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Loop Heat Pipe Operation with Thermoelectric Converters and Coupling Blocks

机译:带热电转换器和耦合块的循环热管运行

摘要

This paper presents theoretical and experimental studies on using thermoelectric converters (TECs) and coupling blocks to control the operating temperature of a miniature loop heat pipes (MLHP). The MLHP has two parallel evaporators and two parallel condensers, and each evaporator has its own integral compensation chamber (CC). A TEC is attached to each CC, and connected to the evaporator via a copper thermal strap. The TEC can provide both heating and cooling to the CC, therefore extending the LHP operating temperature over a larger range of the evaporator heat load. A bi-polar power supply is used for the TEC operation. The bipolar power supply automatically changes the direction of the current to the TEC, depending on whether the CC requires heating or cooling, to maintain the CC temperature at the desired set point. The TEC can also enhance the startup success by maintaining a constant CC temperature during the start-up transient. Several aluminum coupling blocks are installed between the vapor line and liquid line. The coupling blocks serve as a heat exchanger which preheats the cold returning liquid so as to reduce the amount of liquid subcooling, and hence the power required to maintain the CC at the desired set point temperature. This paper focuses on the savings of the CC control heater power afforded by the TECs when compared to traditional electric heaters. Tests were conducted by varying the evaporator power, the condenser sink temperature, the CC set point temperature, the number of coupling blocks, and the thermal conductance of the thermal strap. Test results show that the TECs are able to control the CC temperature within k0.5K under all test conditions, and the required TEC heater power is only a fraction of the required electric heater power.
机译:本文介绍了使用热电转换器(TEC)和耦合块控制小型回路热管(MLHP)的工作温度的理论和实验研究。 MLHP具有两个平行的蒸发器和两个平行的冷凝器,每个蒸发器都有其自己的整体补偿腔(CC)。每个CC上都装有一个TEC,并通过一条铜质的散热带将其连接到蒸发器。 TEC可以为CC提供加热和冷却功能,因此可以在较大的蒸发器热负荷范围内扩展LHP的工作温度。双极性电源用于TEC操作。双极电源根据CC是否需要加热或冷却来自动改变流向TEC的电流方向,以将CC温度保持在所需的设定点。 TEC还可以通过在启动瞬态过程中保持恒定的CC温度来提高启动成功率。在蒸气管线和液体管线之间安装了几个铝制连接块。耦合块用作热交换器,该热交换器预热返回的冷液体,以减少液体过冷量,从而减少将CC维持在所需设定点温度所需的功率。与传统的电加热器相比,本文着重介绍了TEC提供的CC控制加热器功率的节省。通过改变蒸发器功率,冷凝器水槽温度,CC设定点温度,耦合块数和导热带的热导率进行测试。测试结果表明,TEC在所有测试条件下都能将CC温度控制在k0.5K以内,所需的TEC加热器功率只是所需的电加热器功率的一小部分。

著录项

  • 作者

    Nagano Hosei; Ku Jentung;

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  • 年度 2007
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