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Heat Load Sharing in a Capillary Pumped Loop with Multiple Evaporators and Multiple Condensers

机译:具有多个蒸发器和多个冷凝器的毛细管泵送回路中的热负荷分配

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摘要

This paper describes the heat load sharing function among multiple parallel evaporators in a capillary pumped loop (CPL). In the normal mode of operation, the evaporators cool the instruments by absorbing the waste heat. When an instruments is turned off, the attached evaporator can keep it warm by receiving heat from other evaporators serving the operating instruments. This is referred to as heat load sharing. A theoretical basis of heat load sharing is given first. The fact that the wicks in the powered evaporators will develop capillary pressure to force the generated vapor to flow to cold locations where the pressure is lower leads to the conclusion that heat load sharing is an inherent function of a CPL with multiple evaporators. Heat load sharing has been verified with many CPLs in ground tests. Experimental results of the Capillary Pumped Loop 3 (CAPL 3) Flight Experiment are presented in this paper. Factors that affect the amount of heat being shared are discussed. Some constraints of heat load sharing are also addressed.
机译:本文介绍了毛细管泵环路(CPL)中多个并联蒸发器之间的热负荷分配功能。在正常操作模式下,蒸发器通过吸收废热来冷却仪器。关闭仪器时,所连接的蒸发器可以通过从为操作仪器提供服务的其他蒸发器接收热量来保持其温暖。这称为热负荷分担。首先给出了热负荷分配的理论基础。电动蒸发器中的棉芯会产生毛细压力,迫使生成的蒸汽流到压力较低的较冷位置,这一事实得出这样的结论:热负荷分担是具有多个蒸发器的CPL的固有功能。在地面测试中,许多CPL已验证了热负荷分配。本文介绍了毛细管抽运回路3(CAPL 3)飞行实验的实验结果。讨论了影响热量共享的因素。还解决了热负荷分配的一些限制。

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  • 作者

    Ku, Jentung;

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  • 年度 2005
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