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VACUUM ›› 2024, Vol. 61 ›› Issue (5): 51-56.doi: 10.13385/j.cnki.vacuum.2024.05.07

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Research and Development Analysis of Lunar Environment Simulation Facility

WANG Jun-wei, GONG Jie, XU Meng-long, LI Qiang   

  1. Beijing Institute of Spacecraft Environment Engineering, Beijing 100094, China
  • Received:2024-06-27 Online:2024-09-25 Published:2024-10-10

Abstract: The lunar environment simulation facility can simulate the temperature, vacuum, lunar dust and other environmental factors on the lunar surface in order to carry out relevant science research and test verification on the ground. In this paper, the current development status of lunar environment simulation facility is tracked and studied, and the key technologies for the development of lunar environment simulation equipment are sorted out in combination with the development and use of lunar environment simulation facility at home and abroad. Moreover, the development suggestions are proposed for the lunar environment simulation facility required for manned lunar exploration activities in the future.

Key words: moon, lunar dust, environment simulation, manned lunar exploration

CLC Number:  V416.5

[1] 冯咬齐, 易忠, 李西园, 等. 面向载人月球探测的月面环境模拟试验关键技术分析[J]. 航天器环境工程, 2018, 35(1): 1-6.
[2] 叶培建, 果琳丽, 张志贤, 等. 有人参与深空探测任务面临的风险和技术挑战[J]. 载人航天,2016,22(2):143-149.
[3] MARMOLEJO J, EWERT M.Human exploration system test-bed for integration and advancement (HESTIA) support of future NASA deep-space missions[C]//Annual AIAA Technical Symposium of the Houston Section. Houston, TX, 2016.
[4] GAIER J R, SECHKAR E A.Lunar simulation in the lunar dust adhesion bell jar[C]// 45th AIAA Aerospace Sciences Meeting and Exhibit. Reno, Nevada: AIAA, 2007.
[5] CRAVEN P, VAUGHN J, SCHNEIDER T, et al.MSFC lunar environment test system (LETS) system development[C]//3rd Lunar Regolith Simulant Workshop. Huntsville, Alabama, 2009.
[6] HAYWARD E G, NEHLS M, SCHNEIDER T, et al.Designing the PLANET chamber for lunar environment ground testing[C]//AIAA SCITECH 2023 Forum. National Harbor, MD: AIAA, 2023.
[7] SUMLIN B J, MEYER M E.A ground testing program to verify lunar dust-tolerant hardware for the artemis mission[C]//50th International Conference on Environmental Systems. Lisabon, Portugal,2021.
[8] KRUZELECKY R V, LAVOIE J, MURZIONAK P, et al.DTVAC dusty planetary thermo-vacuum simulator and LN2 commissioning[C]//49th International Conference on Environmental Systems. Boston, Massachusetts, 2019.
[9] KRUZELECKY R V, LAVOIE J, MURZIONAK P, et al.DTVAC dusty planetary thermo-vacuum simulator[C]//47th International Conference on Environmental Systems. Charleston, South Carolina, 2017.
[10] YOO Y, CHUNG H S, SHIN E L, et al.The KICT dirty thermal vacuum chamber (DTVC): large-scale space environment simulation of the moon and mars[C]// 49th Lunar and Planetary Science Conference. Woodlands, TX, 2018.
[11] CHUNG T, YOO Y, SHIN H S.A lunar surface environment simulator: dirty thermal vacuum chamber (DTVC)[C]//Lunar ISRU 2019: Developing a New Space Economy Through Lunar Resources and Their Utilization. Columbia, Maryland, 2019.
[12] MAGNANI P, SAVOIA M, HAZAN D, et al.Lunar icy soil sampling[C]// 66th International Astronautical Congress (IAC 2015). France: International Astronautical Federation, 2015.
[13] ZACNY K, CRAFT J, DAVILA A, et al.LunarVader: testing of a 1 meter lunar drill in a 3.5 meter vacuum chamber and in the Antarctic lunar analog site[C]// 2012 IEEE Aerospace Conference. Big Sky, MT: IEEE, 2012.
[14] ZACNY K, PAULSEN G, SZCZESIAK M, et al.LunarVader: development and testing of lunar drill in vacuum chamber and in lunar analog site of antarctica[J]. Journal of Aerospace Engineering, 2013, 26(1): 74-86.
[15] ZACNY K, MAKSYMUK M, WILSON J, et al.Rotary percussive drilling in a vacuum chamber: a test bed for lunar and mars drilling[C]// Joint Annual Meeting of LEAG-ICEUM-SRR. Cape Canaveral, Florida, 2008.
[16] KLEINHENZ J, SMITH J, ROUSH T, et al.Volatiles loss from water bearing regolith simulant at lunar environments[C]// Earth and Space 2018: Engineering for Extreme Environments. Reston, VA: American Society of Civil Engineers, 2018.
[17] 李瑞林,陈大庆,周国庆,等. 月球小重力及真空环境地面模拟试验系统研制[J]. 中国矿业大学学报,2022,51(5):823-838.
[18] ZHANG T, LIU S T, DING X L, et al.Thermal vacuum regolith environment simulator for China's deep lunar drilling exploration[J]. Applied Thermal Engineering, 2018, 144: 779-787.
[19] 季节, 杨旭, 张伟伟, 等. 含冰月壤冻土钻取采样方案设计与验证[J]. 航天器工程, 2023, 32(1): 73-81.
[20] 于强, 王志浩, 王超, 等. 月球极区水冰钻取模拟试验系统研究[J]. 航天器环境工程, 2022, 39(5): 455-459.
[21] 薛丹,刘金远,李书翰. 月表尘埃颗粒带电的机理及应用研究[J]. 物理学报,2018,67(13):179-186.
[22] HOPPENBROUWERS T, URBINA D, IMHOF B, et al.Analogues for preparing robotic and human exploration of the moon[C]//International Astronautical Congress. Daejeon, Korea, 2015.
[23] DING J H, XIE G X, GUO L L, et al.Karst cave as terrestrial simulation platform to test and design human base in lunar lava tube[J]. Space: Science & Technology, 2022, 2022:9875780.
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