Physical and mechanical properties of the lunar soil (a review)

E. N. Slyuta1
1Vernadsky Institute of Geochemistry and Analytical Chemistry, Russian Academy of Sciences, Moscow, Russia

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Allton, J.H. and Waltz, S.R., Depth scales for Apollo 15, 16, and 17 drill cores, Proc. 11th Lunar and Planet. Sci. Conf., Houston, 1980, pp. 1463–1477.

Atsagortsyan, Z.A., Akopyan, G.G., Sarkisov, R.R., Cherkasov, I.I., and Shvarev, V.V., To the problem for creating a lunar soil analog, in Sovremennye predstavleniya o Lune (Modern Conception of the Moon), Moscow: Nauka, 1972, pp. 113–116.

Batiste, S.N. and Sture, S., Lunar regolith simulant MLS-1: production and engineering properties, in Lunar Regolith Simulant Materials Workshop, Marshal Inst., 2005, pp. 12–13.

Battler, M.M. and Spray, J.G., The Shawmere anorthosite and OB-1 as lunar highland regolith simulants, Planet. Space Sci., 2009, vol. 57, pp. 2128–2131.

Bondarenko, N.V. and Shkuratov, Yu.G., A map of regolith-layer thickness for the visible lunar hemisphere from radar and optical data, Solar Syst. Res., 1998, vol. 32, no. 4, pp. 264–272.

Butler, J.C. and King, E.A., Analysis of grain size-frequency distributions of lunar fines, Proc. 5th Lunar Sci. Conf., 1974, pp. 829–841.

Cadenhead, D.A. and Jones, B.R., The adsorption of atomic hydrogen on 15101,168, in The Apollo 15 Lunar Samples, Chamberlain, J.W. and Watkins, C., Eds., Houston: The Lunar Science Institute, 1972a, pp. 272–274.

Cadenhead, D.A., Wagner, N.J., Jones, B.R., and Stetter, J.R., Some surface characteristics and gas interactions of Apollo 14 fines and fragments, Proc. 3rd Lunar Sci. Conf., 1972b, pp. 2243–2257.

Cadenhead, D.A., Stetter, J.R., and Buergel, W.G., Pore structure in lunar samples, J. Colloid Interface Sci., 1974, vol. 47, pp. 322–336.

Cadenhead, D.A. and Stetter, J.R., Specific gravities of lunar materials using helium pycnometry, Proc. 6th Lunar Sci. Conf., 1975, pp. 3199–3206.

Carpenter, P., Sibille, L., Wilson, S., and Meeker, G., Development of standardized lunar regolith simulant materials, Microscopy Microanal., 2006, vol. 12,suppl. 02, pp. 886–887.

Carrier, W.D. III, Lunar soil mechanics on the Apollo missions, Texas Civil Eng., 1970, Abstr. no. 40, p. 7.

Carrier, W.D. III, Bromwell, L.G., and Martin, R.T., Strength and compressibility of returned lunar soil, Proc. 3rd Lunar Sci. Conf., 1972, pp. 3223–3234.

Carrier, W.D. III, Mitchell, J.K. and Mahmood, A., The nature of lunar soil, J. Soil Mech. Found. Div., Am. Soc. Civ. Eng., 1973a, vol. 99, pp. 813–832.

Carrier, W.D. III, Mitchell, J.K. and Mahmood, A., The relative density of lunar soil, Proc. 4th Lunar Sci. Conf., 1973b, pp. 2403–2411.

Carrier, W.D. III, Lunar soil grain size distribution, Moon, 1973, vol. 6, pp. 250–263.

Carrier, W.D. III, Apollo drill core relationships, Moon, 1974, vol. 10, pp. 183–194.

Carrier, W.D. III, Geotechnical implications for a lunar base, Proc. 1984 Symp. on Lunar Bases and Space Activities of the 21st Century, Washington: NASA, 1984, pp. 75–76.

Carrier, W.D. III, Olhoeft, G.R., and Mendell, W., Physical properties of the lunar surface, in Lunar Sourcebook, Heiken, G., Vaniman, D., and French, B.M., Eds., Cambridge: Cambridge Univ. Press, 1991, pp. 475–594.

Cherkasov, I.I. and Shvarev, V.V., Grunty Luny (Lunar Soils), Moscow: Nauka, 1975.

