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Radiation shielding design strategies for lunar minimal functionality habitability element

机译:月球最小功能可居住元素的辐射屏蔽设计策略

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This paper is based on a study conducted by Sasakawa International Center for Space Architecture (SICSA) between September 2008 and February 2009. SICSA has been awarded key roles in helping two aerospace company teams plan living and working accommodations for early lunar surface missions. SICSA has major conceptual design responsibilities on teams headed by Boeing and ILC-Dover which were separately selected out of more than 20 competing proposals for two out of three total NASA study contracts. Major study priorities were to determine minimum habitat requirements essential to keep crews alive and safe from harm during the first month-long missions, and then expand these accommodations as operations, facilities and amenities are extended. This paper discusses important points of radiation protection design options and known radiation protection materials applications with a special emphasis upon comparative mass implications for several proposed habitat configuration concepts. These comparisons are correlated with shielding surface area rather than actual mass estimates due to current data uncertainties regarding a number of issues: unresolved questions concerning how much radiation protection will be mandated, what mitigation strategies will be selected, what types and thicknesses of materials will be used, and how much of the total allowable module mass can be allocated for this purpose.
机译:本文基于Sasakawa国际太空建筑中心(SICSA)在2008年9月至2009年2月之间进行的研究。SICSA在帮助两个航空航天公司团队规划早期登月任务的居住和工作住宿方面发挥了关键作用。 SICSA在以波音和ILC-Dover为首的团队中承担着主要的概念设计职责,这些团队是从20多个竞争性提案中分别选出的,而这是NASA总共三份研究合同中的两项。主要的研究重点是确定最低的栖息地需求,这对于在为期一个月的任务中使机组人员生存和免受伤害至关重要,然后随着运营,设施和便利设施的扩展而扩大这些住宿。本文讨论了辐射防护设计方案和已知辐射防护材料应用的要点,并特别强调了几个拟议的栖息地配置概念的比较质量影响。这些比较与屏蔽表面积相关,而不是与实际质量估计值相关,这是由于当前在许多问题上的数据不确定性造成的:关于将要求多少辐射防护,将选择哪种缓解策略,将使用哪种材料和厚度的未解决问题使用,以及可以为此目的分配多少总的允许模块质量。

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