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Investigation of Mars in-situ propellant production

机译:火星地原位推进剂生产调查

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In-situ production of oxygen and methane for utilization as a return propellant from Mars for both sample-return and manned missions is currently being developed by NASA in cooperation with major aerospace companies. Various technologies are being evaluated using computer modeling and analysis at the system level. An integrated system that processes the carbon dioxide in the Mars atmosphere to produce liquid propellants has been analyzed. The system is based on the Sabatier reaction that utilizes carbon dioxide and hydrogen to produce methane and water. The water is then electrolyzed to produce hydrogen and oxygen. While the hydrogen is recycled, the propellant gases are liquefied and stored for later use. The process model considers the surface conditions on Mars (temperature, pressure, composition), energy usage, and thermal integration effects on the overall system weight and size. Current mission scenarios require a system that will produce 0.7 kg of propellant a day for 500 days. This paper will outline a baseline system for a return propellant production plant, including power requirements and weight estimates, as well as identify key technological improvements required to develop a viable and robust system.
机译:原位生产氧气和甲烷的利用作为来自样品返回和载人任务的火星的返回推进剂目前正在与美国宇航局与主要航空航天公司合作开发。正在使用计算机建模和系统级分析进行评估各种技术。分析了一种综合系统,用于处理MARS气氛中的二氧化碳以产生液体推进剂。该系统基于利用二氧化碳和氢以产生甲烷和水的易氧化反应。然后电解水以产生氢和氧气。虽然氢气再循环,推进剂气体是液化并储存的,以供以后使用。过程模型考虑了火星(温度,压力,组成),能量使用和热整合对整体系统重量和尺寸的热量效应的表面条件。当前的使命方案需要一个系统,每天将产生0.7公斤推进剂500天。本文将概述返回推进剂生产设备的基线系统,包括电源要求和重量估计,以及识别开发可行和强大的系统所需的关键技术改进。

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