Choate, R., Batterson, S.A., Christensen, E.M., Hutton, R.E., Jaffe, L.D., Jones, R.H., Ko, H.Y., Scott, R.F., Spencer, R.L., Sperling, F.B., and Sutton, G.H., Lunar surface mechanical properties, in Surveyor Program Results, Washington, NASA SP-18, 1969, pp. 129–171.

Costes, N.C., Carrier, W.D. III, Mitchell, J.K., and Scott, R.F., Apollo 11 soil mechanics investigation, Apollo 11 Preliminary Sci. Rep., 1969, NASA SP-214, pp. 85–122.

Costes, N.C., Carrier, W.D. III, Mitchell, J.K., and Scott, R.F., Apollo 11: soil mechanics results, J. Soil Mech. Found. Div., Am. Soc. Civ. Eng., 1970, vol. 96, pp. 2045–2080.

Costes, N.C., Cohron, G.T., and Moss, D.C., Cone penetration resistance test-an approach to evaluating the in-place strength and packing characteristics of lunar soils, Proc. 2nd Lunar Sci. Conf., 1971, pp. 1973–1987.

Desai, C.S., Saadatmanesh, H., and Girdner, K., Development and mechanical properties of structural materials from lunar simulants, in Resources of Near-Earth Space, Lewis, J.S., Matthews, M.S., and Guerrieri, M.L., Eds., Univ. Arizona Press, 1993, pp. 297–324.

Duennebier, F. and Sutton, G., Thermal moonquakes, J. Geophys. Res., 1974, vol. 79, pp. 4351–4363.

Duke, M.B., Woo, C.C., Bird, M.L., Sellers, G.A., and Finkelman, R.B., Lunar soil: size distribution and mineralogical constituents, Science, 1970, vol. 167, pp. 648–650.

Durgunoglu, H.T. and Mitchell, J.K., Static penetration resistance of soils: I-analysis, Proc. Specialty Conf. on in situ Measurement of Soil Properties, Amer. Soc. of Civil Engineers, Raleigh, 1975, pp. 151–171.

Engelhardt, W.V., Hurrle, H., and Luft, E., Microimpactinduced changes of textural parameters and modal composition of the lunar regolith, Proc. 7th Lunar Sci. Conf., 1976, vol. 1, pp. 373–392.

Fechtig, H., Gentner, V., Hartung, J.B., Nagel, K., Neukum, G., Schneider, E., and Storzer, D., Microcraters on lunar samples, in The Soviet-American Conference on Cosmochemistry of the Moon and Planets, Pomeroy, J.H. and Hubbard, N.J., Eds., Washington DC: NASA, 1977, pp. 585–604.

Florenskii, K.P., Bazilevskii, A.T., and Ivanov, A.V., Role of exogenous factors in lunar surface formation, in Kosmokhimiya Luny i planet (Cosmochemistry of the Moon and Planets), Moscow: Nauka, 1975, pp. 439–452.

French, B.M., The Moon Book, Harmondsworth: Penguin Books, 1977.

Gault, D.E., Horz, F., and Hartung, J.B., Abrasion and catastrophic rupture of lunar rocks: some implications to the micrometeoroid flux at 1 AU, Proc. 13th Open COSPAR Space Res. Meeting of Working Groups; Proc. 15th Phys. Sci. Planet. Meeing COSPAR, Madrid, 1972, Berlin, 1973, vol. 2, pp. 1085–1093.

Gromov, V.V., Leonovich, A.K., Shvarev, V.V., Lozhkin, V.A., Penetrigov, V.N., Semenov, P.S., Rybakov, A.V., Naumov, P.N., Grushevskii, V.P., and Gubareva, V.M., Physical and mechanical properties of lunar soil sample in nitrogen medium: research results, in Grunt iz materikovogo raiona Luny (Soil from Continental Part of the Moon), Moscow: Nauka, 1979, pp. 686–690.

He, X.X., Xiao, L., Huang, J., Wan, C.H., Wu, T., Gao, R., Yan, S.W., and He, Q., Lunar regolith simulant CUG-1A, Proc. 41st Lunar and Planet. Sci. Conf., Houston, 2010, Abstr. #1183.

Heiken, G., Duke, M., McKay, D.S., Clanton, U.S., Fryxell, R., Nagle, J.S., Scott, R., and Sellers, G.A., Preliminary stratigraphy of the Apollo 15 drill core, Proc. 4th Lunar Sci. Conf., Houston, 1973, vol. 1, pp. 191–213.

