VACUUM ›› 2024, Vol. 61 ›› Issue (5): 51-56.doi: 10.13385/j.cnki.vacuum.2024.05.07
Previous Articles Next Articles
WANG Jun-wei, GONG Jie, XU Meng-long, LI Qiang
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. |
[1] | LIU Zhong-bo. Application of Vacuum System in Simulating Low-pressure Area Environment on Martian Surface [J]. VACUUM, 2024, 61(1): 64-67. |
|