GRACE and GRACE-FO Related Publications (no abstracts)

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Decadal Variations in Equatorial Ellipticity and Principal Axis of the Earth from Satellite Laser Ranging/GRACE

Cheng, Minkang, 2024. Decadal Variations in Equatorial Ellipticity and Principal Axis of the Earth from Satellite Laser Ranging/GRACE. Surveys in Geophysics, 45(5):1601–1626, doi:10.1007/s10712-024-09852-w.

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BibTeX

@ARTICLE{2024SGeo...45.1601C,
       author = {{Cheng}, Minkang},
        title = "{Decadal Variations in Equatorial Ellipticity and Principal Axis of the Earth from Satellite Laser Ranging/GRACE}",
      journal = {Surveys in Geophysics},
     keywords = {Decadal variation, Equatorial ellipticity, SLR, Core flows},
         year = 2024,
        month = oct,
       volume = {45},
       number = {5},
        pages = {1601-1626},
     abstract = "{The Earth exhibits an equatorial flattening specified by the ellipticity
        and the east longitude (or orientation) of the equatorial major
        axis, which is uniquely determined by the degree 2 and order 2
        gravitational coefficients, C$_{22}$ and S$_{22}$. The 31-year
        SLR (satellite laser ranging) and 22-year GRACE/GRACE-FO
        (gravity recovery and climate experiment) data are analyzed to
        study the climate-related secular and 5.7 years to decadal
        variations in C$_{22}$ and S$_{22}$, in turn, the drift and
        decadal variation in the Earth's equatorial ellipticity and
        orientation of the principal axis of the least moment of
        inertia. The effects of the surface floating mass changes
        (including atmosphere, ocean and surface water redistribution
        and the melting of the mountain and polar glaciers) and the
        interior fluid convective (Earth's core flows) were evaluated.
        Results reveal that the equatorial ellipticity of the Earth is
        linearly increasing along with a remarkable decadal variation
        and the Earth's equator is flattening by
        \raisebox{-0.5ex}\textasciitilde 0.16 mm/yr.}",
          doi = {10.1007/s10712-024-09852-w},
       adsurl = {https://ui.adsabs.harvard.edu/abs/2024SGeo...45.1601C},
      adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

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