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In Situ Resource-Based Lunar and Martian Habitat Structures Development at NASA/MSFC

机译:NASA / MSFC的基于资源的月球和火星人居结构开发

摘要

As the nation prepares to return to the Moon and subsequently to Mars, it is apparent that the viability of long duration visits with appropriate radiation shielding/crew protection, hinges on the development of habitat structures, preferably in advance of a manned landing, and preferably utilizing in-situ resources. A relatively large number of habitat structure configurations can be developed from a relatively small set of in-situ resource-based construction products, including, blocks, raw regolith, reinforced concrete, and glass products. A much larger group of habitat designs can be developed when "imported" material are brought from Earth, including thin films and liners, and foldable, or expandable metal structures. These, and other technologies have been identified, and subjected to a rigorous trade study evaluation with respect to exploration and other performance criteria. In this paper, results of this trade study will be presented, as well as various habitat structure design concepts and concepts for construction automation. Results of initial tests aimed at concrete, block and glass production using Lunar regolith simulants will also be presented. Key issues and concerns will be discussed, as well as design concepts for a Lunar environment testbed to be developed at MSFC's Microgravity Development Laboratory. (MDL).
机译:随着国家准备重返月球并随后返回火星,很明显,长时间访问的可行性和适当的辐射屏蔽/机组保护,取决于栖息地结构的发展,最好在有人降落之前,并且最好利用原地资源。可以从相对少量的基于现场资源的建筑产品中开发相对大量的栖息地结构配置,包括砌块,生碎石,钢筋混凝土和玻璃产品。当从地球上带入“进口”材料(包括薄膜和衬垫)以及可折叠或可扩展的金属结构时,可以开发出更大范围的栖息地设计。这些技术和其他技术已被确定,并就勘探和其他性能标准进行了严格的贸易研究评估。在本文中,将介绍这项贸易研究的结果,以及各种栖息地结构设计概念和用于建筑自动化的概念。还将提供针对使用Lunar Regolith模拟剂生产混凝土,砌块和玻璃的初始测试结果。将讨论关键问题和关注点,以及将在MSFC的微重力开发实验室开发的月球环境测试台的设计概念。 (MDL)。

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