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首页> 外文期刊>Acta Geophysica >Smoothing impact of isostatic crustal thickness models on local integral inversion of satellite gravity gradiometry data
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Smoothing impact of isostatic crustal thickness models on local integral inversion of satellite gravity gradiometry data

机译:等静压地壳厚度模型对卫星重力梯度数据局部积分反演的平滑影响

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摘要

The effects of topographic masses on satellite gradiometric data are large and in order to reduce the magnitude of these effects some compensation mechanisms should be considered. Here we use the isostatic hypotheses of Airy-Heiskanen and the recent Vening Meinesz-Moritz for compensating these effects and to smooth the data prior to their downward continuation to gravity anomaly. The second-order partial derivatives of extended Stokes' formula are used for the continuations over a topographically rough territory like Persia. The inversions are performed and compared based on two schemes of the remove-compute-restore technique and direct downward continuation. Numerical results show that the topographic-isostatic effect based on Vening Meinesz-Mortiz's hypothesis smoothes the data better than that based on Airy-Heiskanen's hypothesis. Also the quality of inversions of the smoothed data by this mechanism is twice better than that of the nonsmoothed ones.
机译:地形质量对卫星梯度数据的影响很大,为了减小这些影响的大小,应考虑一些补偿机制。在这里,我们使用Airy-Heiskanen和最近的Vening Meinesz-Moritz的等静线假设来补偿这些影响,并在数据继续向下延伸至重力异常之前对其进行平滑处理。扩展的斯托克斯公式的二阶偏导数用于在波斯这样的地形粗糙区域上的延续。基于删除-计算-恢复技术和直接向下连续的两种方案来执行和比较反转。数值结果表明,基于Vineing Meinesz-Mortiz假设的地形等静线效果比基于Airy-Heiskanen假设的地形等静线效果更好。同样,通过这种机制对平滑数据进行反演的质量比不平滑的数据要好两倍。

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