
Science Bulletin, 52:2024–2030.
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- Pérez-Gussinyé, M., Lowry, A. R., and Watts, A. B., 2007. Effective elastic thickness of South America
and its implications for intracontinental deformation. Geochemistry, Geophysics, Geosystems, 8:5009–+, doi:10.1029/2006GC001511.
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- Peters, T., 2007. Atmospheric De-Aliasing Revisited. In Xu, P., Liu, J., and Dermanis, A. (editors), VI Hotine-Marussi
Symposium, IAG Symposium 132, ISBN 978-3-540-74583-9, pp. 67–72, Springer, Berlin.
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- Peters, T., 2007. Modellierung zeitlicher Schwerevariationen und ihre Erfassung mit Methoden der Satellitengravimetrie
(in german), Deutsche Geod. Kommission, Reihe C 606, pp. 132, Bayer. Akademie der Wissenschaften, Munich.
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- Petrovic, S., Schmidt, R., Wünsch, J., Barthelmes, F., Güntner, A., and Rothacher, M., 2007. Towards a characterization
of temporal gravity field variations in GRACE observations and global hydrology models. In Proceed. 1st Int. Symp. Gravity
Field Service, pp. 199–204.
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- Ponte, R. M., Quinn, K. J., Wunsch, C., and Heimbach, P., 2007. A comparison of model and GRACE estimates of the
large-scale seasonal cycle in ocean bottom pressure. Geophysical Research Letters, 34:9603–+, doi:10.1029/2007GL029599.
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- Rangelova, E., van der Wal, W., Braun, A., Sideris, M. G., and Wu, P., 2007. Analysis of Gravity Recovery and Climate
Experiment time-variable mass redistribution signals over North America by means of principal component analysis. Journal
of Geophysical Research (Earth Surface), 112(F11):3002–+, doi:10.1029/2006JF000615.
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- Rodell, M., Chen, J., Kato, H., Famiglietti, J. S., Nigro, J., and Wilson, C. R., 2007. Estimating groundwater storage
changes in the Mississippi River basin (USA) using GRACE. Hydrogeology Journal, 15:159–166, doi:10.1007/s10040-006-0103-7.
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- Sabadini, R., Riva, R. E. M., and Dalla Via, G., 2007. Coseismic rotation changes from the 2004 Sumatra earthquake:
the effects of Earth's compressibility versus earthquake induced topography. Geophysical Journal International, 171:231–243,
doi:10.1111/j.1365-246X.2007.03495.x.
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- Sasgen, I., Martinec, Z., and Fleming, K., 2007. Wiener optimal combination and evaluation of the Gravity Recovery and Climate
Experiment (GRACE) gravity fields over Antarctica. Journal of Geophysical Research (Solid Earth), 112(B11):4401–+,
doi:10.1029/2006JB004605.
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- Sasgen, I., Martinec, Z., and Fleming, K., 2007. Regional ice-mass changes and glacial-isostatic adjustment in Antarctica
from GRACE. Earth and Planetary Science Letters, 264:391–401, doi:10.1016/j.epsl.2007.09.029.
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- Schmidt, R., Flechtner, F., König, R., Meyer, U., Neumayer, K.-H., Reigber, Chr., Rothacher, M., Petrovic, S., Zhu, S.
Y., and Güntner, A., 2007. GRACE Time-Variable Gravity Accuracy Assessment. In Tregoning, P. and Rizos, Chr. (editors),
Dynamic Planet, IAG Symposium 130, ISBN 3-540-49349-5, pp. 237–243, Springer, Berlin.
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- Schmidt, M., Fengler, M., Mayer-Gürr, T., Eicker, A., Kusche, J., Sánchez, L., and Han, S.-C., 2007. Regional
gravity modeling in terms of spherical base functions. Journal of Geodesy, 81:17–38, doi:10.1007/s00190-006-0101-5.
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- Schrama, E. J. O., Wouters, B., and Lavallée, D. A., 2007. Signal and noise in Gravity Recovery and
Climate Experiment (GRACE) observed surface mass variations. Journal of Geophysical Research (Solid Earth), 112(B11):8407–+,
doi:10.1029/2006JB004882.
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- Schrama, E. J. O. and Visser, P. N. A. M., 2007. Accuracy assessment of the monthly GRACE geoids
based upon a simulation. Journal of Geodesy, 81:67–80, doi:10.1007/s00190-006-0085-1.
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- Shin, Y. H., Xu, H., Braitenberg, C., Fang, J., and Wang, Y., 2007. Moho undulations beneath Tibet from GRACE-integrated
gravity data. Geophysical Journal International, 170:971–985, doi:10.1111/j.1365-246X.2007.03457.x.
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- Stammer, D., Köhl, A., and Wunsch, C., 2007. Impact of Accurate Geoid Fields on Estimates of the Ocean Circulation. Journal
of Atmospheric and Oceanic Technology, 24:1464–+, doi:10.1175/JTECH2044.1.
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- Steiner, A. K., Kirchengast, G., Borsche, M., Foelsche, U., and Schoengassner, T., 2007. A multi-year comparison of lower
stratospheric temperatures from CHAMP radio occultation data with MSU/AMSU records. Journal of Geophysical Research (Atmospheres),
112(D11):22110–+, doi:10.1029/2006JD008283.
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- Strassberg, G., Scanlon, B. R., and Rodell, M., 2007. Comparison of seasonal terrestrial water storage variations from
GRACE with groundwater-level measurements from the High Plains Aquifer (USA). Geophysical Research Letters, 34:14402–+,
doi:10.1029/2007GL030139.
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- Swenson, S. and Wahr, J., 2007. Multi-sensor analysis of water storage variations of the Caspian Sea. Geophysical Research
Letters, 34:16401–+, doi:10.1029/2007GL030733.
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- Syed, T. H., Famiglietti, J. S., Zlotnicki, V., and Rodell, M., 2007. Contemporary estimates of Pan-Arctic freshwater
discharge from GRACE and reanalysis. Geophysical Research Letters, 34:19404–+, doi:10.1029/2007GL031254.
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- Tamisiea, M. E., Mitrovica, J. X., and Davis, J. L., 2007. GRACE Gravity Data Constrain Ancient Ice Geometries
and Continental Dynamics over Laurentia. Science, 316:881–883, doi:10.1126/science.1137157.
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- Tanaka, Y., Okuno, J., and Okubo, S., 2007. A new method for the computation of global viscoelastic post-seismic deformation
in a realistic earth model (II)-horizontal displacement. Geophysical Journal International, 170:1031–1052, doi:10.1111/j.1365-246X.2007.03486.x.
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- Tassara, A., Swain, C., Hackney, R., and Kirby, J., 2007. Elastic thickness structure of South America estimated using wavelets
and satellite-derived gravity data. Earth and Planetary Science Letters, 253:17–36, doi:10.1016/j.epsl.2006.10.008.
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- van Dam, T., Wahr, J., and Lavallée, D., 2007. A comparison of annual vertical crustal displacements from GPS and Gravity
Recovery and Climate Experiment (GRACE) over Europe. Journal of Geophysical Research (Solid Earth), 112(B11):3404–+,
doi:10.1029/2006JB004335.
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- van den Ijssel, J. and Visser, P., 2007. Performance of GPS-based accelerometry: CHAMP and GRACE. Advances in Space Research,
39:1597–1603, doi:10.1016/j.asr.2006.12.027.
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- Vianna, M. L., Menezes, V. V., and Chambers, D. P., 2007. A high resolution satellite-only GRACE-based mean
dynamic topography of the South Atlantic Ocean. Geophysical Research Letters, 34:24604–+, doi:10.1029/2007GL031912.
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- Vossepoel, F. C., 2007. Uncertainties in the mean ocean dynamic topography before the launch of the Gravity Field and
Steady-State Ocean Circulation Explorer (GOCE). Journal of Geophysical Research (Oceans), 112(C11):5010–+, doi:10.1029/2006JC003891.
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- Wang, H. S., Wang, Z. Y., Yuan, X. D., Wu, P., and Rangelova, E., 2007. Water storage changes in Three Gorges
water systems area inferred from GRACE time-variable gravity data. Chinese Journal of Geophysics - Chinese Edition,
50:730–736.
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- Wickert, J., Gendt, G., Beyerle, G., Dick, G., Heise, S., Helm, A., Reigber, C., Schmidt, T., Jakowski, N., and Jacobi, C.,
2007. Ground and space based GPS atmospheric sounding: brief overview and examples. In Intl. Meeting Tropical Radar Network
Tirupati, India, pp. 1–10, NARL Publication.
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- Willis, P., 2007. Analysis of a possible future degradation in the DORIS geodetic results related to changes in the satellite
constellation. Advances in Space Research, 39:1582–1588, doi:10.1016/j.asr.2006.11.018.
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- Wouters, B. and Schrama, E. J. O., 2007. Improved accuracy of GRACE gravity solutions through empirical orthogonal
function filtering of spherical harmonics. Geophysical Research Letters, 34:23711–+, doi:10.1029/2007GL032098.
