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短期停留火星任务的辐射暴露预测。

Radiation exposure predictions for short-duration stay Mars missions.

作者信息

Striepe S A, Nealy J E, Simonsen L C

机构信息

NASA Langley Research Center, Hampton, Virginia 23665, USA.

出版信息

J Spacecr Rockets. 1992 Nov-Dec;29(6):801-7. doi: 10.2514/3.25534.

Abstract

The human radiation environment for several short-duration stay manned Mars missions is predicted using the Mission Radiation Calculation (MIRACAL) program, which was developed at NASA Langley Research Center. This program provides dose estimates for galactic cosmic rays (GCR) and large and ordinary solar proton flare events for various amounts of effective spacecraft shielding (both operational and storm shelter thicknesses) and a given time history of the spacecraft's heliocentric position. The results of this study show that most of the missions can survive the most recent large flares (if they were to occur at the missions' perihelion) if a 25 g/cm2 storm shelter is assumed. The dose predictions show that missions during solar minima (when solar flare activity is the lowest) are not necessarily the minimum dose cases, due to increased GCR contribution during this time period. The direct transfer mission studied has slightly lower doses than the outbound Venus swingby mission [on the order of 10-20 centi-Sieverts (cSv) lower], with the greatest dose differences for the assumed worst case scenario (when the large flares occur at perihelion). The GCR dose for a mission can be reduced by having the crew spend some fraction of its day nominally in the storm shelter (other than during flare events).

摘要

利用美国国家航空航天局兰利研究中心开发的任务辐射计算(MIRACAL)程序,对几次短期停留载人火星任务的人类辐射环境进行了预测。该程序针对不同有效航天器屏蔽量(运行厚度和风暴避难所厚度)以及航天器日心位置的给定时间历程,提供了银河宇宙射线(GCR)以及大型和普通太阳质子耀斑事件的剂量估计。这项研究的结果表明,如果假设存在一个25克/平方厘米的风暴避难所,那么大多数任务能够在最近的大型耀斑(如果它们发生在任务近日点)中幸存下来。剂量预测表明,太阳活动极小期(太阳耀斑活动最低时)的任务不一定是剂量最低的情况,因为在此期间银河宇宙射线的贡献会增加。所研究的直接转移任务的剂量略低于出航金星引力助推任务(低约10 - 20厘希沃特(cSv)),在假设的最坏情况(大型耀斑发生在近日点时)下剂量差异最大。通过让船员在一天中的一部分时间名义上待在风暴避难所(耀斑事件期间除外),可以降低任务的银河宇宙射线剂量。

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