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Estimating the Effects of Astronaut Career Ionizing Radiation Dose Limits on Manned Interplanetary Flight Programs

机译:估算宇航员职业电离辐射剂量限值对载人行星际飞行计划的影响

摘要

Space radiation effects mitigation has been identified as one of the highest priority technology development areas for human space flight in the NASA Strategic Space Technology Investment Plan (Dec. 2012). In this paper we review the special features of space radiation that lead to severe constraints on long-term (more than 180 days) human flight operations outside Earth's magnetosphere. We then quantify the impacts of human space radiation dose limits on spacecraft engineering design and development, flight program architecture, as well as flight program schedule and cost. A new Deep Space Habitat (DSH) concept, the hybrid inflatable habitat, is presented and shown to enable a flexible, affordable approach to long term manned interplanetary flight today.
机译:在美国国家航空航天局战略空间技术投资计划(2012年12月)中,减轻空间辐射效应被确定为人类太空飞行的最优先技术开发领域之一。在本文中,我们回顾了空间辐射的特殊特征,这些特征导致对人类长期(超过180天)在地球磁层之外飞行的飞行操作造成严重限制。然后,我们量化人类空间辐射剂量限制对航天器工程设计和开发,飞行程序架构以及飞行程序时间表和成本的影响。提出并展示了一种新的深空人居(DSH)概念,即混合可充气栖息地,它为当今的长期载人行星际飞行提供了一种灵活,价格合理的方法。

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