Determination of gravity anomaly at sea level from inversion of satellite gravity gradiometric data |
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Authors: | Mehdi Eshagh,Lars E. Sj berg |
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Affiliation: | a Royal Institute of Technology, Division of Geodesy and Geoinformatics, Stockholm, Sweden |
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Abstract: | Gravity gradients can be used to determine the local gravity field of the Earth. This paper investigates downward continuation of all elements of the disturbing gravitational tensor at satellite level using the second-order partial derivatives of the extended Stokes formula in the local-north oriented frame to determine the gravity anomaly at sea level. It considers the inversion of each gradient separately as well as their joint inversion. Numerical studies show that the gradients Tzz, Txx, Tyy and Txz have similar capability of being continued downward to sea level in the presence of white noise, while the gradient Tyz is considerably worse than the others. The bias-corrected joint inversion process shows the possibility of recovering the gravity anomaly with 1 mGal accuracy. Variance component estimation is also tested to update the observation weights in the joint inversion. |
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Keywords: | Bias-correction Downward continuation Joint inversion Tikhonov's regularization Variance component estimation |
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