帮助 关于我们

返回检索结果

基于全景相机数据的嫦娥四号着陆区次级坑统计分析
Statistical Analysis of Secondary Craters in the Chang'E-4 Landing Area Based on Panoramic Camera Data

查看参考文献48篇

阳梅萍 1,2   岳宗玉 1,3 *   邸凯昌 1,3   万文辉 1   刘建忠 4,3   史珂 1,2  
文摘 玉兔二号月球车在嫦娥四号着陆区发现了许多坑缘呈破碎石块状的小型撞击坑,其直径大多在亚米级,过去对于这种小尺度撞击坑的研究大多源于Apollo、Surveyor、Ranger系列任务,然而当时获取的影像质量较低,且并未覆盖月球背面。小尺度撞击坑在月球表面分布十分广泛,与月球最表层的演化密切相关,因此对其展开研究具有重要的意义。本文利用嫦娥四号任务获取的高分辨率全景影像,统计了8、9、11~ 15月昼影像中新鲜撞击坑的直径、频数、深度等信息,并根据这些撞击坑和周围石块的形态特征,推测这些坑应该形成于不同方向的二次撞击事件,这为揭示玉兔二号月球车行进途中观测物质的来源提供了重要信息。小型二次撞击坑从深径比中难以与一次撞击坑区分,且一般处于饱和状态,因此应避免使用小尺寸的撞击坑进行定年。
其他语种文摘 Many fresh small sized (mostly in diameter of sub-meter) impact craters which have blocky-rim exposed in the regolith were encountered by the Yutu-2 rover in the Chang'E-4 landing area. Due to the limitation of low resolution of images, such kind of small sized impact craters were mostly found in images from the Ranger,Surveyor,Apollo missions in the past,nevertheless those images of low quality did not cover the area of lunar farside. Small sized impact craters are widely distributed in the lunar surface and they are closely related to the evolution of lunar regolith. Therefore,it is significant to study these craters in fine scales. In this paper,the very high resolution images acquired by the CE-4 Panoramic camera (Pancam) in 8th,9th,11th-15th lunar days are used to analyse information including the diameter,frequency, and depth of these fresh impact craters. Combining with the morphological characteristics of these impact craters and boulders, it is inferred that these craters could be mostly formed by secondary impact events in different directions. This provides important information for revealing the source of the material observed during the journey of the Yutu-2 rover. Small sized secondary impact craters are difficult to be distinguished from primary impact craters in the ratio of depth to diameter, and they are generally in a saturated state. Therefore,small sized craters should be avoided to be used for the sizefrequency dating.
来源 矿物岩石地球化学通报 ,2021,40(3):720-729 【核心库】
DOI 10.19658/j.issn.1007-2802.2021.40.026
关键词 嫦娥四号 ; 全景影像 ; 撞击坑统计
地址

1. 中国科学院空天信息创新研究院, 遥感科学国家重点实验室, 北京, 100101  

2. 中国科学院大学, 北京, 100049  

3. 中国科学院比较行星学卓越创新中心, 中国科学院比较行星学卓越创新中心, 合肥, 230026  

4. 中国科学院地球化学研究所, 贵阳, 550081

语种 中文
文献类型 研究性论文
ISSN 1007-2802
学科 天文学
基金 国家自然科学基金项目
文献收藏号 CSCD:6969269

参考文献 共 48 共3页

1.  Aldrin E E Jr. Crew observations. Apollo 11 Preliminary Science Report. NASA SP-214,1969:35-40 被引 1    
2.  Baldwin R B. The Measure of the Moon,1963 被引 4    
3.  Baldwin R B. The crater diameter-depth relationship from ranger VII photographs. The Astronomical Journal,1965,70(8):545-547 被引 3    
4.  Barnouin O S. The morphology of craters on Mercury: Results from MESSENGER flybys. Icarus,2012,219(1):414-427 被引 4    
5.  Basilevsky A T. On the evolution rate of small lunar craters. Proceedings of the 7th Lunar Science Conference. Houston T X,1976:1005-1020 被引 1    
6.  Basilevsky A T. Survival times of meter-sized boulders on the surface of the Moon. Planetary and Space Science,2013,89:118-126 被引 2    
7.  Bouska J. Crater diameter-depth relationship from ranger lunar charts. Bulletin of the Astronomical Institute of Czechoslovakia,1968,19:229 被引 2    
8.  Chappelow J E. Simple impact crater shape determination from shadows. Meteoritics and Planetary Science,2013,48(10):1863-1872 被引 1    
9.  Daubar I J. The morphology of small fresh craters on Mars and the Moon. Journal of Geophysical Research: Planets,2014,119(12):2620-2639 被引 2    
10.  Di K C. Rock size-frequency distribution analysis at the Chang’E-3 landing site. Planetary and Space Science,2016,120:103-112 被引 7    
11.  Ding C Y. Fragments delivered by secondary craters at the Chang' E-4 landing site. Geophysical Research Letters,2020,47(7):e2020GL087361 被引 5    
12.  Fassett C I. The rate of crater degradation and topographic evolution on the Moon: Results from the Maria and Initial comparisons with the highlands. LPI,2014(1777):1429 被引 1    
13.  Gou S. Forsteritic olivine and magnesium-rich orthopyroxene materials measured by Chang' E-4 rover. Icarus,2020,345:113776 被引 5    
14.  Gou S. In situ spectral measurements of space weathering by Chang'E-4 rover. Earth and Planetary Science Letters,2020,535:116117 被引 4    
15.  Hartmann W K. Chronology of planetary volcanism by comparative studies of planetary craters. Basaltic Volcanism on the Terrestrial Planets,1981:1050-1127 被引 3    
16.  Hartmann W K. Does crater“saturation equilibrium”occur in the solar system?. Icarus,1984,60(1):56-74 被引 8    
17.  Huang J. Geological characteristics of Von Karman crater, northwestern south pole-Aitken Basin: Chang' E-4 landing site region. Journal of Geophysical Research: Planets,2018,123(7):1684-1700 被引 14    
18.  Jia M N. Multi-scale morphologic investigation of craters in the Chang'E-4 landing area. Icarus,2021,355:114164 被引 2    
19.  Krishna N. Impact spallation processes on the Moon: A case study from the size and shape analysis of ejecta boulders and secondary craters of Censorinus crater. Icarus,2016,264:274-299 被引 2    
20.  Li C L. The Moon’s farside shallow subsurface structure unveiled by Chang'E-4 Lunar Penetrating Radar. Science Advances,2020,6(9):eaay6898 被引 14    
引证文献 1

1 马龙宇 一种扭转式载人月球车及其高速移动性能研究 宇航学报,2023,44(9):1392-1400
被引 0 次

显示所有1篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号