期刊文献+

The origin and geological significance of lunar ridges 被引量:11

The origin and geological significance of lunar ridges
在线阅读 下载PDF
导出
摘要 Lunar ridges are a kind of familiar linear structures developed on the lunar surface. The distribution pattern, formation mechanism and research significance of lunar ridges are discussed in this paper. Single lunar ridges are usually distributed in the form of broken lineation, and, as whole, lunar ridges are trapezoidal or annular in shape around the maria. As to the formation mechanism, only volcanism or tectonism was emphasized in the past, but the two processes are seldom taken into combined consideration. On the basis of detailed analyses, the authors thought that tectonism is a prerequisite for the formation of lunar ridges, while volcanism is the key factor controlling their particular shapes. Finally, the authors pointed out that it is very significant in the study of lunar ridges to link the course of lunar structure evolution with the stress state in the lunar crust. Lunar ridges are a kind of familiar linear structures developed on the lunar surface. The distribution pattern, formation mechanism and research significance of lunar ridges are discussed in this paper. Single lunar ridges are usually distributed in the form of broken lineation, and, as whole, lunar ridges are trapezoidal or annular in shape around the maria. As to the formation mechanism, only volcanism or tectonism was emphasized in the past, but the two processes are seldom taken into combined consideration. On the basis of detailed analyses, the authors thought that tectonism is a prerequisite for the formation of lunar ridges, while volcanism is the key factor controlling their particular shapes. Finally, the authors pointed out that it is very significant in the study of lunar ridges to link the course of lunar structure evolution with the stress state in the lunar crust.
出处 《Chinese Journal Of Geochemistry》 EI CAS 2007年第4期418-424,共7页 中国地球化学学报
关键词 构造作用 火山作用 压力 月亮 山脊 lunar ridge tectonism volcanism stress system
  • 相关文献

参考文献23

  • 1[1]Alan B.Binder (1982) Post-Imbrian global lunar tectonism:evidence for an initially totally molten moon[J].The Moon and the Planets.26,117-133.
  • 2[2]Bryan W.B.(1973) Wrinkle-ridges as deformed surface crust on ponded mare lava[J].LSCP.4,93-106.
  • 3[3]Charles V.Fulmer and Wayne A.Roberts (1967) Surface lineaments displayed on lunar orbiter pictures[J].Icarus.7,394-406.
  • 4[4]Colton G.W.,Howard K.A.,and Moore H.J.(1972) Mare ridges and arches in southern Oceanus Procellarum[Z].Apollo 16 Prelim.Sci.Rep.,NASA Publication.,SP-315,29-93.
  • 5[5]Don E.Wilhelms (1987) The Geologic History of the Moon[M].pp.1348.U.S.Geological Survey Professional Paper.
  • 6[6]Eppler D.T.,Nummedal D.,and Ehrlich R.(1978) Structural implications of elongate craters (abstract)[J].Lunar and Planetary Science.IX,294-296.
  • 7[7]Fagin S.W.,Worrall D.M.,and Muehlberger W.R.(1978) Lunar mare ridge orientations:Implications for lunar tectonic models[Z].Proc.Lunar Planet.Sci.Conf.9th,3473-3479.
  • 8[8]vip J.E.and Fielder G.(1968) Lunar ring structures and the nature of maria[J].Planetary and Space Science.16,665-666.
  • 9[9]Hodges C.A.(1973) Mare ridges and lava lakes[Z].Apollo 17 Prelim.Sci.Rep.NASA Publication,SP-330,12-31.
  • 10[10]Howard K.A.and Muehlberger W.R.(1973) Lunar thrust faults in the Taurus-Littrow region[Z].Apollo 17 Prelim.Sci.Rep.,NASA Publication,Sp-330,22-31.

同被引文献83

  • 1CHEN ShengBo , MENG ZhiGuo, CUI TengFei, LIAN Yi, WANG JingRan & ZHANG XuQing College of Geoexploration Science and Technology, Jilin University, Changchun 130026, China.Geologic investigation and mapping of the Sinus Iridum quadrangle from Clementine, SELENE, and Chang’e-1 data[J].Science China(Physics,Mechanics & Astronomy),2010,53(12):2179-2187. 被引量:12
  • 2岳宗玉,吴淦国,刘建忠,欧阳自远.地月系统不同成因环形构造及其影像特征[J].矿物学报,2006,26(4):441-447. 被引量:4
  • 3Solomon S C,Head J W.Vertical movements in mare basins:re-lation to mare emplacement,basin tectonics,and lunar thermalhistory[J].Journal of Geophysical Research,1979,84:1667-1682.
  • 4Melosh H J.Global tectonics of a Despun planet[J].Icarus,1977,31:221-243.
  • 5Melosh H J.Tectonic patterns on a tidally distorted planet[J].Icarus,1980,43:334-337.
  • 6Plescia J B,Golombek M P.Origin of planetary wrinkle ridgesbased on the study of terrestrial analogs[J].Geological Societyof America Bulletin,1986,97:1289-1299.
  • 7Schultz R A.Localization of bedding plane slip and backthrustfaults above blind thrust faults:keys to wrinkle ridge structure[J].Journal of Geophysical Research,2000,105:12035-12052.
  • 8Sharpton V L,Head III J W.Lunar mare ridges:analysis ofridge-crater intersections and implications for the tectonic origin ofmare ridges[M]//Lunar and Planetary Institute.The 18th Lu-nar and Planetary Science Conference.Houston:Lunar and Plan-etary Institute,1988:307-317.
  • 9Fagin S W,Worrall D M,Muehlberger W R.Lunar mare ridge o-rientations:implications for lunar tectonic models[M]//Lunarand Planetary Institute.The 9th Lunar and Planetary ScienceConference.Houston:Lunar and Planetary Institute,1978:3473-3479.
  • 10Solomon S C,Head J W.Lunar Mascon basins:Lava filling,tec-tonics,and evolution of the lithosphere[J].Reviews of Geo-physics,1980,18(1):107-141.

引证文献11

二级引证文献60

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部