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Status of Brayton Cycle Power Conversion Development at NASA GRC

机译:美国宇航局GRC布雷顿循环功率转换的发展状况

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The NASA Glenn Research Center is pursuing the development of Brayton cycle power conversion for various NASA initiatives. Brayton cycle power systems offer numerous advantages for space power generation including high efficiency, long life, high maturity, and broad scalability. Candidate mission applications include surface rovers and bases, advanced propulsion vehicles, and earth orbiting satellites. A key advantage is the ability for Brayton converters to span the wide range of power demands of future missions from several kilowatts to multi-megawatts using either solar, isotope, or reactor heat sources. Brayton technology has been under development by NASA since the early 1960's resulting in engine prototypes in the 2 to 15 kW-class that have demonstrated conversion efficiency of almost 30% and cumulative operation in excess of 40,000 hours. Present efforts at GRC are focusing on a 2 kW testbed as a proving ground for future component advances and operational strategies, and a 25 kW engine design as a modular building block for 100 kW-class electric propulsion and Mars surface power applications.
机译:NASA Glenn研究中心正在为各种NASA计划开发Brayton循环功率转换。布雷顿循环电力系统为太空发电提供了许多优势,包括高效率,长寿命,高成熟度和广泛的可扩展性。候选任务应用包括地面漫游者和基地,先进的推进器和地球轨道卫星。 Brayton转换器的主要优点是能够利用太阳能,同位素或反应堆热源来满足未来任务的各种功率需求,从几千瓦到几兆瓦。自1960年代初以来,美国国家航空航天局一直在开发布雷顿技术,从而产生了2至15千瓦级的发动机原型,其转换效率近30%,累计运行时间超过40,000小时。 GRC目前的工作集中在2 kW试验台上,以作为未来组件改进和操作策略的试验场,以及25 kW发动机设计,作为用于100 kW级电推进和火星表面功率应用的模块化构件。

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