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- Wunsch, C. and Heimbach, P., 2007. Practical global oceanic state estimation. Physica D Nonlinear Phenomena, 230:197–208,
doi:10.1016/j.physd.2006.09.040.
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- Yamamoto, K., Fukuda, Y., Nakaegawa, T., and Nishijima, J., 2007. Landwater variation in four major river basins of the Indochina
peninsula as revealed by GRACE. Earth, Planets and Space, 59:193–200, doi:10.1186/BF03353095.
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- Zenner, L., 2007. Analyse und Vergleich verschiedener Schwerefeldlösungen (in german). Zeitschrift für Vermessungswesen,
132:147–157.
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- Zhang, Z. Z., Lu, Y., and Xsu, H. Z., 2007. Maximum entropy spectral analysis and wavelet coherence analysis of
the dynamic ellipticity ot the Earth from GRACE and SLR measurements. Chinese Journal of Geophysics - Chinese Edition,
50:1383–1389.
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- Zhang, Z. Z., Lu, Y., and Xsu, H. Z., 2007. Detecting surface geostrophic currents using wavelet filter from satellite
geodesy. Science in China Series D - Earth Sciences, 50:918–926.
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- Zhou, J. C. and Sun, H. P., 2007. Effect of ocean tide on recovery of satellite gravity field. Chinese Journal
of Geophysics - Chinese Edition, 50:115–121.
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- Zlotnicki, V., Wahr, J., Fukumori, I., and Song, Y. T., 2007. Antarctic Circumpolar Current Transport Variability during
2003–05 from GRACE. Journal of Physical Oceanography, 37:230–+, doi:10.1175/JPO3009.1.
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- Beyerle, G., Heise, S., Kaschenz, J., König-Langlo, G., Reigber, Ch., Schmidt, T., and Wickert, J., 2006. Refractivity
biases in GNSS occultation data. In Foelsche, U., Kirchengast, G., and Steiner, A. (editors), Atmosphere and Climate: Studies
by Occultation Methods, pp. 37–43, Springer, Berlin Heidelberg New York.
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- Biancale, R. and Bode, A., 2006. Mean annual and seasonal atmospheric tide models based on 3-hourly and 6-hourly ECMWF
surface pressure data, Scientific Technical Report STR06/01, Geoforschungszentrum Potsdam, Potsdam.
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- Bingham, R. J. and Hughes, C. W., 2006. Observing seasonal bottom pressure variability in the North Pacific with
GRACE. Geophysical Research Letters, 33:8607–+, doi:10.1029/2005GL025489.
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- Bingham, Rory J. and Haines, Keith, 2006. Mean dynamic topography: intercomparisons and errors. Philosophical Transactions
of the Royal Society of London Series A, 364(1841):903–916, doi:10.1098/rsta.2006.1745.
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- Bruinsma, S., Forbes, J. M., Nerem, R. S., and Zhang, X., 2006. Thermosphere density response to the 20-21 November
2003 solar and geomagnetic storm from CHAMP and GRACE accelerometer data. Journal of Geophysical Research (Space Physics),
111(A10):6303–+, doi:10.1029/2005JA011284.
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- Castruccio, F., Verron, J., Gourdeau, L., Brankart, J. M., and Brasseur, P., 2006. On the role of the GRACE mission in
the joint assimilation of altimetric and TAO data in a tropical Pacific Ocean model. Geophysical Research Letters,
33:14616–+, doi:10.1029/2006GL025823.
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- Chambers, D. P., 2006. Observing seasonal steric sea level variations with GRACE and satellite altimetry. Journal
of Geophysical Research (Oceans), 111(C10):3010–+, doi:10.1029/2005JC002914.
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- Chambers, D. P., 2006. Evaluation of new GRACE time-variable gravity data over the ocean. Geophysical Research Letters,
33:17603–+, doi:10.1029/2006GL027296.
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- Chen, J. L., Wilson, C. R., and Seo, K.-W., 2006. Optimized smoothing of Gravity Recovery and Climate Experiment
(GRACE) time-variable gravity observations. Journal of Geophysical Research (Solid Earth), 111(B10):6408–+, doi:10.1029/2005JB004064.
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- Chen, J. L., Tapley, B. D., and Wilson, C. R., 2006. Alaskan mountain glacial melting observed by satellite
gravimetry. Earth and Planetary Science Letters, 248:368–378, doi:10.1016/j.epsl.2006.05.039.
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- Chen, J. L., Wilson, C. R., Blankenship, D. D., and Tapley, B. D., 2006. Antarctic mass rates from GRACE.
Geophysical Research Letters, 33:11502–+, doi:10.1029/2006GL026369.
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- Chen, J. L., Wilson, C. R., and Tapley, B. D., 2006. Satellite Gravity Measurements Confirm Accelerated Melting of Greenland
Ice Sheet. Science, 313:1958–1960, doi:10.1126/science.1129007.
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- Cheng, L. Y. and Xsu, H. Z., 2006. The rotation of the gravity potential on the Earth's gravity field recovery.
Chinese Journal of Geophysics - Chinese Edition, 49:93–98.
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- Choi, Sungchan, Oh, Chang-Whan, and Luehr, Herrmann, 2006. Tectonic relation between northeastern China and the Korean peninsula
revealed by interpretation of GRACE satellite gravity data. Gondwana Research, 9(1-2):62–67, doi:10.1016/j.gr.2005.06.002.
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- Ciufolini, I., Pavlis, E. C., and Peron, R., 2006. Determination of frame-dragging using Earth gravity models from CHAMP
and GRACE. New Astronomy, 11:527–550, doi:10.1016/j.newast.2006.02.001.
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- Crowley, J. W., Mitrovica, J. X., Bailey, R. C., Tamisiea, M. E., and Davis, J. L., 2006. Land water
storage within the Congo Basin inferred from GRACE satellite gravity data. Geophysical Research Letters, 33:19402–+,
doi:10.1029/2006GL027070.
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- de Viron, O., Panet, I., and Diament, M., 2006. Extracting low frequency climate signal from GRACE data. eEarth, 1:9–14,
doi:10.5194/ee-1-9-2006.
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- Desai, S. D. and Yuan, D.-N., 2006. Application of the convolution formalism to the ocean tide potential: Results from
the Gravity Recovery and Climate Experiment (GRACE). Journal of Geophysical Research (Oceans), 111(C10):6023–+,
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- Fengler, M. J., Michel, D., and Michel, V., 2006. Harmonic spline-wavelets on the 3-dimensional ball and their application
to the reconstruction of the Earth's density distribution from gravitational data at arbitrarily shaped satellite orbits.
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- Fenoglio-Marc, L., Kusche, J., and Becker, M., 2006. Mass variation in the Mediterranean Sea from GRACE and its validation
by altimetry, steric and hydrologic fields. Geophysical Research Letters, 33:19606–+, doi:10.1029/2006GL026851.
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- Flechtner, F., Schmidt, R., and Meyer, U., 2006. De-aliasing of Short-term Atmospheric and Oceanic Mass Variations for GRACE.
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- Flury, J. and Rummel, R. (editors), 2006. Future Satellite Gravimetry and Earth Dynamics, ISBN 0-387-29796-0, pp. 166,
Springer, Berlin.
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- Flury, J., Rummel, R., Reigber, C., Rothacher, M., Boedecker, G., and Schreiber, U. (editors), 2006. Observation of the
Earth System from Space, ISBN 3-540-29520-8, pp. 494, Springer, Berlin.
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- Flury, J., 2006. Short-wavelength Spectral Properties of the Gravity Field from a Range of Regional Data Sets. Journal
of Geodesy, 79:624–640, doi:10.1007/s00190-005-0011-y.
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mass derived from the GRACE gravimetry mission (2002-2004). Geophysical Research Letters, 33:2501–+, doi:10.1029/2005GL024778.
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and mass-induced contributions to the annual sea level variations in the Mediterranean Sea. Journal of Geophysical Research
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- Hwang, C. and Kao, Y.-C., 2006. Spherical harmonic analysis and synthesis using FFT: Application to temporal gravity variation.
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- Iorio, L., 2006. The impact of the new Earth gravity model EIGEN-CG03C on the measurement of the Lense-Thirring effect with
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- Iorio, L., 2006. A Critical Analysis of a Recent Test of the Lense-Thirring Effect with the LAGEOS Satellites. Journal
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- Jayne, S. R., 2006. Circulation of the North Atlantic Ocean from altimetry and the Gravity Recovery and Climate Experiment
geoid. Journal of Geophysical Research (Oceans), 111(C10):3005–+, doi:10.1029/2005JC003128.
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- Kiamehr, R. and Sjöberg, L. E., 2006. Impact of a precise geoid model in studying tectonic structures—A case
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- Kiamehr, R., 2006. A strategy for determining the regional geoid by combining limited ground data with satellite-based global
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- Meyer, U., 2006. Möglichkeiten und Grenzen der Hill-Gleichungen für die Schwerefeldbestimmung, Scientific
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- Niu, G.-Y. and Yang, Z.-L., 2006. Effects of Frozen Soil on Snowmelt Runoff and Soil Water Storage at a Continental Scale.
