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Patched Local Lunar Gravity Solutions using GRAIL Data
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 twelve regions and two polar caps, with a resolution of 0.15˚ x 0.15˚ (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.
Document ID
20210023036
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Sander Goossens ORCID
(University of Maryland, Baltimore County Baltimore, Maryland, United States)
Alvaro Fernandez Mora ORCID
(University of Maryland, Baltimore Baltimore, Maryland, United States)
Eduard Heijkoop ORCID
(University of Maryland, Baltimore County Baltimore, Maryland, United States)
Terence J Sabaka ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Date Acquired
October 19, 2021
Publication Date
October 9, 2021
Publication Information
Publication: Earth and Space Science
Publisher: Wiley Open Access
Volume: 8
Issue: 11
Issue Publication Date: November 1, 2021
e-ISSN: 2333-5084
URL: https://agupubs.onlinelibrary.wiley.com/doi/abs/10.1029/2021EA001695
Subject Category
Space Sciences (General)
Lunar And Planetary Science And Exploration
Funding Number(s)
WBS: 811073.02.52.01.15.02
CONTRACT_GRANT: NNX15AJ65G
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
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