Validated space radiation exposure predictions from earth to mars during Artemis-I.

IF 4.4 1区 物理与天体物理 Q1 MULTIDISCIPLINARY SCIENCES
Tony C Slaba, Shirin Rahmanian, Stuart George, Diego Laramore, John W Norbury, Charles M Werneth, Cary Zeitlin
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引用次数: 0

Abstract

Accurate characterization of space radiation exposure is critical to assess and communicate multiple health risks for crewmembers participating in future exploration missions. A combination of models and on-board instruments are utilized to meet this requirement. In this work, computational models are evaluated against spaceflight measurements taken within the International Space Station, the Orion spacecraft, the BioSentinel CubeSat, and on the Martian surface. All calculations and measurements cover the exact same time period defined by the Artemis-I mission, and all model calculations were performed blind-without prior knowledge of the measurements. The models are shown to accurately characterize the absorbed dose-rate in highly complex and diverse shielding configurations in locations from Earth to Mars.

验证了“青蒿- 1”期间从地球到火星的空间辐射暴露预测。
准确描述空间辐射暴露对于评估和通报参与未来探索任务的机组人员的多种健康风险至关重要。模型和机载仪器的组合被用来满足这一要求。在这项工作中,计算模型是根据国际空间站、猎户座宇宙飞船、生物哨兵立方体卫星和火星表面的太空飞行测量结果进行评估的。所有的计算和测量都涵盖了青蒿1号任务所定义的同一时间段,所有的模型计算都是在事先不知道测量结果的情况下进行的。这些模型可以准确地描述从地球到火星高度复杂和不同的屏蔽结构下的吸收剂量率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
npj Microgravity
npj Microgravity Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
7.30
自引率
7.80%
发文量
50
审稿时长
9 weeks
期刊介绍: A new open access, online-only, multidisciplinary research journal, npj Microgravity is dedicated to publishing the most important scientific advances in the life sciences, physical sciences, and engineering fields that are facilitated by spaceflight and analogue platforms.
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