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- Ray, R. D. and Luthcke, S. B., 2006. Tide model errors and GRACE gravimetry: towards a more realistic assessment.
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- Sasgen, I., Martinec, Z., and Fleming, K., 2006. Wiener Optimal Filtering of GRACE Data. Studia Geophys. Geod., 50:499–508,
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- Seo, K.-W., Wilson, C. R., Famiglietti, J. S., Chen, J. L., and Rodell, M., 2006. Terrestrial water mass load
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- St. Rock, B., Blandino, J., and Demetriou, M., 2006. Propulsion Requirements for Drag-Free Operation of Spacecraft in
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- Sutton, E. K., Forbes, J. M., Nerem, R. S., and Woods, T. N., 2006. Neutral density response to the solar
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- Swenson, S. C. and Milly, P. C. D., 2006. Climate model biases in seasonality of continental water storage
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- Swenson, S. and Wahr, J., 2006. Post-processing removal of correlated errors in GRACE data. Geophysical Research Letters,
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- Swenson, S. and Wahr, J., 2006. Estimating Large-Scale Precipitation Minus Evapotranspiration from GRACE Satellite Gravity
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- Winsemius, H. C., Savenije, H. H. G., Gerrits, A. M. J., Zapreeva, E. A., and Klees, R., 2006.
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over the upper Zambezi. Water Resources Research, 42:12201–+, doi:10.1029/2006WR005192.
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- Wu, X., Heflin, M. B., Ivins, E. R., and Fukumori, I., 2006. Seasonal and interannual global surface mass variations
from multisatellite geodetic data. Journal of Geophysical Research (Solid Earth), 111(B10):9401–+, doi:10.1029/2005JB004100.
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- Yeh, P. J.-F., Swenson, S. C., Famiglietti, J. S., and Rodell, M., 2006. Remote sensing of groundwater storage
changes in Illinois using the Gravity Recovery and Climate Experiment (GRACE). Water Resources Research, 42:12203–+,
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- Zhong, M., Yan, H., Wu, X., Duan, J., and Zhu, Y., 2006. Non-tidal oceanic contribution to polar wobble estimated from two
oceanic assimilation data sets. Journal of Geodynamics, 41:147–154, doi:10.1016/j.jog.2005.10.011.
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- Zhou, X. H., Hsu, H., Wu, B., Peng, B. B., and Lu, Y., 2006. Earth's gravity field derived from GRACE satellite
tracking data. Chinese Journal of Geophysics - Chinese Edition, 49:718–723.
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- Zhou, X. H., Wu, B., Peng, B. B., and Xsu, H. Z., 2006. Detection of global water storage variation using GRACE.
Chinese Journal of Geophysics - Chinese Edition, 49:1644–1650.
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- Andersen, O. B., Seneviratne, S. I., Hinderer, J., and Viterbo, P., 2005. GRACE-derived terrestrial water storage
depletion associated with the 2003 European heat wave. Geophysical Research Letters, 32:18405–+, doi:10.1029/2005GL023574.
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- Andersen, O. B. and Hinderer, J., 2005. Global inter-annual gravity changes from GRACE: Early results. Geophysical
Research Letters, 32:1402–+, doi:10.1029/2004GL020948.
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- Bao, L. F., Piatanesi, A., Lu, Y., Hsu, H. T., and Zhou, X. H., 2005. Sumatra Tsunami Affects Observations
by GRACE Satellites. EOS Transactions, 86:353–356, doi:10.1029/2005EO390002.
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- Beutler, G., Drewes, H., and Verdun, A., 2005. The Integrated Global Geodetic Observing System (IGGOS) viewed from the perspective
of history. Journal of Geodynamics, 40:414–431, doi:10.1016/j.jog.2005.06.005.
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- Beyerle, G., Schmidt, T., Michalak, G., Heise, S., Wickert, J., and Reigber, C., 2005. GPS radio occultation with GRACE: Atmospheric
profiling utilizing the zero difference technique. Geophysical Research Letters, 32:13806–+, doi:10.1029/2005GL023109.
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- Birol, F., Brankart, J. M., Lemoine, J. M., Brasseur, P., and Verron, J., 2005. Assimilation of satellite altimetry
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- Bourda, G., 2005. Length of day and polar motion, with respect to temporal variations of the Earth gravity field. In Casoli,
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- Boy, J.-P. and Chao, B. F., 2005. Precise evaluation of atmospheric loading effects on Earth's time-variable gravity
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- Chao, B. F., 2005. On inversion for mass distribution from global (time-variable) gravity field. Journal of Geodynamics,
39:223–230, doi:10.1016/j.jog.2004.11.001.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Famiglietti, J. S., and Rodell, M., 2005. Seasonal global mean
sea level change from satellite altimeter, GRACE, and geophysical models. Journal of Geodesy, 79:532–539, doi:10.1007/s00190-005-0005-9.
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- Chen, J. L., Wilson, C. R., Famiglietti, J. S., and Rodell, M., 2005. Spatial sensitivity of the Gravity Recovery
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- Chen, J. L., Rodell, M., Wilson, C. R., and Famiglietti, J. S., 2005. Low degree spherical harmonic influences
on Gravity Recovery and Climate Experiment (GRACE) water storage estimates. Geophysical Research Letters, 32:14405–+,
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- Ciufolini, I. and Pavlis, E., 2005. On the measurement of the Lense Thirring effect using the nodes of the LAGEOS satellites,
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- Crossley, D., Hinderer, J., and Boy, J.-P., 2005. Time variation of the European gravity field from superconducting gravimeters.
Geophysical Journal International, 161:257–264, doi:10.1111/j.1365-246X.2005.02586.x.
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- de Viron, O., Schwarzbaum, G., Lott, F., and Dehant, V., 2005. Diurnal and subdiurnal effects of the atmosphere on the Earth
rotation and geocenter motion. Journal of Geophysical Research (Solid Earth), 110(B9):11404–+, doi:10.1029/2005JB003761.
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- Dobslaw, H. and Thomas, M., 2005. Atmospheric induced oceanic tides from ECMWF forecasts. Geophysical Research Letters,
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- Ellmann, A., 2005. Two deterministic and three stochastic modifications of Stokes's formula: a case study for the Baltic countries.
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- Fleming, K., Martinec, Z., and Wolf, D., 2005. Contemporary changes in the geoid about Greenland: predictions relevant to
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- Forsberg, R. and Skourup, H., 2005. Arctic Ocean gravity, geoid and sea-ice freeboard heights from ICESat and GRACE. Geophysical
Research Letters, 32:21502–+, doi:10.1029/2005GL023711.
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- Freeborn, P., Kinnersley, M., and Zorina, A., 2005. The ROCKOT launch vehicle—the competitive launch solution for small
Earth observation satellites into low Earth orbits. Acta Astronautica, 56:315–325, doi:10.1016/j.actaastro.2004.09.020.
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- Han, S.-C., Shum, C. K., and Matsumoto, K., 2005. GRACE observations of M2 and S2 ocean tides underneath the Filchner-Ronne
and Larsen ice shelves, Antarctica. Geophysical Research Letters, 32:20311–+, doi:10.1029/2005GL024296.
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- Han, S.-C., Shum, C. K., Jekeli, C., Kuo, C.-Y., Wilson, C., and Seo, K.-W., 2005. Non-isotropic filtering of GRACE temporal
gravity for geophysical signal enhancement. Geophysical Journal International, 163:18–25, doi:10.1111/j.1365-246X.2005.02756.x.
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- Han, S.-C., Shum, C. K., Jekeli, C., and Alsdorf, D., 2005. Improved estimation of terrestrial water storage changes
from GRACE. Geophysical Research Letters, 32:7302–+, doi:10.1029/2005GL022382.
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- Han, S. C., Shum, C. K., and Braun, A., 2005. High-resolution continental water storage recovery from low-low satellite-to-satellite
tracking. Journal of Geodynamics, 39:11–28, doi:10.1016/j.jog.2004.08.002.
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- Iorio, L., 2005. The impact of the new Earth gravity models on the measurement of the Lense Thirring effect with a new satellite.
New Astronomy, 10:616–635, doi:10.1016/j.newast.2005.02.006.
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- Iorio, L. and Doornbos, E., 2005. How to reach a few percent level in determining the Lense Thirring effect?. General Relativity
and Gravitation, 37:1059–1074, doi:10.1007/s10714-005-0091-2.
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- Iorio, L., 2005. The impact of the new CHAMP and GRACE Earth gravity models on the measurement of the general relativistic
Lense-Thirring effect with the LAGEOS and LAGEOS II satellites. In Ch. Reigber, H. Luehr, P. Schwintzer, and J. Wickert (editors),
Earth observation with CHAMP: Results from Three Years in Orbit, pp. 187–192, Springer Verlag.
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- Iorio, L., 2005. On the reliability of the so-far performed tests for measuring the Lense Thirring effect with the LAGEOS
satellites. New Astronomy, 10:603–615, doi:10.1016/j.newast.2005.01.001.
