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首页> 外文期刊>Journal of geophysical research. Planets >Division of Geological and Planetary Sciences, California Institute of Technology, Pasadena, California, USA
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Division of Geological and Planetary Sciences, California Institute of Technology, Pasadena, California, USA

机译:美国加利福尼亚州帕萨迪纳市,加利福尼亚理工学院地质与行星科学系

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摘要

The regolith at the Apollo 16 landing site, the only Apollo landing site in the central lunar highlands, contains material derived from a number of sources. A model that accounts for the introduction of basin ejecta and mixing of the megaregolith is used to estimate the abundance of basin material in the Apollo 16 regolith. Megaregolith mixing model estimates of the abundance of primary ejecta from the Imbrium, Serenitatis, and Nectaris basins are found to be present in roughly equal (8–10%) proportions. Additionally, the presence of mare-derived material in the Apollo 16 regolith suggests that a significant component of the regolith (15–23%) is derived from lateral transport. There are inherent difficulties in directly comparing model results with ground truth at Apollo 16. Results suggest shallower mixing during ejecta emplacement than predicted by Oberbeck et al. (1975).
机译:阿波罗16号登陆点的月长石是月球中部高地上唯一的阿波罗登陆点,包含来自多种来源的物质。使用一个模型来说明盆地射流的引入和巨灰石的混合,用于估计Apollo 16灰石中盆地物质的丰度。 Megaregolith混合模型估计了来自Imbrium,Serenitatis和Nectaris盆地的一次喷射的丰度大约以相等(8-10%)的比例存在。此外,在阿波罗16号变硬岩中存在母马衍生的物质,这表明该变硬岩的重要组成部分(15%至23%)来自横向运输。直接将模型结果与阿波罗16号的地面真相进行比较时,存在固有的困难。结果表明,在射顶进位过程中的混合比Oberbeck等人的预测要浅。 (1975)。

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