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首页> 外文期刊>Journal of aerospace engineering >Lunar Production System for Extracting Oxygen from Regolith
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Lunar Production System for Extracting Oxygen from Regolith

机译:从高压性提取氧气的月球生产系统

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A study was conducted to determine the mass and power of an in situ propellant production plant producing 10.5 t of liquid oxygen per year from the regolith at the lunar south pole. The carbothennal reduction process was selected for oxygen extraction from the regolith, using direct solar energy from a concentrator for the thermal heating in the carbothermal reactor, and solar arrays for the remaining electrical power needs. The baseline lander design selected for delivery of the production plant is capable of landing a payload mass of 3,600 kg and has significant cargo area available below the propulsion deck close to the ground for the in situ resource utilization (ISRU) hardware. Total mass for the 10.5-t oxygen plant, including all power systems, structure, command and control, communication, thermal management, and 30% margin, was 4,145 kg, exceeding the lander's payload capability. A second design of a smaller plant producing 7 t of oxygen per year resulted in a mass of 3,459 kg, which is within the lander's capability. Mass payback ratio for the 10.5- and 7-t oxygen plants is 0.4 and 0.5 (kg hardware)/(kg oxygen/yr), respectively, and indicates that a net gain of mass on the lunar surface can be realized in three to four months. (C) 2021 Published by American Society of Civil Engineers.
机译:进行了一项研究,以确定每年在农历南极的高氧化丝中产生10.5吨液氧的原位推进剂生产植物的质量和力量。选择碳水化合物还原过程从石油离子中氧萃取,使用来自浓缩器的直接太阳能,用于在碳热反应器中的热加热,以及用于剩余电力的太阳阵列。选择用于生产工厂的基线着陆器设计能够降落3,600公斤的有效载荷质量,并且在原位资源利用(ISRU)硬件的地面下,推进甲板下方具有重要的货物区域。 10.5-T氧气设备的总质量,包括所有电力系统,结构,指挥和控制,通信,热管理和30%的余量,为4,145千克,超过着陆器的有效载荷能力。每年产生7吨氧气的较小植物的第二种设计导致3,459千克的质量,这在着陆器的能力范围内。 10.5和7-T氧气植物的质量回报率分别为0.4和0.5(kg硬件)/(kg氧/ yr),表明月球表面上的质量净增益可以在三到四个几个月。 (c)由美国土木工程师协会发表的2021年。

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