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- Iorio, L., 2005. On the possibility of testing the Dvali Gabadadze Porrati brane-world scenario with orbital motions in the
Solar System. Journal of Cosmology and Astroparticle Physics, 7:8–+, doi:10.1088/1475-7516/2005/07/008.
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- Ivins, E. R. and James, T. S., 2005. Antarctic glacial isostatic adjustment: A new assessment. Antarctic Science,
17:537–549, doi:10.1017/S0954102005002968.
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- Ivins, E. R., Rignot, E., Wu, X.-P., James, T. S., and Casassa, G., 2005. Ice mass balance and Antarctic gravity
change: Satellite and terrestrial perspectives. In Ch. Reigber, H. Luehr, P. Schwintzer, and J. Wickert (editors), Earth
observation with CHAMP: Results from Three Years in Orbit, pp. 3–12, Springer Verlag.
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- Jekeli, C., Bastos, L., and Fernandes, J. (editors), 2005. Gravity, Geoid and Space Missions, Springer, Berlin.
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- Kaban, M. K. and Reigber, C., 2005. New possibilities for gravity modeling using data of the CHAMP and GRACE satellites.
Izvestiya Physics of the Solid Earth, 41:950–957.
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- Kanzow, T., Flechtner, F., Chave, A., Schmidt, R., Schwintzer, P., and Send, U., 2005. Seasonal variation of ocean bottom
pressure derived from Gravity Recovery and Climate Experiment (GRACE): Local validation and global patterns. Journal of
Geophysical Research (Oceans), 110(C9):9001–+, doi:10.1029/2004JC002772.
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- Keller, W. and Sharifi, M. A., 2005. Satellite gradiometry using a satellite pair. Journal of Geodesy, 78:544–557,
doi:10.1007/s00190-004-0426-x.
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- Kiamehr, R. and Sjoberg, L. E., 2005. Comparison of the qualities of recent global and local gravimetric geoid models
in Iran. Studia Geophysica et Geodaetica, 49(3):289–304, doi:10.1007/s11200-005-0011-7.
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- King, M. A., Penna, N. T., Clarke, P. J., and King, E. C., 2005. Validation of ocean tide models around
Antarctica using onshore GPS and gravity data. Journal of Geophysical Research (Solid Earth), 110(B9):8401–+,
doi:10.1029/2004JB003390.
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- King, M. A. and Padman, L., 2005. Accuracy assessment of ocean tide models around Antarctica. Geophysical Research
Letters, 32:23608–+, doi:10.1029/2005GL023901.
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- König, R., Reigber, C., and Zhu, S. Y., 2005. Dynamic model orbits and Earth system parameters from combined GPS
and LEO data. Advances in Space Research, 36:431–437, doi:10.1016/j.asr.2005.03.064.
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- Kroes, R., Montenbruck, O., Bertiger, W., and Visser, P., 2005. Precise GRACE baseline determination using GPS. GPS Solutions,
9:21–31, doi:10.1007/s10291-004-0123-5.
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- Kusche, J. and Schrama, E. J. O., 2005. Surface mass redistribution inversion from global GPS deformation and Gravity
Recovery and Climate Experiment (GRACE) gravity data. Journal of Geophysical Research (Solid Earth), 110(B9):9409–+,
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- Latychev, K., Mitrovica, J. X., Tamisiea, M. E., Tromp, J., Christara, C. C., and Moucha, R., 2005. GIA-induced
secular variations in the Earth's long wavelength gravity field: Influence of 3-D viscosity variations [rapid communication].
Earth and Planetary Science Letters, 240:322–327, doi:10.1016/j.epsl.2005.10.001.
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- Lucchesi, D. M., 2005. The Impact of the Even Zonal Harmonics Secular Variations on the Lense-Thirring Effect Measurement
with the Two LAGEOS Satellites. International Journal of Modern Physics D, 14:1989–2023, doi:10.1142/S0218271805008169.
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- Marquart, G., Steinberger, B., and Niehuus, K., 2005. On the effect of a low viscosity asthenosphere on the temporal change
of the geoid—A challenge for future gravity missions. Journal of Geodynamics, 39:493–511, doi:10.1016/j.jog.2005.04.006.
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- Mayer-Gürr, T., Ilk, K. H., Eicker, A., and Feuchtinger, M., 2005. ITG-CHAMP01: a CHAMP gravity field model from
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- Mikhailov, V. O., Tikhotsky, S. A., Diament, M., and Panet, I., 2005. Gravity variations of geodynamic origin: Recognition
and study on the basis of modern satelltie gravity data. Izvestiya Physics of the Solid Earth, 41:193–205.
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- Missling, K.-D., Daedelow, H., Maass, H., Richter, J., and Schlage, J., 2005. Multimission raw data center for GRACE. Acta
Astronautica, 56:331–335, doi:10.1016/j.actaastro.2004.09.018.
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- Mitrovica, J. X., Wahr, J., Matsuyama, I., and Paulson, A., 2005. The rotational stability of an ice-age earth. Geophysical
Journal International, 161:491–506, doi:10.1111/j.1365-246X.2005.02609.x.
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- Montenbruck, O., Gill, E., and Kroes, R., 2005. Rapid orbit determination of LEO satellites using IGS clock and ephemeris
products. GPS Solutions, 9:226–235.
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- Ramillien, G., Frappart, F., Cazenave, A., and Güntner, A., 2005. Time variations of land water storage from an inversion
of 2 years of GRACE geoids [rapid communication]. Earth and Planetary Science Letters, 235:283–301, doi:10.1016/j.epsl.2005.04.005.
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- Reigber, C., Schmidt, R., Flechtner, F., König, R., Meyer, U., Neumayer, K. H., Schwintzer, P., and Zhu, S. Y.,
2005. An Earth gravity field model complete to degree and order 150 from GRACE: EIGEN-GRACE02S. Journal of Geodynamics,
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- Rodell, M., Chao, B. F., Au, A. Y., Kimball, J. S., and McDonald, K. C., 2005. Global Biomass Variation
and Its Geodynamic Effects: 1982 98. Earth Interactions, 9(2):1–19, doi:10.1175/EI126.1.
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- Rowlands, D. D., Luthcke, S. B., Klosko, S. M., Lemoine, F. G. R., Chinn, D. S., McCarthy, J. J.,
Cox, C. M., and Anderson, O. B., 2005. Resolving mass flux at high spatial and temporal resolution using GRACE intersatellite
measurements. Geophysical Research Letters, 32:4310–+, doi:10.1029/2004GL021908.
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- Sabadini, R., Dalla Via, G., Hoogland, M., and Aoudia, A., 2005. A Splash in Earth Gravity from the 2004 Sumatra Earthquake.
EOS Transactions, 86:149–153, doi:10.1029/2005EO150001.
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- Schotman, H. H. A. and Vermeersen, L. L. A., 2005. Sensitivity of glacial isostatic adjustment models
with shallow low-viscosity earth layers to the ice-load history in relation to the performance of GOCE and GRACE. Earth
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- Seo, K.-W. and Wilson, C. R., 2005. Simulated estimation of hydrological loads from GRACE. Journal of Geodesy,
78:442–456, doi:10.1007/s00190-004-0410-5.
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- Seo, K.-W., Hydrological applications of Gravity Recovery and Climate Experiment (GRACE). Ph.D. Thesis, The University of
Texas at Austin, 2005.
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- Syed, T. H., Famiglietti, J. S., Chen, J., Rodell, M., Seneviratne, S. I., Viterbo, P., and Wilson, C. R.,
2005. Total basin discharge for the Amazon and Mississippi River basins from GRACE and a land-atmosphere water balance. Geophysical
Research Letters, 32:24404–+, doi:10.1029/2005GL024851.
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- Tamisiea, M. E., Leuliette, E. W., Davis, J. L., and Mitrovica, J. X., 2005. Constraining hydrological
and cryospheric mass flux in southeastern Alaska using space-based gravity measurements. Geophysical Research Letters,
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- Tapley, B., Ries, J., Bettadpur, S., Chambers, D., Cheng, M., Condi, F., Gunter, B., Kang, Z., Nagel, P., Pastor, R., Pekker,
T., Poole, S., and Wang, F., 2005. GGM02 An improved Earth gravity field model from GRACE. Journal of Geodesy, 79:467–478,
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- Thompson, B. F., Spaceborne accelerometry and temporal gravity analysis from the CHAMP satellite mission. Ph.D. Thesis,
University of Colorado at Boulder, 2005.
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- van den Ijssel, J. and Visser, P., 2005. Determination of non-gravitational accelerations from GPS satellite-to-satellite
tracking of CHAMP. Advances in Space Research, 36:418–423, doi:10.1016/j.asr.2005.01.107.
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- Velicogna, I. and Wahr, J., 2005. Greenland mass balance from GRACE. Geophysical Research Letters, 32:18505–+,
doi:10.1029/2005GL023955.
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- Velicogna, I., Wahr, J., Hanna, E., and Huybrechts, P., 2005. Short term mass variability in Greenland, from GRACE. Geophysical
Research Letters, 32:5501–+, doi:10.1029/2004GL021948.
