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The fuel cell in space: Yesterday, today and tomorrow

机译:太空中的燃料电池:昨天,今天和明天

摘要

The past, present, and future of space fuel cell power systems is reviewed, starting with the first practical fuel cell by F.T. Bacon which led to the 1.5 kW Apollo alkaline fuel cell. However, the first fuel cell to be used for space power was the Gemini 1.0 kW Acid IEM fuel cell. The successor to the Apollo fuel cell is today's 12 kW Orbiter alkaline fuel cell whose technology is considerably different and considerably better than that of its ancestor, the Bacon cell. And in terms of specific weight there has been a steady improvement from the past to the present, from the close to 200 lb/kW of Apollo to the 20 lb/kW of the orbiter. For NASA future Lunar and Martian surface power requirements the regenerative fuel cell (RFC) energy storage system is enabling technology, with the alkaline and the PEM the leading RFC candidate systems. The U.S. Air Force continues to support fuel cell high power density technology development for its future short duration applications.
机译:从F.T.的第一个实用燃料电池开始,回顾了空间燃料电池动力系统的过去,现在和未来。培根酿造了1.5千瓦阿波罗碱性燃料电池。但是,第一个用于太空动力的燃料电池是Gemini 1.0 kW酸性IEM燃料电池。阿波罗(Apollo)燃料电池的后继产品是当今的12 kW Orbiter碱性燃料电池,其技术与前代培根电池相比有很大的不同,并且要好得多。从过去到现在,就比重而言,从接近200磅/千瓦的阿波罗到20磅/千瓦的轨道器,都有着稳步的提高。对于美国宇航局未来的月球和火星表面功率要求,可再生燃料电池(RFC)能量存储系统正在推动技术发展,碱性和PEM是领先的RFC候选系统。美国空军继续支持燃料电池高功率密度技术的发展,以用于未来的短期应用。

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