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Performance Evaluation of Electrochem's PEM Fuel Cell Power Plant for NASA's 2nd Generation Reusable Launch Vehicle

机译:美国国家航空航天局第二代可重复使用运载火箭的电化学PEM燃料电池发电厂的性能评估

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摘要

NASA's Next Generation Launch Technology (NGLT) program is being developed to meet national needs for civil and commercial space access with goals of reducing the launch costs, increasing the reliability, and reducing the maintenance and operating costs. To this end, NASA is considering an all- electric capability for NGLT vehicles requiring advanced electrical power generation technology at a nominal 20 kW level with peak power capabilities six times the nominal power. The proton exchange membrane (PEM) fuel cell has been identified as a viable candidate to supply this electrical power; however, several technology aspects need to be assessed. Electrochem, Inc., under contract to NASA, has developed a breadboard power generator to address these technical issues with the goal of maximizing the system reliability while minimizing the cost and system complexity. This breadboard generator operates with dry hydrogen and oxygen gas using eductors to recirculate the gases eliminating gas humidification and blowers from the system. Except for a coolant pump, the system design incorporates passive components allowing the fuel cell to readily follow a duty cycle profile and that may operate at high 6:1 peak power levels for 30 second durations. Performance data of the fuel cell stack along with system performance is presented to highlight the benefits of the fuel cell stack design and system design for NGLT vehicles.
机译:NASA的下一代发射技术(NGLT)计划正在开发,以满足国家对民用和商业太空通道的需求,其目标是降低发射成本,提高可靠性并降低维护和运营成本。为此,美国国家航空航天局(NASA)正在考虑为要求先进的发电技术,额定功率为20 kW,峰值功率为额定功率的六倍的NGLT车辆提供全电动能力。质子交换膜(PEM)燃料电池已被确定为可提供这种电能的可行候选能源。但是,需要评估几个技术方面。根据美国国家航空航天局(NASA)的合同,Electrochem,Inc.开发了一种面包板式发电机,以解决这些技术问题,其目标是最大程度地提高系统可靠性,同时最大程度地降低成本和系统复杂性。该面包板发生器使用喷射器在干燥的氢气和氧气下运行,以使气体再循环,从而消除了系统中的气体加湿和鼓风机。除冷却剂泵外,系统设计还集成了无源组件,使燃料电池可以轻松遵循占空比曲线,并且可以在6:1的峰值功率水平下运行30秒。展示了燃料电池组的性能数据以及系统性能,以突出燃料电池组设计和NGLT车辆系统设计的优势。

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