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- Vespe, F. and Rutigliano, P., 2005. The improvement of the Earth gravity field estimation and its benefits in the atmosphere
and fundamental physics. Advances in Space Research, 36:472–485, doi:10.1016/j.asr.2005.04.055.
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- Visser, P. N. A. M., 2005. Low-low satellite-to-satellite tracking: a comparison between analytical linear
orbit perturbation theory and numerical integration. Journal of Geodesy, 79:160–166, doi:10.1007/s00190-005-0455-0.
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- Visser, P. N. A. M., 2005. ERS-2 orbit computations using CHAMP- or GRACE-based gravity field models. Advances
in Space Research, 36:454–459, doi:10.1016/j.asr.2005.04.054.
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- Wickert, J., Beyerle, G., König, R., Heise, S., Grunwaldt, L., Michalak, G., Reigber, C., and Schmidt, T., 2005. GPS
radio occultation with CHAMP and GRACE: A first look at a new and promising satellite configuration for global atmospheric
sounding. Annales Geophysicae, 23:653–658, doi:10.5194/angeo-23-653-2005.
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- Wieczorek, M. A. and Simons, F. J., 2005. Localized spectral analysis on the sphere. Geophysical Journal International,
162:655–675, doi:10.1111/j.1365-246X.2005.02687.x.
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- Wünsch, J., Schwintzer, P., and Petrovic, S., 2005. Comparison of two different ocean tide models especially with
respect to the GRACE satellite mission, Scientific Technical Report STR05/08, Geoforschungszentrum Potsdam, Potsdam.
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- Yamamoto, K., Otsubo, T., Kubo-oka, T., and Fukuda, Y., 2005. A simulation study of effects of GRACE orbit decay on the gravity
field recovery. Earth Planets Space, 57:291–295, doi:10.1186/BF03352565.
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- Zhang, Z. Z. and Lu, Y., 2005. Spectral analysis of quasi-stationary sea surface topography from GRACE mission. Science
in China Series D - Earth Sciences, 48:2040–2048.
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- Zheng, W., Lu, X. L., Hsu, H. T., Shao, C. G., Luo, J., and Wang N. C., 2005. Simulation of the Earth's
gravitational field recovery from GRACE using the energy balance approach. Progress in Natural Science, 15:596–601.
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- Zielinski, J. B., Latka, J. K., and Kuzmicz-Cieslak, M., 2005. Upward continuation of gravity gradients for validation
of the GOCE measurements. Artificial Satellites, 40:229–249.
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- Bourda, G., 2004. Earth Orientation and Temporal Variations of the Gravity Field. In Combes, F., Barret, D., Contini, T.,
Meynadier, F., and Pagani, L. (editors), SF2A-2004: Semaine de l'Astrophysique Francaise, pp. 3–+.
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- Chambers, D. P., Wahr, J., and Nerem, R. S., 2004. Preliminary observations of global ocean mass variations with
GRACE. Geophysical Research Letters, 31:13310–+, doi:10.1029/2004GL020461.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., and Ries, J. C., 2004. Low degree gravitational changes from
GRACE: Validation and interpretation. Geophysical Research Letters, 31:22607–+, doi:10.1029/2004GL021670.
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- Cheng, M. and Tapley, B. D., 2004. Variations in the Earth's oblateness during the past 28 years. Journal of Geophysical
Research (Solid Earth), 109(B18):9402–+, doi:10.1029/2004JB003028.
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- Ciufolini, I. and Pavlis, E. C., 2004. A confirmation of the general relativistic prediction of the Lense-Thirring effect.
Nature, 431:958–960, doi:10.1038/nature03007.
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- Condi, F. and Wunsch, C., 2004. Measuring gravity field variability, the geoid, ocean bottom pressure fluctuations, and their
dynamical implications. Journal of Geophysical Research (Oceans), 109(C18):2013–+, doi:10.1029/2002JC001727.
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- Crossley, D., Hinderer, J., and Boy, J.-P., 2004. Regional gravity variations in Europe from superconducting gravimeters.
Journal of Geodesy, 38:325–342, doi:10.1016/j.jog.2004.07.014.
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- Davis, J. L., Elósegui, P., Mitrovica, J. X., and Tamisiea, M. E., 2004. Climate-driven deformation
of the solid Earth from GRACE and GPS. Geophysical Research Letters, 31:24605–+, doi:10.1029/2004GL021435.
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- Dobslaw, H., Schwintzer, P., Barthelmes, F., Flechtner, F., Reigber, Chr., Schmidt, R., Schoene, T., and Wiehl, M., 2004.
Geostrophic ocean surface velocities from TOPEX altimetry, and CHAMP and GRACE satellite gravity models, Scientific
Technical Report STR04/07, Geoforschungszentrum Potsdam, Potsdam.
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- Famiglietti, J. S., 2004. Remote sensing of terrestrial water storage, soil moisture and surface waters. Washington
DC American Geophysical Union Geophysical Monograph Series, 150:197–207, doi:10.1029/150GM16.
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- Fleming, K., Martinec, Z., and Hagedoorn, J., 2004. Geoid displacement about Greenland resulting from past and present-day
mass changes in the Greenland Ice Sheet. Geophysical Research Letters, 31:6617–+, doi:10.1029/2004GL019469.
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- Flury, J. and Rummel, R., 2004. Future Satellite Gravimetry for Geodesy. Earth Moon and Planets, 94:13–29, doi:10.1007/s11038-005-3756-7.
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- Flury, J., 2004. Ice Mass Balance and Ice Dynamics from Satellite Gravity Missions. Earth Moon and Planets, 94:83–91,
doi:10.1007/s11038-004-8213-5.
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- Gobiet, A. and Kirchengast, G., 2004. Advancements of Global Navigation Satellite System radio occultation retrieval in the
upper stratosphere for optimal climate monitoring utility. Journal of Geophysical Research (Atmospheres), 109(D18):24110–+,
doi:10.1029/2004JD005117.
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- Gunter, B. C., Computational methods and processing strategies for estimating Earth's gravity field. Ph.D. Thesis, The
University of Texas at Austin, 2004.
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- Han, S.-C., Jekeli, C., and Shum, C. K., 2004. Time-variable aliasing effects of ocean tides, atmosphere, and continental
water mass on monthly mean GRACE gravity field. Journal of Geophysical Research (Solid Earth), 109(B18):4403–+,
doi:10.1029/2003JB002501.
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- Han, S.-C., 2004. Efficient Determination of Global Gravity Field from Satellite-to-satellite Tracking Mission. Celestial
Mechanics and Dynamical Astronomy, 88:69–102.
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- Herman, J., Presti, D., Codazzi, A., and Belle, C., 2004. Attitude Control for GRACE. In ESA SP-548: 18th International
Symposium on Space Flight Dynamics, pp. 27–+.
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- Hinga, M. B., Using parallel computation to apply the singular value decomposition (SVD) in solving for large earth gravity
fields based on satellite data. Ph.D. Thesis, The University of Texas at Austin, 2004.
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- Huang, C. and Hu, X.-G., 2004. Mass redistribution to be revealed by GRACE project. Progress in Astronomy, 22:35–44.
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- Hughes, C. W. and Legrand, P., 2004. Future Benefits of Time-Varying Gravity Missions to Ocean Circulation Studies. Earth
Moon and Planets, 94:73–81, doi:10.1007/s11038-005-0452-6.
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- Iorio, L. and Morea, A., 2004. The Impact of the New Earth Gravity Models on the Measurement of the Lense-Thirring Effect.
General Relativity and Gravitation, 36:1321–1333, doi:10.1023/B:GERG.0000022390.05674.99.
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- Iorio, L., Ciufolini, I., Pavlis, E. C., Schiller, S., Dittus, H., and Lämmerzahl, C., 2004. On the possibility
of measuring the Lense Thirring effect with a LAGEOS LAGEOS II OPTIS mission. Classical and Quantum Gravity, 21:2139–2151,
doi:10.1088/0264-9381/21/8/016.
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- Ivins, E. R. and James, T. S., 2004. Bedrock response to Llanquihue Holocene and present-day glaciation in southernmost
South America. Geophysical Research Letters, 31:24613–+, doi:10.1029/2004GL021500.
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- Jekeli, C., 2004. High-resolution gravity mapping: The next generation of sensors. Washington DC American Geophysical Union
Geophysical Monograph Series, 150:135–146, doi:10.1029/150GM12.
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- Kirschner, M., Montenbruck, O., and D'Amico, S., 2004. Safe Switching of the GRACE Formation Using an Eccentricity/Inclination
Vector Separation. In ESA SP-548: 18th International Symposium on Space Flight Dynamics, pp. 315–+.
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- Llubes, M., Florsch, N., Hinderer, J., Longuevergne, L., and Amalvict, M., 2004. Local hydrology, the Global Geodynamics Project
and CHAMP/GRACE perspective: some case studies. Journal of Geodynamics, 38:355–374, doi:10.1016/j.jog.2004.07.015.
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- Mikhailov, V., Tikhotsky, S., Diament, M., Panet, I., and Ballu, V., 2004. Can tectonic processes be recovered from new gravity
satellite data?. Earth and Planetary Science Letters, 228:281–297, doi:10.1016/j.epsl.2004.09.035.
