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利用圣杯号数据的局部月球重力修正解

Patched Local Lunar Gravity Solutions Using GRAIL Data.

作者信息

Goossens Sander, Fernández Mora Álvaro, Heijkoop Eduard, Sabaka Terence J

机构信息

Center for Space Sciences and Technology University of Maryland Baltimore MD USA.

NASA Goddard Space Flight Center Greenbelt MD USA.

出版信息

Earth Space Sci. 2021 Nov;8(11):e2021EA001695. doi: 10.1029/2021EA001695. Epub 2021 Oct 27.

Abstract

We present a method to determine local gravity fields for the Moon using Gravity Recovery and Interior Laboratory (GRAIL) data. We express gravity as gridded gravity anomalies on a sphere, and we estimate adjustments to a background global start model expressed in spherical harmonics. We processed GRAIL Ka-band range-rate data with a short-arc approach, using only data over the area of interest. We determine our gravity solutions using neighbor smoothing constraints. We divided the entire Moon into 12 regions and 2 polar caps, with a resolution of (which is equivalent to degree and order 1199 in spherical harmonics), and determined the optimal smoothing parameter for each area by comparing localized correlations between gravity and topography for each solution set. Our selected areas share nodes with surrounding areas and they are overlapping. To mitigate boundary effects, we patch the solutions together by symmetrically omitting the boundary parts of overlapping solutions. Our new solution has been iterated, and it has improved correlations with topography when compared to a fully iterated global model. Our method requires fewer resources, and can easily handle regionally varying resolution or constraints. The smooth model describes small-scale features clearly, and can be used in local studies of the structure of the lunar crust.

摘要

我们提出了一种利用重力恢复与内部实验室(GRAIL)数据来确定月球局部重力场的方法。我们将重力表示为球面上的网格化重力异常,并估计对以球谐函数表示的背景全球初始模型的调整。我们采用短弧法处理GRAIL Ka波段距离变化率数据,仅使用感兴趣区域的数据。我们利用邻域平滑约束来确定重力解。我们将整个月球划分为12个区域和2个极区,分辨率为(这在球谐函数中相当于1199阶次),并通过比较每个解集的重力与地形之间的局部相关性,为每个区域确定最佳平滑参数。我们选定的区域与周边区域共享节点且相互重叠。为减轻边界效应,我们通过对称省略重叠解的边界部分将这些解拼接在一起。我们的新解经过了迭代,与完全迭代的全球模型相比,它与地形的相关性有所提高。我们的方法所需资源更少,并且能够轻松处理区域分辨率或约束条件的变化。平滑模型清晰地描述了小尺度特征,可用于月球地壳结构的局部研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e9a/8596444/be6401bba505/ESS2-8-e2021EA001695-g014.jpg

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