月球和火星的最佳结构及其构造

Y. C. Toklu
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引用次数: 6

摘要

就设计和建造月球和火星上的栖息地或空间站而言,月球和火星上的条件与地球上的条件大不相同。火星上的重力大约是地球的1/3,月球上的重力大约是地球的1/6。月球上没有大气层,火星上的大气层也很少。辐射远远超过了人类或其他生物所能承受的水平。每天的温度波动远高于习惯的水平。原料或制成品的供应非常困难和昂贵。这些条件和其他条件对所使用的类型和施工技术产生了非常重要的限制。结构内部的压力施加于球形、环形或圆柱形的建筑物。对辐射防护的需求倾向于地下、掩埋或覆盖的结构。缺乏大气和高水平的辐射需要使用机器人和遥控施工活动的先进自动化水平。从地球供应材料的困难和高成本增加了使用当地材料的可行性。此外,在这些恶劣条件下需要高度安全,由于成本和难度极高,所有行动都必须优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimum lunar and Martian structures and their construction
Conditions on the Moon and Mars are very different from those prevailing on the Earth as far as design and construction of lunar and Martian habitats or stations are considered. Gravity on the Mars is about 1/3 of that on the Earth, and about 1/6 on the Moon. There is no atmosphere on the Moon, and it is minimal on the Mars. The radiation is much above the level that human beings or other living organisms can support. Daily temperature fluctuations are much above the levels accustomed. Supply of raw or manufactured materials is very difficult and expensive. These conditions and others bring in very important constraints on the types and constructional techniques to be used. Inner pressure to be provided within structures imposes spherical, toroidal or cylindrical shaped buildings. The need for protection against radiation favors underground, buried or covered structures. Lack of atmosphere and high level of radiation necessitates an advanced level of automatization using robots and tele-operated construction activities. Difficulty and high cost of supplying materials from the Earth increases the feasibility of using local materials. In addition, a high level of security is required under these hostile conditions and all operations must be optimized because of the extremely high level of costs and difficulties.
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