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Experimental studies on a miniature loop heat pipe with flat evaporator with various working fluids

机译:具有各种工作流体的平板蒸发器微型环热管的实验研究

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摘要

The goal of this paper is to experimentally study the thermal behavior of a miniature loop heat pipe (LHP) with flat evaporator and correlate the findings with visualization studies of the working fluid within the compensation chamber (CC). A miniature LHP with flat evaporator was fabricated and tested with four working fluids - acetone, methanol, n-pentane and ethanol for various heat inputs till deprime at two different sink temperatures. The CC of the LHP is provided with a glass view port for visualization of the working fluid using a high speed camera. The results show that among the fluids tested, n-pentane has the lowest operating temperature, whereas methanol has the broadest heat load range. Visualization studies with all the four fluids at both sink temperatures reveal that there is no bubble generation in the CC for any heat input level prior to deprime. It was also observed that during deprime, there is explosive nucleation in the CC due to intense heat leak into it, accompanied by a rapid rise in the operating temperature due to cessation of fluid flow in the loop.
机译:本文的目标是通过平面蒸发器实验研究微型环热管(LHP)的热行为,并将调查结果与补偿室(CC)内的工作流体的可视化研究相关联。用四个工作流体 - 丙酮,甲醇,正戊烷和乙醇进行制造和测试具有平坦蒸发器的微型LHP,用于各种热输入,直至两种不同的沉降温度下降。 LHP的CC设置有用于使用高速相机可视化工作流体的玻璃视图。结果表明,在经过测试的流体中,N-戊烷具有最低的工作温度,而甲醇具有最广泛的热负荷范围。在两个沉降温度下的所有四个流体的可视化研究表明,在脱毁之前,CC在CC中没有泡沫产生。还观察到,在脱离期间,CC由于浓度的热泄漏而存在爆炸性成核,因此由于环路中的流体流动的停止而伴随着操作温度的快速上升。

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