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Spatial sensitivity of the Gravity Recovery and Climate Experiment (GRACE) time-variable gravity observations

机译:重力恢复和气候实验(GRACE)时变重力观测的空间敏感性

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摘要

We analyze the spatial sensitivities of terrestrial water storage and geoid height changes determined from the time-variable gravity observed by the Gravity Recovery and Climate Experiment (GRACE) twin satellite mission. On the basis of 15 GRACE monthly gravity solutions, covering the period April 2002 to December 2003, we examine the effects of spatial smoothing at radii varying from 400 to 2000 km and conclude that a 800 km Gaussian smoothing radius is effective for GRACE-derived terrestrial water storage and produces the minimum RMS residuals over the land of the differences between GRACE results and estimated water storage change from a global land data assimilation system. For GRACE estimated geoid height change, the effective smoothing radius can go down to 600 km. When the annual (e.g., the sine and cosine) components are the primary concern, the effective spatial resolution can reach 600 and 400 km for GRACE estimated terrestrial water storage or geoid height change, respectively.
机译:我们分析了由重力恢复和气候实验(GRACE)双卫星任务观测到的随时间变化的重力所确定的地面水存储和大地水准面高度变化的空间敏感性。根据2002年4月至2003年12月期间的15个GRACE月度重力解,我们研究了半径在400至2000 km之间的空间平滑作用,并得出了800 km高斯平滑半径对GRACE衍生的地面有效的结论。储水量,并根据全球土地数据同化系统得出的GRACE结果与估计的储水量变化之差,在土地上产生最小的RMS残差。对于GRACE估计的大地水准面高度变化,有效平滑半径可以降至600 km。当主要考虑年分量(例如正弦和余弦)时,对于GRACE估计的地面水存储或大地水准面高度变化,有效空间分辨率可以分别达到600 km和400 km。

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