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- Peltier, W. R., 2004. Global Glacial Isostasy and the Surface of the Ice-Age Earth: The ICE-5G (VM2) Model and GRACE.
Annual Review of Earth and Planetary Sciences, 32:111–149, doi:10.1146/annurev.earth.32.082503.144359.
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- Ramillien, G., Cazenave, A., and Brunau, O., 2004. Global time variations of hydrological signals from GRACE satellite gravimetry.
Geophysical Journal International, 158:813–826, doi:10.1111/j.1365-246X.2004.02328.x.
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- Riegger, J. and Güntner, A., 2004. Time Variation In Hydrology and Gravity. Earth Moon and Planets, 94:41–55,
doi:10.1007/s11038-005-1831-8.
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- Rodell, M., Famiglietti, J. S., Chen, J., Seneviratne, S. I., Viterbo, P., Holl, S., and Wilson, C. R., 2004.
Basin scale estimates of evapotranspiration using GRACE and other observations. Geophysical Research Letters, 31:20504–+,
doi:10.1029/2004GL020873.
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- Rummel, R., 2004. Geoid and Gravity in Earth Sciences An Overview. Earth Moon and Planets, 94:3–11, doi:10.1007/s11038-005-3755-8.
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- Schmidt, T., Wickert, J., Beyerle, G., and Reigber, C., 2004. Tropical tropopause parameters derived from GPS radio occultation
measurements with CHAMP. Journal of Geophysical Research (Atmospheres), 109(D18):13105–+, doi:10.1029/2004JD004566.
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- Schrama, E. J. O., 2004. Impact of Limitations in Geophysical Background Models on Follow-on Gravity Missions. Earth
Moon and Planets, 94:143–163, doi:10.1007/s11038-004-5785-z.
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- Sneeuw, N., Flury, J., and Rummel, R., 2004. Science Requirements on Future Missions and Simulated Mission Scenarios. Earth
Moon and Planets, 94:113–142, doi:10.1007/s11038-004-7605-x.
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- Song, Y. T. and Zlotnicki, V., 2004. Ocean bottom pressure waves predicted in the tropical Pacific. Geophysical Research
Letters, 31:5306–+, doi:10.1029/2003GL018980.
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- Sun, W. and Okubo, S., 2004. Truncated co-seismic geoid and gravity changes in the domain of spherical harmonic degree. Earth,
Planets, and Space, 56:881–892, doi:10.1186/BF03352535.
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- Sun, W. and Okubo, S., 2004. Coseismic deformations detectable by satellite gravity missions: A case study of Alaska (1964,
2002) and Hokkaido (2003) earthquakes in the spectral domain. Journal of Geophysical Research (Solid Earth), 109(B18):4405–+,
doi:10.1029/2003JB002554.
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- Tapley, B. D., Bettadpur, S., Ries, J. C., Thompson, P. F., and Watkins, M. M., 2004. GRACE Measurements
of Mass Variability in the Earth System. Science, 305:503–506, doi:10.1126/science.1099192.
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- Tapley, B. D., Bettadpur, S., Watkins, M., and Reigber, C., 2004. The gravity recovery and climate experiment: Mission
overview and early results. Geophysical Research Letters, 31:9607–+, doi:10.1029/2004GL019920.
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- Thompson, P. F., Bettadpur, S. V., and Tapley, B. D., 2004. Impact of short period, non-tidal, temporal mass
variability on GRACE gravity estimates. Geophysical Research Letters, 31:6619–+, doi:10.1029/2003GL019285.
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- Thompson, P. F., Interpreting the Earth's time varying geopotential as observed from space and comparisons to global
models of hydrologic transport. Ph.D. Thesis, The University of Texas at Austin, 2004.
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- Touboul, P., Foulon, B., Rodrigues, M., and Marque, J. P., 2004. In orbit nano-g measurements, lessons for future space
missions. Aerospace science and technology, 8:431–441.
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- Wahr, J., Swenson, S., Zlotnicki, V., and Velicogna, I., 2004. Time-variable gravity from GRACE: First results. Geophysical
Research Letters, 31:11501–+, doi:10.1029/2004GL019779.
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- Willis, P. and Heflin, M. B., 2004. External validation of the GRACE GGM01C gravity field using GPS and DORIS positioning
results. Geophysical Research Letters, 31:13616–+, doi:10.1029/2004GL020038.
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- Woodworth, P. L., 2004. Benefits to Studies of Global Sea Level Changes from Future Space Gravity Missions. Earth
Moon and Planets, 94:93–102, doi:10.1007/s11038-004-5172-9.
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- Zhu, S., Reigber, C., and König, R., 2004. Integrated adjustment of CHAMP, GRACE, and GPS data. Journal of Geodesy,
78:103–108, doi:10.1007/s00190-004-0379-0.
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- Aguirre-Martinez, M. and Sneeuw, N., 2003. Needs and Tools for Future Gravity Measuring Missions. Space Science Reviews,
108:409–416, doi:10.1023/A:1026287715375.
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- Balmino, G., 2003. Gravity Field Recovery from GRACE: Unique Aspects of the High Precision Inter-Satellite Data and Analysis
Methods. Space Science Reviews, 108:47–54, doi:10.1023/A:1026169729063.
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- Bender, P. L., Nerem, R. S., and Wahr, J. M., 2003. Possible Future Use of Laser Gravity Gradiometers. Space
Science Reviews, 108:385–392, doi:10.1023/A:1026100130397.
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- Beutler, G., Drinkwater, M. R., Rummel, R., and von Steiger, R. (editors), 2003. Earth Gravity Field from Space -
from Sensors to Earth Sciences. Proceedings of an ISSI Workshop, 11-15 March 2002, Bern, Switzerland. Reprinted from SPACE
SCIENCE REVIEWS Volume 108, Nos. 1-2, 2003, Kluwer Academic Publishers, Dordrecht.
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- Bond, P., 2003. Gravity map from GRACE. Astronomy and Geophysics, 44:4–4.
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- Bouman, J. and Koop, R., 2003. Geodetic Methods for Calibration of GRACE and GOCE. Space Science Reviews, 108:293–303,
doi:10.1023/A:1026127409015.
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- Chao, B. F., 2003. Geodesy Is Not Just for Static Measurements Any More. EOS Transactions, 84:145–150, doi:10.1029/2003EO160001.
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- Chen, J. L. and Wilson, C. R., 2003. Low degree gravitational changes from earth rotation and geophysical models.
Geophysical Research Letters, 30:6–1, doi:10.1029/2003GL018688.
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- Crossley, D., Hinderer, J., Llubes, M., and Florsch, N., 2003. The potential of ground gravity measurements to validate GRACE
data. Advances in Geosciences, 1:65–71, doi:10.5194/adgeo-1-65-2003.
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- Damerow, H. and Schwarz, J., 2003. Satellite data reception system at multimission ground station. Acta Astronautica,
52:753–756.
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- Frommknecht, B., Oberndorfer, H., Flechtner, F., and Schmidt, R., 2003. Integrated sensor analysis for GRACE - development
and validation. Advances in Geosciences, 1:57–63, doi:10.5194/adgeo-1-57-2003.
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- Han, S.-C., Jekeli, C., and Shum, C. K., 2003. Static and temporal gravity field recovery using GRACE potential difference
observables. Advances in Geosciences, 1:19–26, doi:10.5194/adgeo-1-19-2003.
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- Han, S.-C., Efficient global gravity field determination from satellite-to-satellite tracking. Ph.D. Thesis, The Ohio State
University, 2003.
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- Hughes, C. W. and Stepanov, V., 2003. Feasibility, and Contribution to Ocean Circulation Studies, of Ocean Bottom Pressure
Determination. Space Science Reviews, 108:217–224, doi:10.1023/A:1026202705381.
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- Iorio, L., 2003. The Impact of the Static Part of the Earth's Gravity Field on Some Tests of General Relativity with Satellite
Laser Ranging. Celestial Mechanics and Dynamical Astronomy, 86:277–294, doi:10.1023/A:1024223200686.
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- Iorio, L. and Lucchesi, D., 2003. LAGEOS-type satellites in critical supplementary orbit configuration and the Lense-Thirring
effect detection. Classical and Quantum Gravity, 20:2477–2490, doi:10.1088/0264-9381/20/13/302.
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- Jayne, S. R., Wahr, J. M., and Bryan, F. O., 2003. Observing ocean heat content using satellite gravity and
altimetry. Journal of Geophysical Research (Oceans), 108:13–1, doi:10.1029/2002JC001619.
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- Kang, Z., Nagel, P., and Pastor, R., 2003. Precise orbit determination for GRACE. Advances in Space Research, 31:1875–1881,
doi:10.1016/S0273-1177(03)00159-5.
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- Kern, M., Schwarz, K. K. P. P., and Sneeuw, N., 2003. A study on the combination of satellite, airborne, and
terrestrial gravity data. Journal of Geodesy, 77:217–225, doi:10.1007/s00190-003-0313-x.
