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Programmatic Status of Nasa's Csti High Capacity Power Stirling Space Power Converter Program

机译:美国国家航空航天局(NASA)Csti大容量功率斯特林空间功率转换器计划的程序状态

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An overview is presented of the NASA Lewis Research Center Free-Piston Stirling Space Power Converter Technology Development Program. This work is being conducted under NASA's Civil Space Technology Initiative (CSTI). The goal of the CSTI High Capacity Power element is to develop the technology base needed to meet the long duration, high capacity power requirements for future NASA space initiatives. Efforts are focused upon increasing system thermal and electric energy conversion efficiency at least fivefold over current SP-100 technology, and on achieving systems that are compatible with space nuclear reactors. This paper will discuss the status of test activities with the Space Power Research Engine (SPRE). Design deficiencies are gradually being corrected and the power converter is now outputting 11.5 kWe at a temperature ratio of 2 (design output is 12.5 kWe). Detail designs have been completed for the 1050 K Component Test Power Converter (CTPC). The success of these and future designs is dependent upon supporting research and technology efforts including heat pipes, gas bearings, superalloy joining technologies and high efficiency alternators. This paper also provides an update of progress in these technologies.
机译:概述介绍了NASA刘易斯研究中心自由活塞斯特林空间电力转换器技术开发计划。在美国宇航局的民用空间技术倡议(CSTI)下正在进行这项工作。 CSTI高容量电源元件的目标是开发出满足持续时间长,高容量功率要求所需的技术基础,对未来的NASA空间举措。努力在增加系统热电和电能转换效率时,至少五倍于当前的SP-100技术,以及实现与空间核反应堆相容的系统。本文将讨论空间电力研究发动机(SPRE)的测试活动状态。设计缺陷逐渐被纠正,电源转换器正在以2的温度比输出11.5 kWe(设计输出为12.5 kWe)。详细设计已完成1050 K组件测试电源转换器(CTPC)。这些和未来设计的成功取决于支持研究和技术努力,包括热管,燃气轴承,高级合金连接技术和高效率的交流发电机。本文还提供了这些技术的进展情况。

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