火星样本返回的行星保护技术

R. Gershman, M. Adams, R. Dillman, J. Fragola
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引用次数: 6

摘要

美国宇航局火星探测计划最近通过了一项计划,其中包括计划于2013年发射的第一次火星样本返回(MSR)任务。这样一个任务将处理两类新的行星保护要求:(1)确保无意中泄漏样品的可能性极低,以便提供额外的保护,防止返回的材料极有可能发生生物危害;(2)保持样品没有往返地球的生物,以便返回地球后进行评估。本文描述了任何MSR任务所面临的与行星保护相关的技术挑战,并描述了应对这些挑战所需的技术进展。有几个功能需要新技术。密封保证要求打破与火星的接触链:在装载过程中或从火星表面发射时,样品容器的外部不得被火星物质污染。此外,样品容器及其密封件必须在与候选任务剖面相对应的最恶劣的地球撞击中幸存下来,地球返回飞行器必须向地球进入通道提供准确的交付,地球进入飞行器必须承受地球大气层进入的热和结构严格性——所有这些都必须具有前所未有的信心。样品污染必须通过对整个航天器进行灭菌来避免,这是现代航空电子设备的一个挑战,或者对样品收集和密封装置进行灭菌,然后将其与航天器的其他部分隔离开来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Planetary protection technology for Mars Sample Return
The NASA Mars Exploration Program has recently adopted a plan that includes a first Mars Sample Return (MSR) mission proposed for launch in 2013. Such a mission would deal with two new categories of planetary protection requirements: (1) assuring a very low probability of inadvertent sample release in order to provide extra protection against the extremely unlikely possibility of biological hazards in the returned material; and (2) keeping the samples free of round-trip Earth organisms to facilitate evaluation after return to Earth. This paper describes the planetary-protection-related technical challenges awaiting any MSR mission and describes work in progress on technology needed to meet these challenges. New technology is needed for several functions. Containment assurance requires breaking the chain of contact with Mars: the exterior of the sample container must not be contaminated with Mars material either during the loading process or during launch from the Mars surface. Also, the sample container and its seals must survive the worst Earth impact corresponding to the candidate mission profile, the Earth return vehicle must provide accurate delivery to the Earth entry corridor, and the Earth entry vehicle must withstand the thermal and structural rigors of Earth atmosphere entry - all with an unprecedented degree of confidence. Sample contamination must be avoided by sterilizing the entire spacecraft, a challenge with modern avionics, or by sterilizing the sample collection and containment gear and then isolating it from other parts of the spacecraft.
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