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J4  2012, Vol. 46 Issue (5): 777-784    DOI: 10.3785/j.issn.1008-973X.2012.05.001
土木工程     
月壤岩土工程问题研究进展
钟世英,凌道盛,吴晓君,陈云敏
浙江大学 软弱土与环境土工教育部重点实验室,浙江 杭州 310058
Review on geotechnical behavior of lunar soil
ZHONG Shi-ying, LING Dao-sheng , WU Xiao-jun, CHEN Yun-min
MOE Key Laboratory of Soft Soils and Geoenvironmental Engineering,Zhejiang University ,Hanzhou 310058,China
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摘要:

针对中国探月工程开展过程中遇到的月壤特性问题,综述国内外月壤的基本物理力学性质以及模拟月壤和机构相互作用的研究现状.给出模拟月壤的粒度分布、密度、孔隙比、强度指标和压缩指数等几参数的取值范围.总结出模拟月壤三轴试验的主要控制指标有:相对密度、围压、剪切速率等,并简要分析高真空度对模拟月壤性质的影响.通过对月球车研制中月壤对车轮牵引特性的影响、软着陆中月壤对足垫冲击响应等研究的发展现状的回顾,指出离散元方法在月壤特性分析和机构与模拟月壤相互作用等领域的应用前景.针对新型模拟月壤研制、模拟月壤本构关系和多种月面环境耦合下对月壤性能的影响等亟待解决的问题.

Abstract:

As to the problem on the properties of lunar soil occurred in Chinese lunar exploration project, the research status of the physical and mechanical properties of lunar soil and the interaction between lunar soil and tool were reviewed. The value range of simulated lunar soil parameters, such as grain size distribution, density, strength index and compression factor, were given in this work. It can be concluded that the relative density, confining pressure and shear rate are the main control factors in the triaxial tests of simulated lunar soil. Furthermore, the influence of high vacuum degree on the lunar soil behavior was analyzed. Based on the review of the tractive effort on the lunar rover wheel and the impulse response on the lunar rover footpad due to the lunar soil, it is found that the discrete element method can be used to assess the lunar soil behavior and the interaction between lunar soil and tool. Moreover, the outlook of the development of new simulated lunar soil, the constitutive relation of simulated lunar soil, and the influence of the lunar environment on the lunar properties were given.

出版日期: 2012-05-01
:  TU 43  
基金资助:

国家自然科学基金项目(50778163).

通讯作者: 凌道盛,男,教授、博导.     E-mail: dsling@ccea.zju.edu.cn
作者简介: 钟世英(1982-),女,博士,主要从事土动力方面的研究.E-mail:syzhong0706@163.com
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引用本文:

钟世英,凌道盛,吴晓君,陈云敏. 月壤岩土工程问题研究进展[J]. J4, 2012, 46(5): 777-784.

ZHONG Shi-ying, LING Dao-sheng , WU Xiao-jun, CHEN Yun-min. Review on geotechnical behavior of lunar soil. J4, 2012, 46(5): 777-784.

链接本文:

http://www.zjujournals.com/eng/CN/10.3785/j.issn.1008-973X.2012.05.001        http://www.zjujournals.com/eng/CN/Y2012/V46/I5/777

