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Can an Off-Nominal Landing by an MMRTG-Powered Spacecraft Induce a Special Region on Mars When No Ice Is Present?

机译:没有冰时,由MMRTG动力的航天器在名义外着陆时是否可以在火星上引起特殊区域?

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This work aims at addressing whether a catastrophic failure of an entry, descent, and landing event of a Multimission Radioisotope Thermoelectric Generator-based lander could embed the heat sources into the martian subsurface and create a local environment that (1) would temporarily satisfy the conditions for a martian Special Region and (2) could establish a transport mechanism through which introduced terrestrial organisms could be mobilized to naturally occurring Special Regions elsewhere on Mars. Two models were run, a primary model by researchers at the Lawrence Berkeley National Laboratory and a secondary model by researchers at the Jet Propulsion Laboratory, both of which were based on selected starting conditions for various surface composition cases that establish the worst-case scenario, including geological data collected by the Mars Science Laboratory at Gale Crater. The summary outputs of both modeling efforts showed similar results: that the introduction of the modeled heat source could temporarily create the conditions established for a Special Region, but that there would be no transport mechanism by which an introduced terrestrial microbe, even if it was active during the temporarily induced Special Region conditions, could be transported to a naturally occurring Special Region of Mars.
机译:这项工作旨在解决基于多任务放射性同位素热电发电机的着陆器的进入,下降和着陆事件的灾难性故障是否可能将热源嵌入火星地下,并创造一个能够暂时满足条件的局部环境(1) (2)可以建立一种运输机制,通过该机制可以将引入的陆生生物动员到火星其他地方的自然发生的特殊区域。运行了两种模型,一种是劳伦斯·伯克利国家实验室的研究人员设计的主要模型,另一种是喷气推进实验室的研究人员设计的次级模型,这两种模型都是基于为各种表面成分情况选择的起始条件,从而确定了最坏的情况,包括由Gale Crater火星科学实验室收集的地质数据。两种模拟工作的总结输出显示出相似的结果:模拟热源的引入可以暂时为特殊地区创造条件,但是即使存在活跃的陆生微生物,也不会存在通过其传播的机制。在暂时诱发的特殊区域条件下,可以被运送到自然发生的火星特殊区域。

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