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Electrolysis Propulsion for Spacecraft Applications

机译:航天器应用中的电解推进

摘要

Electrolysis propulsion has been recognized over the last several decades as a viable option to meet many satellite and spacecraft propulsion requirements. This technology, however, was never used for in-space missions. In the same time frame, water based fuel cells have flown in a number of missions. These systems have many components similar to electrolysis propulsion systems. Recent advances in component technology include: lightweight tankage, water vapor feed electrolysis, fuel cell technology, and thrust chamber materials for propulsion. Taken together, these developments make propulsion and/or power using electrolysis/fuel cell technology very attractive as separate or integrated systems. A water electrolysis propulsion testbed was constructed and tested in a joint NASA/Hamilton Standard/Lawrence Livermore National Laboratories program to demonstrate these technology developments for propulsion. The results from these testbed experiments using a I-N thruster are presented. A concept to integrate a propulsion system and a fuel cell system into a unitized spacecraft propulsion and power system is outlined.
机译:在过去的几十年中,电解推进被认为是满足许多卫星和航天器推进要求的可行选择。但是,这项技术从未用于太空任务。在同一时间范围内,水基燃料电池已经执行了多次飞行任务。这些系统具有许多类似于电解推进系统的组件。组件技术的最新进展包括:轻型储罐,水蒸气进料电解,燃料电池技术以及用于推进的推力室材料。综上所述,这些发展使得使用电解/燃料电池技术的推进和/或动力作为单独或集成系统非常有吸引力。建造了水电解推进试验台,并在NASA /汉密尔顿标准/劳伦斯·利弗莫尔国家实验室联合计划中进行了测试,以证明这些推进技术的发展。给出了使用I-N推进器的这些试验台实验的结果。概述了将推进系统和燃料电池系统集成到组合式航天器推进和动力系统中的概念。

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