Heiken, G.H., Morris, R.V., McKay, D.S., and Fruland, R.M., Petrographic and ferromagnetic resonance studies of the Apollo 15 deep drill core, Proc. 7th Lunar Sci. Conf., 1976, vol. 1, pp. 93–111.

Hortz, F., Morrison, D.A., Gault, D.E., Oberbeck, V.R., Quaide, V.L., Vedder, J.F., Brownlee, D.E., and Hartung, J.B., The micrometeoroid complex and evolution of the lunar regolith, in The soviet-american conference on cosmochemistry of the Moon and planets, Pomeroy, J.H., Hubbard, N.J., Eds., Washington DC: NASA, 1977, pp. 605–636. Moscow: Nauka, 1975, pp. 473–500.

Heywood, H., Particle size and shape distribution for lunar fines sample 12057.72, Proc. 2nd Lunar Sci. Conf., 1971, pp. 1989–2001.

Horai, K. and Winkler, J.L., Thermal diffusivity of four Apollo 17 rock samples, Proc. 7th Lunar Sci. Conf., 1976, pp. 3183–3204.

Horai, K. and Winkler, J.L., Thermal diffusivity of two Apollo 11 samples, 10020.44 and 10065.23: effect of petrofabrics on the thermal conductivity of porous lunar rocks under vacuum, Proc. 11th Lunar and Planet. Sci. Conf., Houston, 1980, pp. 1777–1788.

Houston, W.N., Mitchell, J.K., and Carrier, W.D. III, Lunar soil density and porosity, Proc. 5th Lunar and Planet. Sci. Conf., Houston, 1974, pp. 2361–2364.

Jaffe, L.D., Alley, C.O., Batterson, S.A., Christensen, E.M., Dwornik, S.E., Gault, D.E., Lucas, J.W., Muhleman, D.O., Norton, R.H., Scott, R.F., Shoemaker, E.M., Steinbacher, R.H., Sutton, G.H., and Turkevich, A.L., Principal scientific results from the surveyor program, Icarus, 1970, vol. 12, pp. 156–160.

Jaffe, L.D., Shear strength of lunar soil from oceanus procellarum, Moon, 1973, vol. 8, pp. 58–72.

Jiang, M., Li, L., Wang, C., and Zhang, H., A new lunar soil simulant in China, Proc. Earth Space Eng., Sci., Construct., Operat. Challeng. Environ., Honolulu, 2010, pp. 3617–3623.

Jiang, M., Shen, Z., Li, L., and Su, J., A novel specimen preparation method for TJ-1 lunar soil simulant in hollow cylinder apparatus, J. Rock Mech. Geotechn. Eng., 2012, vol. 4, no. 4, pp. 312–325.

Kanamori, H., Satoru, U., Tetsuji, Y., Shinji, M., and Kenji, T., Properties of lunar soil simulant manufactured in Japan, Proc. 6th Int. Symp. on Space, Reston, 1998a, pp. 462–468.

Kanamori, H., Udagawa, S., Yoshida, T., Matsumoto, S., and Takagi, K., Properties of lunar soil simulant manufactured in Japan, Proc. Space 98, Albuquerque, 1998b, pp. 462–468.

King, E.A., Jr., Butler, J.C., and Carman, M.F., Chondrules in Apollo 14 samples and size analyses of Apollo 14 and 15 fines, Proc. 3rd Lunar Sci. Conf., 1972, vol. 1, pp. 673–686.

King, E.A., Jr. and Butler, J.C., Rosin’s law and the lunar regolith, Moon, 1977, vol. 17, pp. 177–178.

Krotikov, V.D. and Troitskii, V.S., Detection of heat flux from lunar depths, Astron. Zh., 1963, vol. 40, no. 6, pp. 1076–1082.

Leonovich, A.K., Gromov, V.V., Rybakov, A.V., Petrov, V.K., Pavlov, P.S., and Cherkasov, I.I., Research of lunar soil mechanical properties by “Lunokhod-1” self-propelled apparatus, in Peredvizhnaya laboratoriya na Lune “Lunokhod-1” (“Lunokhod-1”: Movable Laboratory on the Moon), Vinogradov, A.P., Ed., Moscow: Nauka, 1971, pp. 78–88.