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- Knudsen, P., 2003. Ocean Tides in GRACE Monthly Averaged Gravity Fields. Space Science Reviews, 108:261–270,
doi:10.1023/A:1026215124036.
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- König, R., Reigber, C., Neumayer, K. H., Schmidt, R., Zhu, S., Baustert, G., Flechtner, F., and Meixner, H., 2003.
Satellite dynamics of the CHAMP and GRACE leos as revealed from space- and ground-based tracking. Advances in Space Research,
31:1869–1874, doi:10.1016/S0273-1177(03)00158-3.
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- Le Provost, C. and Bremond, M., 2003. Resolution Needed for an Adequate Determination of the Mean Ocean Circulation from Altimetry
and an Improved Geoid. Space Science Reviews, 108:163–178, doi:10.1023/A:1026146503564.
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- Levi, B. G., 2003. GRACE Satellites Start to Map Earth's Gravity Field. Physics Today, 56(2):18–18, doi:10.1063/1.1564334.
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- Marinkovic, P., Grafarend, E., and Reubelt, T., 2003. Space gravity spectroscopy: the benefits of Taylor-Karman structured
criterion matrices. Advances in Geosciences, 1:113–120, doi:10.5194/adgeo-1-113-2003.
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- Nerem, R. S., Wahr, J. M., and Leuliette, E. W., 2003. Measuring the Distribution of Ocean Mass Using GRACE.
Space Science Reviews, 108:331–344, doi:10.1023/A:1026275310832.
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- Ray, R. D., Rowlands, D. D., and Egbert, G. D., 2003. Tidal Models in a New Era of Satellite Gravimetry. Space
Science Reviews, 108:271–282, doi:10.1023/A:1026223308107.
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- Rodrigues, M., Foulon, B., Liorzou, F., and Touboul, P., 2003. Flight experience on CHAMP and GRACE with ultra-sensitive accelerometers
and return for LISA. Classical and Quantum Gravity, 20:291–+, doi:10.1088/0264-9381/20/10/332.
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- Roesset, P. J., A simulation study of the use of accelerometer data in the GRACE mission. Ph.D. Thesis, The University
of Texas at Austin, 2003.
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- Rummel, R., 2003. How to Climb the Gravity Wall. Space Science Reviews, 108:1–14, doi:10.1023/A:1026206308590.
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- Schrama, E. J. O., 2003. Error Characteristics Estimated from Champ, GRACE and GOCE Derived Geoids and from Satellite
Altimetry Derived Mean Dynamic Topography. Space Science Reviews, 108:179–193, doi:10.1023/A:1026154720402.
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- Sneeuw, N., 2003. Space-Wise, Time-Wise, Torus and Rosborough Representations in Gravity Field Modelling. Space Science
Reviews, 108:37–46, doi:10.1023/A:1026165612224.
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- Swenson, S., Wahr, J., and Milly, P. C. D., 2003. Estimated accuracies of regional water storage variations inferred
from the Gravity Recovery and Climate Experiment (GRACE). Water Resources Research, 39:11–1, doi:10.1029/2002WR001736.
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- Swenson, S. and Wahr, J., 2003. Monitoring Changes in Continental Water Storage with GRACE. Space Science Reviews,
108:345–354, doi:10.1023/A:1026135627671.
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- Tapley, B. D., Chambers, D. P., Bettadpur, S., and Ries, J. C., 2003. Large scale ocean circulation from the
GRACE GGM01 Geoid. Geophysical Research Letters, 30:6–1, doi:2003GeoRL..30.2163T.
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- Tapley, B. D., Reigber, C., and Ries, J. C., 2003. The GRACE Mission: Status and Early Results. AAS/Division
of Dynamical Astronomy Meeting, 34:1040.
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- Visser, P. N. A. M., Sneeuw, N., and Gerlach, C., 2003. Energy integral method for gravity field determination
from satellite orbit coordinates. Journal of Geodesy, 77:207–216, doi:10.1007/s00190-003-0315-8.
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- Visser, P. N. A. M. and van den Ijssel, J., 2003. Aiming at a 1-cm Orbit for Low Earth Orbiters: Reduced-Dynamic
and Kinematic Precise Orbit Determination. Space Science Reviews, 108:27–36, doi:10.1023/A:1026253328154.
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- Wahr, J. and Velicogna, I., 2003. What Might GRACE Contribute to Studies of Post Glacial Rebound?. Space Science Reviews,
108:319–330, doi:10.1023/A:1026183526762.
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- Wang, F., Study on center of mass calibration and K-band ranging system calibration of the GRACE mission. Ph.D. Thesis, The
University of Texas at Austin, 2003.
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- Woodworth, P. L. and Gregory, J. M., 2003. V: SEA LEVEL: Benefits of GRACE and GOCE to sea level studies. Space
Science Reviews, 108:307–317, doi:10.1023/A:1026179409924.
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- Adam, D., 2002. Gravity measurement: Amazing GRACE. Nature, 416:10–11, doi:10.1038/416010a.
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- Boy, J.-P. and Chao, B. F., 2002. Time-variable gravity signal during the water impoundment of China's Three-Gorges Reservoir.
Geophysical Research Letters, 29:53–1, doi:10.1029/2002GL016457.
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- Cheng, M. K., 2002. Gravitational perturbation theory for intersatellite tracking. Journal of Geodesy, 76:169–185,
doi:10.1007/s00190-001-0233-6.
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- Cox, C. M. and Chao, B. F., 2002. Detection of a Large-Scale Mass Redistribution in the Terrestrial System Since
1998. Science, 297:831–833, doi:2002Sci...297..831C.
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- Ganachaud, A. and Mercier, H., 2002. Ocean response to meridional ekman transport in the Atlantic and implication for gravity
missions. Geophysical Research Letters, 29:60–1, doi:10.1029/2002GL015291.
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- Ilk, K., Kusche, J., and Rudolph, S., 2002. A contribution to data combination in ill-posed downward continuation problems.
Journal of Geodynamics, 33:75–99, doi:10.1016/S0264-3707(01)00056-4.
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- Knudsen, P. and Andersen, O., 2002. Correcting GRACE gravity fields for ocean tide effects. Geophysical Research Letters,
29:19–1, doi:10.1029/2001GL014005.
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- Koch, K.-R. and Kusche, J., 2002. Regularization of geopotential determination from satellite data by variance components.
Journal of Geodesy, 76:259–268, doi:10.1007/s00190-002-0245-x.
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- Kusche, J., 2002. On fast multigrid iteration techniques for the solution of normal equations in satellite gravity recovery.
Journal of Geodynamics, 33:173–186, doi:10.1016/S0264-3707(01)00062-X.
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- Leuliette, E. W., Nerem, R. S., and Russell, G. L., 2002. Detecting time variations in gravity associated with
climate change. Journal of Geophysical Research (Solid Earth), 107:3–1, doi:10.1029/2001JB000404.
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- Losch, M., Redler, R., and Schröter, J., 2002. Estimating a Mean Ocean State from Hydrography and Sea-Surface Height
Data with a Nonlinear Inverse Section Model: Twin Experiments with a Synthetic Dataset. Journal of Physical Oceanography,
32:2096–+, doi:10.1175/1520-0485(2002)032.
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- Nerem, R. S., Leuliette, E. W., Born, G., Beylkin, G., Cramer, R., and Tapley, B. D., 2002. Future Advances
in Global Gravity Field Modeling, NASA STI/Recon Technical Report N 3, pp. 14190–+.
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- Oberndorfer, H., Müller, J., Rummel, R., and Sneeuw, N., 2002. A simulation tool for the new gravity field satellite
missions. Advances in Space Research, 30(2):227–232, doi:10.1016/S0273-1177(02)00289-2.
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- Peltier, W. R., 2002. Global glacial isostatic adjustment: palaeogeodetic and space-geodetic tests of the ICE-4G (VM2)
model. Journal of Quaternary Science, 17:491–510, doi:10.1002/jqs.713.
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- Ponte, R. M. and Ray, R. D., 2002. Atmospheric pressure corrections in geodesy and oceanography: A strategy for
handling air tides. Geophysical Research Letters, 29:6–1, doi:10.1029/2002GL016340.
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- Ries, J. C., Tapley, B. D., and Bettadpur, S., 2002. The GRACE Mission: Status and Plans. Bulletin of the American
Astronomical Society, 34:942–+.
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- Rodell, M., 2002. The potential for satellite-based monitoring of groundwater storage changes using GRACE: the High Plains
aquifer, Central US. Journal of Hydrology, 263:245–256, doi:10.1016/S0022-1694(02)00060-4.
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- Rowlands, D. D., Ray, R. D., Chinn, D. S., and Lemoine, F. G., 2002. Short-arc analysis of intersatellite
tracking data in a gravity mapping mission. Journal of Geodesy, 76:307–316, doi:10.1007/s00190-002-0255-8.
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- Rummel, R., Balmino, G., Johannessen, J., Visser, P., and Woodworth, P., 2002. Dedicated gravity field missions—principles
and aims. Journal of Geodynamics, 33(1):3–20, doi:10.1016/S0264-3707(01)00050-3.