[1] 欧阳自远.月球科学概论[M].北京:中国宇航出版社,2005:10-196.
[2] MCKAY D S, HEIKEN G H, BASU A, et al. The lunar regolith [C]∥ Lunar Source Book. Cambridge: Cambridge University Press, 1991:285-356.
[3] SOMRIT C, NAKAGAWA M. Simulation of agglutinates formation [J]. Earth and Space, 2006,188(35):1-7.
[4] OKEEFE J D, AHRENS T J. Impactinduced energy parti tioning, melting, and vaporization on terrestrial planets [C]∥ Proceedings of the 8th Lunar Science Conference. New York: Pergamon Press, 1977: 3367-3374.
[5] 李雄耀,王世杰,陈丰,等. 月壤厚度的研究方法与进展[J]. 矿物学报, 2007,27(1):64-67.
LI Xiongyao, WANG Shijie, CHEN Feng,et al. Methods and advances in research on lunar soil thickness [J]. Acta Mineralogica Sinica, 2007,27(1):64-67.
[6] CARRIER W D, OLHOEFT G R, MENDELL W. Physical properties of the lunar surface[C]∥ Lunar Source Book. Cambridge: Cambridge University Press, 1991:475-594.
[7] CARRIER W, MITCHELL J K, MAHMOOD A. The nature of lunar soil [J]. Journal of the Soil Mechanics and Foundations Division, 1973, 99(10):813-832.
[8] STURE S. A review of geotechnical properties of lunar regolith simulants [C]∥ Earth & Space 2006: Enginee ring, Construction, and Operations in Challenging Environment. Houston: ASCE,2006:1-6.
[9] WILLMAM B M, BOLES W W, MCKAY S, et al. Properties of lunar soil stimulant JSC1[J]. Journal of Aerospace Engineering, 1994,8(2):77-87.
[10] COSTES N C, MITCHELL J K. Apollo 11 soil mechanics investigation [C]∥ Proceedings of Apollo 11 Lunar Science Conference. New York: Pergamon Press, 1970: 2025-2044.
[11] CARRIER D, LESLIE G. BROMWELL R, et al. Behavior of returned lunar soil in vacuum [J]. Journal of the Soil Mechanics and Foundations Division, 1973, 99(11): 979-996.
[12] KOBAYASHI T, OCHIAI H, FUKAGAWA R, et al. A proposal for estimating strength parameters of lunar surface from soil cutting resistances [C]∥ Earth & Space 2006: Engineering, Construction, and Operations in Challenging Environ ment. Houston: ASCE, 2006:1-8.
[13] WOOD D M. Soil behaviour and critical state soil mechanics [M]. Cambridge: Cambridge University Press, 1990:45-51.
[14] KLOSKY J L, STURE S, KO H Y. Geotechnical behavior of JSC1 lunar soil simulant [J]. Journal of Aerospace Engineering, 2000, 13(4):133-138.
[15] HAMMOND E C, BERRY F D, MITCHELL F, et al. Microcratering within the lunar regolith  a theory and observation [J]. Journal of Scanning Microscopies, 2000, 22(1):16-23.
[16] SCHULTZ R A. Cam cap models for lunar soil: a first look [C]∥Earth & Space 2006: Engineering, Cons truction, and Operations in Challenging Environment. Houston: ASCE, 2006:1-7.
[17] LADE P V. Overview of constitutive models for soils [C]∥ Calibration of Constitutive Models (GSP 139). [S. 1.] : ASCE, 2005:1-34.
[18] KLOSKY J L, STURE S, KO H Y, et al. Mechanical properties of JSC1 lunar Regolith simulant [C]∥ Procee dings of the Fifth International Conference on Space ’96 Albuquerque. New York: ASCE,1996:680-688.
[19] PERKINS S W, MADSON C R. Mechanical and load settlement characteristics of two lunar soil simulants [J] . Journal of Aerospace Engineering, 1996, 9(1):1-9.
[20] ZHENG Y C, WANG S J, OUYANG Z Y, et al. CAS1 lunar soil stimulant [J]. Advance in Space Research. 2009, 43(3):448-454.
[21] 郑永春,王世杰,冯俊明,等.CAS1 模拟月壤[J].矿物学报,2007,27(3/4):571-578.
ZHENG Yongchun, Wang Shijie,FENG Junming,et al.CAS1 lunar soil stimulant [J]. Acta Mineralogica Sinica,2007, 27(3/4):571-578.
[22] 郑永春,欧阳自远,王世杰,等. 月壤的物理和机械性质[J]. 矿物岩石,2004,24(4):14-19.
ZHENG Yongchun, OUYANG Ziyuan,Wang Shijie,et al. Physical and mechanical properties of lunar regolith [J] Journal of Mineralogy and Petrology,2004,24(4):14-19.
[23] 李建桥, 邹猛, 贾阳,等.用于月面车辆力学试验的模拟月壤研究[J].岩土力学,2008,29(6):1557-1561.
LI Jianqiao, ZOU Meng, JIA Yang, et al. Lunar soil simulant for vehicleterramechanics research in labtory [J]. Rock and Soil Mechanics,2008,29(6):1557-1561.
[24] 邹猛,李建桥,刘国敏,等.模拟月壤地面力学性质试验研究[J].岩土力学,2011,32(4):1057-1061.
ZOU Meng LI Jianqiao, LIU Guomin, et al. Lunar soil simulant for vehicleterramechanics research in labtory [J]. Rock and Soil Mechanics, 2011,32(4):1057-1061.
[25] 邹猛,李建桥,贾阳.月壤静力学特性的离散元模拟[J].吉林大学学报,2008,38(2):383-387.
ZOU Meng, LI Jianqiao, JIA Yang. Statics characteristics of lunar soil by DEM simulation [J]. Journal of Jilin University,2008,38(2):383-387.
[26] PERKINS S W. Bearing capacity of highly frictional material [J]. Geotechnical Testing Journal, 1991, 18(4): 450-462.
[27] CHANDRA S D, HAMID S, KIRSTEN G. Development and mechanical properties of structural materials from lunar simulants [C]∥NASA Space Engineering Research Center for Utilization of Local Planetary Resources. Tucson:University of Arizona Press, 1991, 4:16-25.
