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The Development of a Martian Atmospheric Sample Collection Canister

机译:火星大气样品收集罐的研制

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The collection of an atmospheric sample from Mars would provide significant insight to the understanding of the elemental composition and sub-surface out-gassing rates of noble gases. A team of engineers at the Jet Propulsion Laboratory (JPL), California Institute of Technology have developed an atmospheric sample collection canister for Martian application. The engineering strategy has two basic elements: first, to collect two separately sealed 50 cubic centimeter unpressurized atmospheric samples with minimal sensing and actuation in a self contained pressure vessel; and second, to package this atmospheric sample canister in such a way that it can be easily integrated into the orbiting sample capsule for collection and return to Earth. Sample collection and integrity are demonstrated by emulating the atmospheric collection portion of the Mars Sample Return mission on a compressed timeline. The test results achieved by varying the pressure inside of a thermal vacuum chamber while opening and closing the valve on the sample canister at Mars ambient pressure. A commercial off-the-shelf medical grade micro-valve is utilized in the first iteration of this design to enable rapid testing of the system. The valve has been independently leak tested at JPL to quantify and separate the leak rates associated with the canister. The results are factored in to an overall system design that quantifies mass, power, and sensing requirements for a Martian atmospheric Sample Collection (MASC) canister as outlined in the Mars Sample Return mission profile. Qualitative results include the selection of materials to minimize sample contamination, preliminary science requirements, priorities in sample composition, flight valve selection criteria, a storyboard from sample collection to loading in the orbiting sample capsule, and contributions to maintaining "Earth" clean exterior surfaces on the orbiting sample capsule.
机译:从火星收集大气样本将为了解稀有气体的元素组成和地下出气率提供重要的见解。加利福尼亚理工学院喷气推进实验室(JPL)的一组工程师开发了一种用于火星应用的大气样品收集罐。工程策略有两个基本要素:首先,在一个独立的压力容器中,以最小的传感和驱动,收集两个单独密封的50立方厘米无压大气样本;第二,将这个大气样品罐包装成这样一种方式,它可以很容易地集成到轨道样品舱中进行收集并返回地球。通过在压缩的时间线上模拟火星样本返回任务的大气收集部分,展示了样本收集和完整性。在火星环境压力下打开和关闭样品罐上的阀门时,通过改变热真空室内的压力来获得试验结果。在该设计的第一次迭代中,使用了商用现成的医用级微型阀,以实现系统的快速测试。该阀门已在JPL进行了独立泄漏测试,以量化和分离与碳罐相关的泄漏率。结果被纳入到一个整体系统设计中,该设计量化了火星大气样本采集(MASC)罐的质量、功率和传感要求,如火星样本返回任务概要所述。定性结果包括尽量减少样品污染的材料选择、初步科学要求、样品组成的优先顺序、飞行阀选择标准、从样品收集到轨道样品舱装载的故事板,以及对保持轨道样品舱外表面“地球”清洁的贡献。

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