Leonovich, A.K., Gromov, V.V., Dmitriev, A.D., Lozhkin, V.A., Pavlov, P.S., and Rybakov, A.V., Physical and mechanical properties of lunar soil sample in nitrogen medium: research results, in Lunnyi grunt iz Morya Izobiliya (Lunar Soil from Mare Fecunditatis), Vinogradov, A.P., Ed., Moscow: Nauka, 1974, pp. 563–570.

Leonovich, A.K., Gromov, V.V., Dmitriev, A.D., Penetrigov, V.N., Semenov, P.S., and Shvarev, V.V., The main pecularities of the processes of the deformation and destruction of lunar soil, in The Soviet-American Conference on Cosmochemistry of the Moon and Planets, Pomeroy, J.H. and Hubbard, N.J., Eds., Washington DC: NASA, 1977, pp. 735–744.

Li, Y., Liu, J., and Yue, Z., NAO-1: lunar highland soil simulant developed in China, J. Aerosp. Eng., 2009, vol. 22, pp. 53–57.

Lu, Y. and Shevchenko, V.V., Increased iron abundances in slope avalanches of certain lunar craters, Solar Syst. Res., 2012, vol. 46, no. 4, pp. 253–262.

Mahmood, A., Mitchell, J.K., and Carrier, W.D. III, Grain orientation in lunar soil, Proc. 5th Lunar Sci. Conf., 1974, pp. 2347–2354.

McKay, D.S., Dungan, M.A., Morris, R.V., and Fruland, R.M., Grain size, petrographic, and FMR studies of the double core 60009/10: a study of soil evolution, Proc. 8th Lunar Sci. Conf., 1977, pp. 2929–2952.

McKay, D.S., Fruland, R.M., and Heiken, G.H., Grain size and the evolution of lunar soils, Proc. 5th Lunar Sci. Conf., 1974, vol. 1, pp. 887–906.

McKay, D.S., Basu, A., and Waits, G., Grain size and the evolution of Luna 24 soils, in Mare Crisium: The View from Luna 24, Merrill, R.B. and Papike, J.J., Eds., New York: Pergamon, 1978, pp. 125–136.

McKay, D.S., Carter, J.L., Boles, W.W., Allen, C.C., and Allton, J.H., JSC-1: a new lunar soil stimulant, Proc. 24th Lunar and Planetary Sci. Conf., Houston, 1993, pp. 963–964.

Melosh, H.J., Impact Cratering: A Geologic Process, Oxford: Oxford Univ. Press, 1989.

Mitchell, J.K., Bromwell, L.G., Carrier, W.D. III, Costes, N.C., and Scott, R.F., Soil-mechanics experiment, in Apollo 14 Preliminary Sci. Rep., 1971, NASA SP-272, pp. 87–108.

Mitchell, J.K., Bromwell, L.G., Carrier, W.D. III, Costes, N.C., Houston, W.N., and Scott, R.F., Soilmechanics experiments, Apollo 15 Preliminary Sci. Rep., 1972a, NASA SP-289, pp. 7-1–7-28.

Mitchell, J.K., Carrier, W.D. III, Houston, W.N., Scott, R.F., Bromwell, L.G., Durgunoglu, H.T., Hovland, H.J., Treadwell, D.D., and Costes, N.C., Soil mechanics, Apollo 16 Preliminary Sci. Rep., 1972,b NASA SP-315, pp. 8-1–8-29.

Mitchell, J.K., Houston, W.N., Scott, R.F., Costes, N.C., Carrier, W.D. III, and Bromwell, L.G., Mechanical properties of lunar soil: density, porosity, cohesion, and angle of friction, Proc. 3rd Lunar Sci. Conf., 1972c, pp. 3235–3253.

Mitchell, J.K., Carrier, W.D. III, Costes, N.C., Houston, W.N., Scott, R.F., and Hovland, H.J., Soil mechanics, Apollo 17 Preliminary Sci. Rep., 1973, NASA SP-330, pp. 8-1–8-22.

Mitchell, J.K., Houston, W.N., Carrier, W.D. III, and Costes, N.C., Apollo soil mechanics experiment S-200, Final Report, NASA Contract NAS 9-11266, Berkeley: Univ. of California, Space Sci. Lab. Ser. 15, 1974, issue 7.

Mitchell, J.K. and Houston, W.N., Static penetration testing on the Moon, Proc. 1st European Symp. in Penetration Testing, Orlando: Intl. Soc. for Soil Mech. and Found. Eng., 1974, pp. 277–284.

Mitchell, J.K., Fundamentals of Soil Behavior, New York: Wiley, 1976.

