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月球/网关任务的材料贸易研究

Materials trade study for lunar/gateway missions.

作者信息

Tripathi R K, Wilson J W, Cucinotta F A, Anderson B M, Simonsen L C

机构信息

NASA Langley Research Center, Hampton, VA 23681, USA.

出版信息

Adv Space Res. 2003;31(11):2383-8. doi: 10.1016/s0273-1177(03)00551-9.

Abstract

The National Aeronautics and Space Administration (NASA) administrator has identified protection from radiation hazards as one of the two biggest problems of the agency with respect to human deep space missions. The intensity and strength of cosmic radiation in deep space makes this a 'must solve' problem for space missions. The Moon and two Earth-Moon Lagrange points near Moon are being proposed as hubs for deep space missions. The focus of this study is to identify approaches to protecting astronauts and habitats from adverse effects from space radiation both for single missions and multiple missions for career astronauts to these destinations. As the great cost of added radiation shielding is a potential limiting factor in deep space missions, reduction of mass, without compromising safety, is of paramount importance. The choice of material and selection of the crew profile play major roles in design and mission operations. Material trade studies in shield design over multi-segmented missions involving multiple work and living areas in the transport and duty phase of space mission's to two Earth-Moon co-linear Lagrange points (L1) between Earth and the Moon and (L2) on back side of the moon as seen from Earth, and to the Moon have been studied. It is found that, for single missions, current state-of-the-art knowledge of material provides adequate shielding. On the other hand, the choice of shield material is absolutely critical for career astronauts and revolutionary materials need to be developed for these missions. This study also provides a guide to the effectiveness of multifunctional materials in preparation for more detailed geometry studies in progress.

摘要

美国国家航空航天局(NASA)局长已将防范辐射危害确定为该机构在人类深空任务方面面临的两大难题之一。深空中宇宙辐射的强度和力量使得这成为太空任务中一个“必须解决”的问题。月球以及靠近月球的两个地月拉格朗日点正被提议作为深空任务的枢纽。本研究的重点是确定保护宇航员和栖息地免受太空辐射不利影响的方法,无论是针对单次任务还是职业宇航员前往这些目的地的多次任务。由于增加辐射屏蔽的巨大成本是深空任务中的一个潜在限制因素,在不影响安全的前提下减轻质量至关重要。材料的选择和乘员配置的选择在设计和任务操作中起着主要作用。已经对涉及太空任务运输和执勤阶段多个工作和生活区域的多段任务的屏蔽设计进行了材料权衡研究,这些任务包括前往地月共线拉格朗日点(L1)(位于地球和月球之间)、(L2)(从地球上看位于月球背面)以及月球。研究发现,对于单次任务,当前材料的先进知识提供了足够的屏蔽。另一方面,对于职业宇航员而言,屏蔽材料的选择绝对至关重要,需要为这些任务开发革命性的材料。本研究还为多功能材料的有效性提供了指导,以便为正在进行的更详细的几何研究做准备。

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