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Lunar electric power systems utilizing the SP-100 reactor coupled to dynamic conversion systems

机译:利用SP-100反应堆与动态转换系统耦合的月球电力系统

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摘要

An integration study was performed by Rocketdyne under contract to NASA-LeRC. The study was concerned with coupling an SP-0100 reactor to either a Brayton or Stirling power conversion system. The application was for a surface power system to supply power requirements to a lunar base. A power level of 550 kWe was selected based on the NASA Space Exploration Initiative 90-day study. Reliability studies were initially performed to determine optimum power conversion redundancy. This study resulted in selecting three operating engines and one stand-by unit. Integration design studies indicated that either the Brayton or Stirling power conversion systems could be integrated with the PS-100 reactor. The Stirling system had an integration advantage because of smaller piping size and fewer components. The Stirling engine, however, is more complex and heavier than the Brayton rotating unit, which tends to off-set the Stirling integration advantage. From a performance consideration, the Brayton had a 9 percent mass advantage, and the Stirling had a 50 percent radiator advantage.
机译:Rocketdyne根据NASA-LeRC的合同进行了一项整合研究。该研究涉及将SP-0100反应堆耦合到Brayton或Stirling功率转换系统。该应用程序是用于向月球基地供电的地面动力系统。根据NASA太空探索计划90天的研究,选择了550 kWe的功率水平。最初进行了可靠性研究,以确定最佳的电源转换冗余。该研究结果选择了三台正在运行的发动机和一台备用机组。集成设计研究表明,布雷顿或斯特林功率转换系统可以与PS-100反应堆集成。斯特林系统具有集成优势,因为管道尺寸更小,部件更少。但是,斯特林发动机比布雷顿旋转单元更复杂,更重,这往往会抵消斯特林的集成优势。从性能考虑,布雷顿(Brayton)具有9%的质量优势,斯特林(Stirling)具有50%的散热器优势。

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