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- Schröter, J., Losch, M., and Sloyan, B., 2002. Impact of the Gravity Field and Steady-State Ocean Circulation Explorer
(GOCE) mission on ocean circulation estimates 2. Volume and heat fluxes across hydrographic sections of unequally spaced stations.
Journal of Geophysical Research (Oceans), 107:3012–+, doi:10.1029/2000JC000647.
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- Swenson, S. and Wahr, J., 2002. Estimated effects of the vertical structure of atmospheric mass on the time-variable geoid.
Journal of Geophysical Research (Solid Earth), 107:4–1, doi:10.1029/2000JB000024.
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- Swenson, S. and Wahr, J., 2002. Methods for inferring regional surface-mass anomalies from Gravity Recovery and Climate Experiment
(GRACE) measurements of time-variable gravity. Journal of Geophysical Research (Solid Earth), 107:3–1, doi:10.1029/2001JB000576.
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- Swenson, S. C., Techniques for recovering surface mass variability from satellite measurements of time-variable gravity.
Ph.D. Thesis, University of Colorado at Boulder, 2002.
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- Velicogna, I. and Wahr, J., 2002. Postglacial rebound and Earth's viscosity structure from GRACE. Journal of Geophysical
Research (Solid Earth), 107, doi:10.1029/2001JB001735.
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- Velicogna, I. and Wahr, J., 2002. A method for separating Antarctic postglacial rebound and ice mass balance using future
ICESat Geoscience Laser Altimeter System, Gravity Recovery and Climate Experiment, and GPS satellite data. Journal of Geophysical
Research (Solid Earth), 107, doi:10.1029/2001JB000708.
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- Wahr, J. M., Jayne, S. R., and Bryan, F. O., 2002. A method of inferring changes in deep ocean currents from
satellite measurements of time-variable gravity. Journal of Geophysical Research (Oceans), 107:11–1, doi:10.1029/2001JC001274.
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- Wu, X., Watkins, M. M., Ivins, E. R., Kwok, R., Wang, P., and Wahr, J. M., 2002. Toward global inverse solutions
for current and past ice mass variations: Contribution of secular satellite gravity and topography change measurements. Journal
of Geophysical Research (Solid Earth), 107:9–1, doi:10.1029/2001JB000543.
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- Balmino, Georges, 2001. New space missions for mapping the Earth's gravity field. Academie des Sciences Paris Comptes Rendus
Serie Physique Astrophysique, 2(9):1353–1359, doi:10.1016/S1296-2147(01)01269-0.
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- Foldvary, L. and Fukuda, Y., 2001. IB and NIB hypotheses and their possible discrimination by GRACE. Geophysical Research
Letters, 28:663–666, doi:10.1029/2000GL011775.
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- Ivins, E. R., Wu, X.-P., Raymond, C. A., Yoder, C. F., and James, T. S., 2001. Temporal geoid of a rebounding
Antarctica and potential measurement by the GRACE and GOCE satellites. In Sideris, M. (editors), Gravity, Geoid and Geodynamics
2000, IAG Symposium 123, pp. 361–366, Springer, Berlin.
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- Johnson, T. J., Wilson, C. R., and Chao, B. F., 2001. Nontidal oceanic contributions to gravitational field
changes: Predictions of the Parallel Ocean Climate Model. Journal of Geophysical Research (Solid Earth), 106:11315–11334,
doi:10.1029/2000JB900438.
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- Kusche, J., 2001. Implementation of multigrid solvers for satellite gravity anomaly recovery. Journal of Geodesy, 74:773–782,
doi:10.1007/s001900000140.
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- Le Meur, E. and Huybrechts, P., 2001. A model computation of the temporal changes of surface gravity and geoidal signal induced
by the evolving Greenland ice sheet. Geophysical Journal International, 145:835–849, doi:10.1046/j.1365-246X.2001.01442.x.
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- LeGrand, P., 2001. Impact of the Gravity Field and Steady-State Ocean Circulation Explorer (GOCE) mission on ocean circulation
estimates. Volume fluxes in a climatological inverse model of the Atlantic. Journal of Geophysical Research (Oceans),
106:19597–19610, doi:10.1029/2000JC000556.
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- Ray, R. D., Eanes, R. J., Egbert, G. D., and Pavlis, N. K., 2001. Error spectrum for the global M2 ocean
tide. Geophysical Research Letters, 28:21–24, doi:10.1029/2000GL011674.
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- Rodell, M. and Famiglietti, J. S., 2001. An analysis of terrestrial water storage variations in Illinois with implications
for the Gravity Recovery and Climate Experiment (GRACE). Water Resources Research, 37:1327–1340, doi:10.1029/2000WR900306.
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- Tamisiea, M. E., Mitrovica, J. X., Milne, G. A., and Davis, J. L., 2001. Global geoid and sea level changes
due to present-day ice mass fluctuations. Journal of Geophysical Research (Solid Earth), 106:30849–30864, doi:10.1029/2000JB000011.
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- Velicogna, I., Wahr, J., and Van den Dool, H., 2001. Can surface pressure be used to remove atmospheric contributions from
GRACE data with sufficient accuracy to recover hydrological signals?. Journal of Geophysical Research (Solid Earth),
106:16415–16434, doi:10.1029/2001JB000228.
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- Wahr, J., 2001. Satellite Measurements of Time Variable Gravity: What Can They Tell Us About the Earth?. APS Meeting Abstracts,
pp. D2+.
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- Wickert, J., Galas, R., Beyerle, G., König, R., and Reigber, C., 2001. GPS ground station data for CHAMP radio occultation
measurements. Physics and Chemistry of the Earth A, 26:503–511, doi:10.1016/S1464-1895(01)00092-8.
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- Wünsch, J., Thomas, M., and Gruber, T., 2001. Simulation of oceanic bottom pressure for gravity space missions. Geophysical
Journal International, 147:428–434, doi:10.1046/j.1365-246X.2001.00551.x.
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- Gaposchkin, E. M., 2000. Geoid Recovery Using Geophysical Inverse Theory Applied to Satellite to Satellite Tracking
Data, NASA STI/Recon Technical Report N, pp. 80262–+.
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- Kaufmann, G., 2000. Ice-ocean mass balance during the Late Pleistocene glacial cycles in view of CHAMP and GRACE satellite
missions. Geophysical Journal International, 143:142–156, doi:j.1365-246x.2000.00223.x.
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- Nerem, R. S., Eanes, R. J., Thompson, P. F., and Chen, J. L., 2000. Observations of Annual Variations
of the Earth's Gravitational Field Using Satellite Laser Ranging and Geophysical Models. Geophysical Research Letters,
27:1783–+, doi:10.1029/1999GL008440.
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- Rodell, M., Estimating changes in terrestrial water storage. Ph.D. Thesis, The University of Texas at Austin, 2000.
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- Wahr, J., Wingham, D., and Bentley, C., 2000. A method of combining ICESat and GRACE satellite data to constrain Antarctic
mass balance. Journal of Geophysical Research (Solid Earth), 105:16279–16294, doi:10.1029/2000JB900113.
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- Cazenave, A., Mercier, F., Bouille, F., and Lemoine, J. M., 1999. Global-scale interactions between the solid Earth and
its fluid envelopes at the seasonal time scale. Earth and Planetary Science Letters, 171:549–559, doi:10.1016/S0012-821X(99)00172-7.
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- Cheng, M. and Tapley, B. D., 1999. Seasonal variations in low degree zonal harmonics of the Earth's gravity field from
satellite laser ranging observations. Journal of Geophysical Research (Solid Earth), 104:2667–2682, doi:10.1029/1998JB900036.
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- Jekeli, C., 1999. The determination of gravitational potential differences from satellite-to-satellite tracking. Celestial
Mechanics and Dynamical Astronomy, 75:85–101, doi:10.1023/A:1008313405488.
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- Peltier, W., 1999. Global sea level rise and glacial isostatic adjustment. Global and Planetary Change, 20:93–123,
doi:10.1016/S0921-8181(98)00066-6.
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- Rodell, M. and Famiglietti, J. S., 1999. Detectability of variations in continental water storage from satellite observations
of the time dependent gravity field. Water Resources Research, 35:2705–2724, doi:10.1029/1999WR900141.
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- Visser, P. N. A. M., 1999. Gravity field determination with GOCE and GRACE. Advances in Space Research,
23:771–776, doi:10.1016/S0273-1177(99)00154-4.
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- von Frese, R., Roman, D., Kim, J. H., Kim, J. K., and Anderson A., 1999. Satellite mapping of the Antarctic gravity
field. Annali di Geofisica, 42:293–307.
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- Yang, Z.-J., Precise determination of local geoid and its geophysical interpretation. Ph.D. Thesis, Hong Kong Polytechnic
University (Hong Kong), 1999.
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- Wahr, J., Molenaar, M., and Bryan, F., 1998. Time variability of the Earth's gravity field: Hydrological and oceanic effects
and their possible detection using GRACE. Journal of Geophysical Research (Solid Earth), 103:30205–30230, doi:10.1029/98JB02844.
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