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DEVELOPMENT OF A 1-WATT STIRLING CONVERTOR FOR SMALL RADIOISOTOPE POWER SYSTEMS

机译:用于小型放射性同位素动力系统的1瓦斯特林转换器的开发

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A variety of mission concepts have been studied by-NASA and the U. S. Department of Energy that would utilize low power Radioisotope Power Systems (RPS) for landers, probes, and rovers. These missions would contain science measuring instruments that could be distributed across planetary surfaces or near objects of interest where solar flux is insufficient for using solar cells. The studies proposed use offractional versions of the General Purpose Heat Source (GPHS) or multiple Light Weight Radioisotope Heater Units (LWRHU) to heat power conversion technologies. Dynamic power systems are capable of higher conversion efficiency, which could enable equal power using less fuel or higher power using equal fuel, when compared to less efficient static power conversion technologies. Low power Stirling comertors are being developed at NASA Glenn Research Center (GRC) to provide future micro spacecraft with electrical power by converting heat from one or more LWRHUs. An initial concept, developed for distributed landers, would convert eight Watts of heat to one Watt of electrical power output for science instruments and communication. Providing spacecraft with more power could decrease duty-cycling of basic functions and increase the quality and abundance of science data. Development of the concept includes maturation of convenor and controller designs, performance evaluation of an evacuated metal foil insulation, and exploration of new fabrication methods like additive manufacturing.
机译:NASA和美国能源部已经研究了多种任务概念,这些概念将利用低功率放射性同位素动力系统(RPS)来着陆器,探测器和漫游车。这些任务将包含科学的测量仪器,这些仪器可以分布在行星表面或在太阳通量不足以使用太阳能电池的目标物体附近。研究建议使用通用热源(GPHS)的分型版本或多个轻型放射性同位素加热器单元(LWRHU)来热电转换技术。动态电源系统具有更高的转换效率,与效率较低的静态电源转换技术相比,可以使用较少的燃料实现相同的功率,或者使用相等的燃料实现更高的功率。美国国家航空航天局格伦研究中心(GRC)正在开发低功率斯特林彗星,以通过转换来自一个或多个轻水堆的热量为未来的微型航天器提供电力。为分布式着陆器开发的最初概念是将8瓦的热量转换为1瓦的电力输出,以用于科学仪器和通讯。为航天器提供更多动力可以减少基本功能的占空比,并提高科学数据的质量和数量。该概念的发展包括召集人和控制器设计的成熟,抽空的金属箔绝缘材料的性能评估以及探索新的制造方法(如增材制造)。

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