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首页> 外文期刊>Journal of geophysical research. Planets >An Improved Global Catalog of Lunar Impact Craters (≥1 km) With 3D Morphometric Information and Updates on Global Crater Analysis
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An Improved Global Catalog of Lunar Impact Craters (≥1 km) With 3D Morphometric Information and Updates on Global Crater Analysis

机译:一种改进的全局编录的月球陨石坑(≥1公里)和3 d的形态学信息更新全球火山口分析

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摘要

Impact craters are common surface features on planetary surfaces. Their distribution offers important clues regarding geological and temporal processes on the Moon. Numerous endeavors have generated global catalogs of lunar craters; however, most of the existing catalogs only contain large craters (larger than several kilometers in diameter), and none of them offer three-dimensional (3D) morphometric information. In this study, we first present a machine-learning approach for automatic crater detection from digital elevation models (DEMs). Our crater detection approach can achieve a detection rate of about 85%. We also present an approach for extracting 3D morphometric information of craters based on the topography. These approaches were applied to producing a global crater data set covering the entire lunar surface that includes approximately 1.32 million craters (≥1 km). Verification was performed against previously published catalogs (Head et al., 2010, https://doi.org/10.1126/ science.1195050; Robbins, 2019, https://doi.org/10.1029/2018je005592), with about 23% of our craters transferred from the previous catalogs after a rim-fitting process. The crater catalog includes 3D morphometric data on the craters such as depths. Global analyses of craters based on this improved catalog indicate that the lunar mare and highlands have distinctive crater density differences of small craters (1-5 km). Craters of 2.5-5 km have reached saturation in several local regions in the highlands. Small craters (1-5 km) on the lunar mare are deeper than those on the highlands. The data in our comprehensive crater catalog can support various other lunar scientific studies.
机译:陨石坑是常见的表面特征行星表面。关于地理和时间的重要线索流程在月球上。月球陨石坑的全球目录生成的;然而,大多数现有的目录包含大陨石坑(大于几个公里直径),他们都没有提供三维(3 d)的形态学信息。在这项研究中,我们首先提出一个机器学习方法来自动火山口从数字高程模型检测(民主党)。我们的火山口检测方法可以实现约85%的检出率。3 d的形态学方法提取信息基于地形的陨石坑。这些方法被应用于生产全球覆盖整个月球陨石坑数据集表面,其中包括约132万陨石坑(≥1公里)。与以前公布的目录(负责人等2010年,https://doi.org/10.1126/science.1195050;https://doi.org/10.1029/2018je005592),从前面23%的陨石坑转移目录后rim-fitting过程。目录包括了3 d的形态学数据坑深度等。火山口在此基础上改进目录显示月球母马和高地独特的陨石坑密度差异小陨石坑(1 - 5公里)。在几个地方区域达到饱和苏格兰高地。月球母马比那些更深高地。目录可以支持各种其他月球科学研究。

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