Chemical classification of space debris

被引:0
作者
Li, CL [1 ]
Zuo, W
Liu, JJ
Ouyang, ZY
机构
[1] Chinese Acad Sci, Natl Astron Observ, Beijing 100012, Peoples R China
[2] Chinese Acad Sci, Inst Geochem, Guiyang 550002, Guizhou, Peoples R China
[3] Chinese Acad Sci, Grad Sch, Beijing 100039, Peoples R China
关键词
space debris; chemical classification; space environment;
D O I
暂无
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Space debris, here referring to all non-operating orbital objects, has steadily increased in number so that it has become a potential barrier to the exploration of space. The ever-increasing number of space debris pieces in space has created an increasingly threatening hazard to all on-the-orbit spacecraft, and all future space exploration activities have to be designed and operated with respect to the increasing threat posed by space debris. Generally, space debris is classified as large, medium and small debris pieces based on their sizes. The large debris piece is easily catalogued, but medium to small debris pieces are very difficult to track and also quite different in damage mechanisms from the large ones. In this paper, a scheme of chemical classification of space debris is developed. In our scheme, the first-order classification is employed to divide space debris into two groups: natural micrometeoroids and artificial space debris. The second-order classification is based on their chemical patterns and compositions. The natural micrometeoroids are further divided into three types, namely mafic, metal and phyllosilicate micrometeorites, while the artificial space debris is divided into seven types, which are polymers, non-metal debris, metals and their alloys, oxides, sulphides and their analogs, halides and carbides. Of the latter seven types, some can also be further divided into several sub-types. Chemical classification of space debris is very useful for the study of the chemical damage mechanism of small debris pieces, and also is of great significance in constraining the origin and source of space debris and assessing their impact on spacecraft and human space activities.
引用
收藏
页码:1090 / 1093
页数:4
相关论文
共 9 条
[1]   Hypervelocity impacts in low Earth orbit: Cosmic dust versus space debris [J].
Graham, GA ;
Kearsley, AT ;
Grady, MM ;
Wright, IP ;
Griffiths, AD ;
McDonnell, JAM .
SPACE DEBRIS, 1999, 23 (01) :95-100
[2]  
GRAHAM GA, 1997, LPI CONTRIBUTION, V1090, P1423
[3]  
[李春来 Li Chunlai], 2002, [第四纪研究, Quaternary Sciences], V22, P540
[4]   The third peak of the 1998 Leonid meteor shower [J].
Ma, YH ;
He, YW .
CHINESE JOURNAL OF ASTRONOMY AND ASTROPHYSICS, 2001, 1 (03) :271-274
[5]   Direct simulation of meteoroids and space debris flux on LDEF spacecraft surfaces [J].
Miao, JQ ;
Stark, JPW .
PLANETARY AND SPACE SCIENCE, 2001, 49 (09) :927-935
[6]  
*NASA LANG RES CTR, 2004, PART COMP
[7]   Analysis of the effectiveness of space debris mitigation measures using the DELTA model [J].
Walker, R ;
Martin, CE ;
Stokes, PH ;
Wilkinson, JE ;
Klinkrad, H .
SPACE DEBRIS, 2001, 28 (09) :1437-1445
[8]  
WARREN JL, 1997, COSMIC DUST CATALOG, V15, pR4
[9]  
ZIYUAN O, 1988, COSMOCHEMISTRY, P273