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NASA GRC Technology Development Project for a Stirling Radioisotope Power System

机译:美国国家航空航天局GRC斯特林放射性同位素动力系统技术开发项目

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摘要

NASA Glenn Research Center (GRC), the Department of Energy (DOE), and Stirling Technology Company (STC) are developing a Stirling convertor for an advanced radioisotope power system to provide spacecraft on-board electric power for NASA deep space missions. NASA GRC is conducting an in-house project to provide convertor, component, and materials testing and evaluation in support of the overall power system development. A first characterization of the DOE/STC 55-We Stirling Technology Demonstration Convertor (TDC) under the expected launch random vibration environment was recently completed in the NASA GRC Structural Dynamics Laboratory. Two TDCs also completed an initial electromagnetic interference (EMI) characterization at NASA GRC while being tested in a synchronized, opposed configuration. Materials testing is underway to support a life assessment of the heater head, and magnet characterization and aging tests have been initiated. Test facilities are now being established for an independent convertor performance verification and technology development. A preliminary Failure Mode Effect Analysis (FMEA), initial finite element analysis (FEA) for the linear alternator, ionizing radiation survivability assessment, and radiator parametric study have also been completed. This paper will discuss the status, plans, and results to date for these efforts.
机译:美国宇航局格伦研究中心(GRC),能源部(DOE)和斯特林技术公司(STC)正在开发一种斯特林转换器,用于先进的放射性同位素动力系统,以为NASA深空飞行任务提供航天器的机载电力。 NASA GRC正在开展内部项目,以提供转换器,组件和材料的测试和评估,以支持整个电源系统的开发。最近在NASA GRC结构动力学实验室完成了DOE / STC 55-We斯特林技术演示转换器(TDC)在预期发射随机振动环境下的首次表征。两个TDC还在NASA GRC上完成了初始电磁干扰(EMI)表征,同时在同步,相对配置下进行了测试。为了支持加热器头的寿命评估,正在进行材料测试,并且已经启动了磁体特性和老化测试。目前正在建立测试设施,以进行独立的转换器性能验证和技术开发。初步的故障模式影响分析(FMEA),线性交流发电机的初始有限元分析(FEA),电离辐射生存能力评估和散热器参数研究也已完成。本文将讨论这些工作的现状,计划和结果。

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