[28] MELZER K J. Methods for investigating the strength characteristics of a lunar soil stimulant [J]. Geotechnique, 1974, 24:13-20.
[29] ZENG X W, HE C M, ORAVEC H, et al. Geotechnical properties of JSC1A lunar soil simulant [J]. Journal of Aerospace Engineering, 2010,23(2):111-116.
[30] KLOSKY J L, STURE S, KO H Y, et al. Vibratory excavation and anchoring tools for the lunar surface [C]∥ Proceedings of the 5th International Conference on Space '96. Albuquerque : ASCE, 1996:903-911.
[31] DESAI C S, SAADATMANESH H, ALLEN T. Behavior of compacted lunar simulants using new vacuum triaxial device  [J]. Journal of Aerospace Engineering, 1992, 5(4): 425-441.
[32] KHAILD A A, HASAN A. Strength properties of JSC1A lunar regolith stimulant [J]. Journal of Geotechnical and Geoenvironmental Engineering, 2009, 135(5):673-679.
[33] MATSUSHIM T, KATAGIRI J, UESUGI K, et al. Imagebased modeling of lunar soil simulant for 3D DEM simulations [C]∥ Earth & Space 2006: Engineering, Construction, and Operations in Challenging Environ ment. Houston: ASCE, 2006:18.
[34] SLOTT R F. Failure [J].Geotechnique, 1987,37(4):423-466.
[35] CARRIER W D, BROMWELL III. Strength and compressibility of returned lunar soil [C]∥ Proceedings of the Lunar Science Conference. [S. 1.]: MIT Press,1972, 3:3223-3234.
[36] LEONOVICH A K, GROMOV V V, SEMYONOV P S,et al. Luna 16 and 20 investigations of the physical and mechanical properties of lunar soil [J]. Space Research, 1975,XV: 607-616.
[37] TRYANA V G, MASAMI N. Modeling of agglutinates and its mechanical properties[C]∥ Earth and Space 2008: Engineering, Science, Construction, and Operations in Challenging Environments. Long Beach: ASCE, 2008:1-8.
[38] BOURDEAU P L.Stochastic modeling of loadinduced settlement in loose granular materials [J]. Journal of Aerospace Engineering, 2009,22(1):33-42.
[39] ARSLAN H, STURE S, BATISTE S. Experimental simulation of tensile behavior of lunar soil stimulant JSC1 [J]. Materials and Engineering , 2008, 47(8): 201-207.
[40] PERKO H A, NELSON J D,SADEH W Z. Surface cleanliness effect on lunar soil shear strength [J]. Journal of Geotechnical and Geoenvironmental Engineering, 2001, 127(4): 371-383.
[41] HICHER P Y, CHANG C S. A constitutive model for lunar soil [C]∥ Earth and Space 2008: Engineering, Science, Construction, and Operations in Challenging Environments. Long Beach:ASCE, 2008:1-8.
[42] CHANG C S, HICHER P Y. Model for granular materials with surface energy forces [J]. Journal of Aerospace Engineering, 2009, 22 (1):43-52.
[43] KARAFIATH L L. Plasticity theory and the stress distribution beneath wheels [J]. Journal of Terramecha nics, 1971, 8(2): 49-60.
[44] KARAFIATH L L. Friction between solids and simulated lunar soils in ultrahigh vacuum and its significance for the design of lunar roving vehicles [J]. Nbs Space Simulation, 1970:225-244.
[45] NAKASHIMA H, AOKI S, KANAMORI H, et.al. Concept of virtual soil bin by DEM for lunar locomo tion studies [C]∥Earth & Space 2006: Engineering, Construction, and Operations in Challenging Environ ment. Houston: ASCE, 2006:1-8.
[46] WEIBLEN W, KOCKELMANN H, BURKARD H. Evaluation of different designs of wheel force transducers (part III) [J] . SAE Transactions,1999,108(2):1901-1912.
[47] BRAIN M, WALTER W, BOLES. Soiltool interaction theories as they apply to lunar soil simulation [J]. Journal of Aerospace Engineering,1995, 8(2):88-99.
[48] CARRIER WD. Particle size distribution of lunar soil [J]. Journal of Geotechnical and Geoenvironmental Engi neering, 2003,129(10): 956-959.
[49] GU K F, WEI Y Z,WANG H G, et al. Dynamic mode ling and sliding mode driving control for lunar rover slip [C]∥ Proceedings of the International Confe rence on Integration Technology. Shenzhen: IEEE,2007, 36-41.
[50] PERKINS S W, MADSON C R. Scale effects of shallow foundations on lunar regolith [C]∥ Proceedings of the Fifth International Conference on Space. New York: ASCE,1996:963-972.
[51] MITCHEL J K, HOUSTON W N, SCOTT R F. Mechanical properties of lunar soil: Density, porosity, cohesion and angle of internal friction [C]∥ Proceedings of the Lunar Science Conference 3rd. Houston:MIT Press, 1972: 3235-3253.
[52] 朱汪, 杨建中. 月球探测器软着陆机构着陆腿模型与仿真分析[J]. 宇航学报,2008,29(6) 1723-1728.
ZHU Wang, YANG Jianzhong. Modeling and simula tion of landing leg for the lunar landing gear system [J]. Journal of Astronautics,2008,29(6) 1723-1728.
[53] SPERLING F B. The surveyor shock absorber [C]∥Proceedings of the Aerospace Mechanisms Series. [S. 1.]:AIAA, 1970: 211-217.
[54]BEND S. Lunar module/LM/soil mechanics [M]. [S. 1.]: Analytical Mechanics,1968:1-91.

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