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Variable Conductance Heat Pipe Cooling of Stirling Convertor and General Purpose Heat Source

机译:斯特林变流器和通用热源的变导热管冷却

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摘要

In a Stirling Radioisotope Power System (RPS), heat must be continuously removed from the General Purpose Heat Source (GPHS) modules to maintain the modules and surrounding insulation at acceptable temperatures. The Stirling convertor normally provides this cooling. If the Stirling convertor stops in the current system, the insulation is designed to spoil, preventing damage to the GPHS at the cost of an early termination of the mission. An alkali-metal Variable Conductance Heat Pipe (VCHP) can be used to passively allow multiple stops and restarts of the Stirling convertor. In a previous NASA SBIR Program, Advanced Cooling Technologies, Inc. (ACT) developed a series of sodium VCHPs as backup cooling systems for Stirling RPS. The operation of these VCHPs was demonstrated using Stirling heater head simulators and GPHS simulators. In the most recent effort, a sodium VCHP with a stainless steel envelope was designed, fabricated and tested at NASA Glenn Research Center (GRC) with a Stirling convertor for two concepts; one for the Advanced Stirling Radioisotope Generator (ASRG) back up cooling system and one for the Long-lived Venus Lander thermal management system. The VCHP is designed to activate and remove heat from the stopped convertor at a 19℃temperature increase from the nominal vapor temperature. The 19℃temperature increase from nominal is low enough to avoid risking standard ASRG operation and spoiling of the Multi-Layer Insulation (MLI). In addition, the same backup cooling system can be applied to the Stirling convertor used for the refrigeration system of the Long-lived Venus Lander. The VCHP will allow the refrigeration system to: 1) rest during transit at a lower temperature than nominal; 2) pre-cool the modules to an even lower temperature before the entry in Venus atmosphere; 3) work at nominal temperature on Venus surface; 4) briefly stop multiple times on the Venus surface to allow scientific measurements. This paper presents the experimental results from integrating the VCHP with an operating Stirling convertor and describes the methodology used to achieve their successful combined operation.
机译:在斯特林放射性同位素动力系统(RPS)中,必须不断从通用热源(GPHS)模块中散热,以将模块和周围的绝缘保持在可接受的温度下。斯特林转换器通常提供这种冷却。如果斯特林变流器在当前系统中停止运行,则绝缘层会损坏,从而防止GPHS受损,但要尽早终止任务。碱金属可变电导率热管(VCHP)可用于被动地允许斯特林转换器进行多次停止和重启。在先前的NASA SBIR计划中,先进冷却技术有限公司(ACT)开发了一系列钠VCHP,作为斯特林RPS的备用冷却系统。使用斯特林加热器头模拟器和GPHS模拟器演示了这些VCHP的操作。在最近的工作中,在美国国家航空航天局格伦研究中心(GRC)设计并制造了带有不锈钢外壳的VCHP钠盐,并使用斯特林转换器对两个概念进行了测试。一种用于先进的斯特林放射性同位素发生器(ASRG)备用冷却系统,另一种用于长寿命的维纳斯·兰德热管理系统。 VCHP旨在在比标称蒸气温度高19℃的情况下激活并从停止的转换器中除去热量。从标称值开始的19℃温度升高足够低,以避免冒ASRG标准操作风险和多层绝缘(MLI)损坏的危险。另外,相同的备用冷却系统可以应用于用于长寿命金星着陆器制冷系统的斯特林转换器。 VCHP将允许制冷系统:1)在运输过程中以低于标称温度的温度休息; 2)在进入金星大气之前,将模块预冷至更低的温度; 3)在标称温度下在金星表面工作; 4)在金星表面短暂停留多次以进行科学测量。本文介绍了将VCHP与运行中的斯特林转换器集成在一起的实验结果,并介绍了用于实现其成功组合运行的方法。

著录项

  • 来源
  • 会议地点 San Jose CA(US)
  • 作者单位

    Advanced Cooling Technologies, Inc., 1046 New Holland Ave. Lancaster, PA 17601 U.S.A.717-295-6066, Calin;

    Advanced Cooling Technologies, Inc., 1046 New Holland Ave. Lancaster, PA 17601 U.S.A.717-295-6066, Calin;

    Advanced Cooling Technologies, Inc., 1046 New Holland Ave. Lancaster, PA 17601 U.S.A.717-295-6066, Calin;

    NASA John H. Glenn Research Center, 21000 Brookpark Rd. MS 301-2 Cleveland, OH 44135 U.S.A.;

    NASA John H. Glenn Research Center, 21000 Brookpark Rd. MS 301-2 Cleveland, OH 44135 U.S.A.;

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  • 正文语种 eng
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