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An experimental study of the operating temperature in a loop heat pipe with two evaporators and two condensers

机译:具有两个蒸发器和两个冷凝器的环热管工作温度的实验研究

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This paper presents a comprehensive experimental study of the loop operating temperature in a loop heat pipe (LHP) which has two parallel evaporators and two parallel condensers. In a single evaporator LHP, it is well known that the loop operating temperature is a function of the heat load, the sink temperature and the ambient temperature. The present study focuses on the stability of the loop operating temperature and parameters that affects the loop operation. Tests results show that the loop operating temperature is a function of the total system heat load, sink temperature, ambient temperature, and heat load distribution between the two evaporators. Under most conditions, only one compensation chamber (CC) contains two-phase fluid and controls the loop operating temperature, and the other CC is completely filled with liquid. Moreover, as the test condition changes, control of the loop operating temperature often shifted from one CC to another. In spite of complex interactions between various components, the test loop has demonstrated very robust operation even during fast transients.
机译:本文介绍了环路热管(LHP)的环路工作温度的综合实验研究,其具有两个平行蒸发器和两个平行的冷凝器。在单个蒸发器LHP中,众所周知,环操作温度是热负荷,下沉温度和环境温度的函数。本研究重点介绍了影响循环操作的循环工作温度和参数的稳定性。测试结果表明,环操作温度是总系统热负荷,下沉温度,环境温度和两种蒸发器之间的热负荷分布的函数。在大多数条件下,只有一个补偿室(CC)含有两相流体并控制环操作温度,另一个CC完全填充液体。此外,随着测试条件的变化,环路操作温度的控制通常从一个CC转移到另一个CC。尽管各种组件之间的复杂相互作用,即使在快速瞬变期间,测试回路也表现出非常稳健的操作。

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