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Electrostatic Precipitation of Dust in the Martian Atmosphere: Implications for the Utilization of Resources During Future Manned Exploration Missions

机译:火星大气中尘埃的静电沉淀:未来载人探索任务对资源利用的影响

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摘要

Future human missions to Mars will require the utilization of local resources for oxygen, fuel. and water. The In Situ Resource Utilization (ISRU) project is an active research endeavor at NASA to develop technologies that can enable cost effective ways to live off the land. The extraction of oxygen from the Martian atmosphere. composed primarily of carbon dioxide, is one of the most important goals of the Mars ISRU project. The main obstacle is the relatively large amount of dust present in the Martian atmosphere. This dust must be efficiently removed from atmospheric gas intakes for ISRU processing chambers. A common technique to achieve this removal on earth is by electrostatic precipitation, where large electrostatic fields are established in a localized region to precipitate and collect previously charged dust particles. This technique is difficult to adapt to the Martian environment, with an atmospheric pressure of about one-hundredth of the terrestrial atmosphere. At these low pressures. the corona discharges required to implant an electrostatic charge to the particles to be collected is extremely difficult to sustain and the corona easily becomes biopolar. which is unsuitable for particle charging. In this paper, we report on our successful efforts to establish a stable corona under Martian simulated conditions. We also present results on dust collecting efficiencies with an electrostatic precipitator prototype that could be effectively used on a future mission to the red planet
机译:未来人类前往火星的任务将需要利用当地的氧气,燃料资源。和水。现场资源利用(ISRU)项目是NASA的一项积极的研究工作,旨在开发能够以经济有效的方式在陆地上生活的技术。从火星大气中提取氧气。火星ISRU项目的主要目标之一是主要由二氧化碳组成。主要的障碍是火星大气中存在相对大量的尘埃。必须从ISRU处理室的大气进气口中有效清除这些灰尘。在地球上实现这种清除的常用技术是通过静电沉淀,在局部区域建立大的静电场以沉淀并收集先前带电的灰尘颗粒。这种技术很难适应火星环境,其大气压力约为陆地大气的一百分之一。在这些低压下。将静电电荷植入要收集的粒子所需的电晕放电极难维持,并且电晕容易变成生物极性。这不适合粒子充电。在本文中,我们报告了我们在火星模拟条件下成功建立稳定电晕的成功努力。我们还介绍了使用静电除尘器原型进行除尘效率的结果,该原型可有效地用于未来对红色星球的飞行任务

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