Morris, R.V., Score, R., Dardano, C., and Heiken, G., Handbook of lunar soils, JSC Publ. no. 19069, Planetary Materials Branch Publ. 67, Houston: NASA Johnson Space Center, 1983.

Oravec, H.A., Zeng, X., and Asnani, V.M., Design and characterization of GRC-1: a soil for lunar terramechanics testing in Earth-ambient conditions, J. Terramech., 2010, vol. 47, no. 6, pp. 361–377.

Rode, O.D., Ivanov, A.V., Nazarov, M.A., Tsimbal’nikov, A., Yurek, K., and Geil, V., Atlas mikrofotografii poverkhnosti chastits lunnogo regolita (Atlas of Microphotos for Particles Surface of Lunar Regolith), Prague: Akademiya, 1979.

Scott, R.F. and Roberson, F.I., Soil mechanics surface sampler, Surveyor Program Results. NASA SP-184, 1969, pp. 171–179.

Scott, R.F. and Zuckerman, K.A., Examination of returned Surveyor III surface sampler, Proc. Lunar Sci. Conf., 1971, pp. 2743–2751.

Shevchenko, V.V., Pinet, P.C., Chevrel, S., Daydou, Y., Yangxiaoyi, L., Skobeleva, T.P., Kvaratskhelia, O.I., and Rosemberg, C., The current avalanche deposits in lunar crater Reiner. LRO data, Proc. 38th Lunar Planet. Sci. Conf., Houston, 2011, p. 1161.

Shevchenko, V.V., Pine, P.K., Shevrel’, S.D., Dadu, I., Lu, Ya., Skobeleva, T.P., Kvaratskheliya, O.I., and Rozemberg, K., Modern slope processes on the Moon, Solar Syst. Res., 2012, vol. 46, no. 1, pp. 1–17.

Shkuratov, Yu.G., Luna dalekaya i blizkaya (Moon Far and Near), Kharkov: V.N. Karazin Kharkiv National Univ., 2006.

Stakheev, Yu.I., Regularities of lunar soil particles distribution, in Grunt iz materikovogo raiona Luny (Soil from Continental Part of the Moon), Moscow: Nauka, 1979a, pp. 78–82.

Stakheev, Yu.I. and Lavrukhina, A.K., Granulometric characteristics of lunar regolith and regolith thickness power at the place of Luna-16 and Luna-20 landing, in Grunt iz materikovogo raiona Luny (Soil from Continental Part of the Moon), Moscow: Nauka, 1979b, pp. 74–76.

Stoeser, D., Wilson, S., and Rickman, D.L., Design and specifications for the highland regolith prototype simulants NU-LHT-1M and -2M, NASA/TM-2010216438. MSFC, Alabama, 2010a.

Stoeser, D.B., Wilson, S., and Rickman, D.L., Preliminary geological findings on the BP-1 simulant, NASA/TM2010-216444. MSFC, Alabama, 2010b.

Taylor, L.A. and Liu, Y., Important considerations for lunar soil simulants, Earth Space Sci. Engr., Sci., Constr., Oper., 2010, pp. 106–118.

Tikhonova, T.V. and Troitskii, V.S., How the heat flux from the lunar depths effects onto its radio radiation, if the matter in the depth changes, Astron. Zh., 1969, vol. 46, no. 1, pp. 159–171.

Trofimov, V.T., Korolev, V.A., Voznesenskii, E.A., Golodkovskaya, G.A., Vasil’chuk, Yu.K., and Ziangirov, R.S., Gruntovedenie (Soil Science), Trofimov, V.T., Ed., Moscow: MSU, 2005.

Troitskii, V.S. and Tikhonova, T.V., Research results of Moon surface layer according to its self radiation, in Sovremennye predstavleniya o Lune (Modern Conception of Moon), Moscow: Nauka, 1972, pp. 46–62.

Tsytovich, N.A., Mekhanika merzlykh gruntov (Mechanics of Frozen Soils), Moscow: Vysshaya shkola, 1973.

Weiblen, P.W., Murawa, M.J., and Reid, K.J., Preparation of simulants for lunar surface materials, in Space II, New York: Amer. Soc. of Civil Engineers, 1990, pp. 428–435.

Zeng, X.M., He, C., and Wilkinson, A.M., Geotechnical properties of NT-LHT-2M lunar highland stimulant, J. Aerosp. Eng., 2010, vol. 23, pp. 213–218.