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Radioisotope Heater Unit-Based Stirling Power Convertor Development at NASA Glenn Research Center

机译:美国国家航空航天局格伦研究中心基于放射性同位素加热器的斯特林功率转换器开发

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Stirling Radioisotope Power Systems (RPS) are being developed as an option to provide power on future space science missions where robotic spacecraft will orbit, flyby, land or rove. A variety of mission concepts have been studied by NASA and the U. S. Department of Energy that would utilize RPS for landers, probes, and rovers and only require milliwatts to tens of watts of power. These missions would contain science measuring instruments that could be distributed across planetary surfaces or near objects of interest where solar is flux insufficient for using solar cells. A low power Stirling convertor is being developed at NASA Glenn Research Center (GRC) to provide an RPS option for future low power applications. Initial concepts convert heat available from several Radioisotope Heater Units to electrical power for spacecraft instruments and communication. Initial development activity includes defining and evaluating a variety of Stirling configurations and selecting one for detailed design, research of advanced manufacturing methods that could simplify fabrication, evaluating thermal interfaces, characterizing components and subassemblies to validate design codes, and preparing for an upcoming proof of concept demonstration in a laboratory environment.
机译:斯特灵放射性同位素动力系统(RPS)正在开发中,可以为未来的太空科学飞行任务提供动力,在这种太空飞行中,机器人太空船将绕轨道飞行,飞越,着陆或行驶。 NASA和美国能源部已经研究了多种任务概念,这些概念将RPS用于着陆器,探测器和漫游车,仅需要毫瓦到数十瓦的功率。这些任务将包含科学测量仪器,这些仪器可以分布在行星表面或感兴趣的物体附近,在这些物体中,太阳能的通量不足以使用太阳能电池。 NASA格伦研究中心(GRC)正在开发一种低功率斯特林转换器,以为未来的低功率应用提供RPS选项。最初的概念是将几个放射性同位素加热器单元提供的热量转换为航天器仪器和通讯所需的电能。最初的开发活动包括定义和评估各种斯特林配置并选择一种进行详细设计,研究可以简化制造的先进制造方法,评估热界面,表征零件和子装配以验证设计代码以及为即将到来的概念验证做准备在实验室环境中进行演示。

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