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Trade Study of System Level Ranked Radiation Protection Concepts for Deep Space Exploration

机译:用于深空探测的系统级分级辐射防护概念的行业研究

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A strategic focus area for NASA is to pursue the development of technologies which support exploration in space beyond the current inhabited region of low earth orbit. An unresolved issue for crewed deep space exploration involves limiting crew radiation exposure to below acceptable levels, considering both solar particle events and galactic cosmic ray contributions to dosage. Galactic cosmic ray mitigation is not addressed in this paper, but by addressing credible, easily implemented, and mass efficient solutions for the possibility of solar particle events, additional margin is provided that can be used for cosmic ray dose accumulation. As a result, NASA's Advanced Engineering Systems project office initiated this Radiation Storm Shelter design activity. This paper reports on the first year results of an expected 3 year Storm Shelter study effort which will mature concepts and operational scenarios that protect exploration astronauts from solar particle radiation events. Large trade space definition, candidate concept ranking, and a planned demonstration comprised the majority of FY12 activities. A system key performance parameter is minimization of the required increase in mass needed to provide a safe environment. Total system mass along with operational assessments and other defined protection system metrics provide the guiding metrics to proceed with concept developments. After a downselect to four primary methods, the concepts were analyzed for dosage severity and the amount of shielding mass necessary to bring dosage to acceptable values. Besides analytical assessments, subscale models of several concepts and one full scale concept demonstrator were created. FY12 work terminated with a plan to demonstrate test articles of two selected approaches. The process of arriving at these selections and their current envisioned implementation are presented in this paper.
机译:美国宇航局的战略重点领域是追求技术的发展,这些技术应支持当前低地球轨道居住区以外的太空探索。考虑到太阳粒子事件和银河宇宙射线对剂量的贡献,乘员深空探测的一个尚未解决的问题涉及将乘员的辐射暴露限制在可接受的水平以下。本文没有讨论银河系宇宙射线的缓解,但是通过解决太阳粒子事件可能性的可靠,易于实施且质量有效的解决方案,提供了可用于宇宙射线剂量累积的额外余量。结果,NASA的高级工程系统项目办公室启动了这项辐射防空洞的设计活动。本文报告了预计进行为期3年的Storm Shelter研究工作的第一年结果,这些研究工作将成熟一些概念和操作场景,以保护探索宇航员免受太阳粒子辐射事件的影响。 2012财年的大部分活动都包括大型贸易空间定义,候选概念排名和计划的示范。系统关键性能参数是最小化提供安全环境所需的所需质量增加。系统总质量以及运行评估和其他已定义的保护系统指标,为进行概念开发提供了指导指标。在选择了四种主要方法后,分析了这些概念的剂量严重性和使剂量达到可接受值所需的屏蔽质量。除了分析评估之外,还创建了几个概念的子尺度模型和一个完整的尺度演示器。 2012财年的工作以展示两种选定方法的测试文章的计划终止。本文介绍了实现这些选择的过程及其当前的预期实现。

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