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Use of oscillating heat pipe technique as extended surface in wire-on-tube heat exchanger for heat transfer enhancement

机译:振荡式热管技术在线对管式换热器中用作延伸面以增强传热

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This paper presents the performance of a wire-on-tube heat exchanger of which the wire is an oscillating heat pipe. The experiments for this heat exchanger were performed in a wind tunnel by exchanging heat between hot water flowing inside the heat exchanger tubes and air stream flowing across the external surface. R123, methanol and acetone were selected as working fluids of the oscillating heat pipe. The inlet water temperature was varied from 45 to 85 ℃ while the inlet air temperature was kept constant at 25 ℃. The results show that the oscillating heat pipe technique for all working fluids could increase around 10% of the heat transfer rate obtained from that without the refrigerant flow in the capillary tube when the inlet water temperature is at 60 ℃. Moreover, the heat transfer models for evaluating the heat exchanger effectiveness and the air-side heat transfer coefficient, are also developed in this work. These results of the models agreed very well with the experimental data.
机译:本文介绍了一种线对管式换热器的性能,其中线为振荡式热管。该热交换器的实验是在风洞中进行的,方法是在热交换器管内流动的热水与流经外表面的气流之间进行热交换。选择R123,甲醇和丙酮作为振荡热管的工作流体。进水温度在45至85℃之间变化,而进风温度则保持在25℃恒定。结果表明,当进水温度为60℃时,所有工作流体的振荡热管技术可以使没有制冷剂在毛细管中流动的传热率提高约10%。此外,在这项工作中还开发了用于评估热交换器效率和空气侧传热系数的传热模型。模型的这些结果与实验数据非常吻合。

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