首页> 外文OA文献 >LATERAL VARIATIONS IN BULK DENSITY AND POROSITY OF THE UPPER LUNAR CRUST FROM HIGH-RESOLUTION GRAVITY AND TOPOGRAPHY DATA: COMPARISON OF DIFFERENT ANALYSIS TECHNIQUES
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LATERAL VARIATIONS IN BULK DENSITY AND POROSITY OF THE UPPER LUNAR CRUST FROM HIGH-RESOLUTION GRAVITY AND TOPOGRAPHY DATA: COMPARISON OF DIFFERENT ANALYSIS TECHNIQUES

机译:来自高分辨率重力和地形数据的堆积密度和孔隙孔的横向变化:不同分析技术的比较

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摘要

We map lateral variations in bulk density of the upper lunar highland crust using the most recent GRAIL gravity field solution of degree and order 1500 in combination with LOLA topography data, both truncated to an upper limit of degree and order 700. Our maps have a spatial resolution of 0.75°, where each grid point was calculated using circular analysis regions of 3° radius. We apply two methods, which yield similar results for most parts of the study area. The first method minimizes the correlation between topography and Bouguer anomalies, the second maximizes the smoothness of the Bouguer anomalies. Both approaches suffer in the case that terrain is flat and lacks topographic features; consequently, this is where results from the two methods differ. We also mapped porosity of the crust using grain densities derived from Lunar Prospector spectrometry and sample analysis. It appears that variations in bulk density are mostly related to differences in crustal porosity. We find that high porosity is often associated with areas of impact basins. This confirms earlier studies, that impacts changed the geophysical characteristics of the lithosphere sustainably and that the high porosity of the upper lunar crust is most likely impact induced.
机译:我们使用最近的Grail Gravity场解决方案和订单1500的最新Grail Gravity Field解决方案与Lola地形数据组合的最新Grail Gravity Field解决方案映射到上限的横向变化,截断到程度和订单700的上限。我们的地图具有空间分辨率为0.75°,其中每个网格点使用3°半径的圆形分析区域计算。我们应用两种方法,这对研究区域的大多数部分产生了类似的结果。第一种方法最小化地形和Bouguer异常之间的相关性,第二个方法最大化了Bouguer异常的平滑度。两种方法都遭受了地形平坦并且缺乏地形特征;因此,这是两种方法的结果不同的地方。我们还使用源自月球探测器光谱法和样品分析的晶粒密度进行地壳的孔隙率。似乎堆积密度的变化主要与地壳孔隙率的差异有关。我们发现高孔隙率通常与冲击盆地的区域有关。这证实了早期的研究,这种影响可持续地改变了岩石圈的地球物理特征,并且上部月球地壳的高孔隙率最有可能产生影响。

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  • 作者

    D. Wahl; J. Oberst;

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  • 年度 2019
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  • 正文语种 eng
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