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Characterization of heat transfer modes of tube side convective condensation under the influence of an applied DC voltage

机译:施加直流电压影响下管侧对流冷凝的传热模式

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An experimental study was performed to determine the modes of heat transfer in horizontal tube side convective condensation under an applied DC high voltage. Experiments were performed with R134a in a horizontal, single-pass, counter-current heat exchanger. A 8 kV DC voltage was applied through a central rod electrode with the tube wall grounded for mass flux in the range 45-156 kg/m~2 s. The average quality across the test section was 45%, which corresponds to an initially stratified flow with the liquid level below the central electrode. The high-voltage electric field results in an interfacial electric body force which extracts the liquid from the bottom stratum towards the vapour core. This results in a phase redistribution with a resultant increase in heat transfer. The increase in heat transfer can be attributed to a change of the heat transfer mode in the lower section of the tube from convective condensation to film condensation.
机译:进行了实验研究,以确定在施加直流高压的情况下水平管侧对流冷凝中的传热模式。在水平,单程,逆流热交换器中使用R134a进行了实验。通过中心杆电极施加8 kV DC电压,管壁接地,质量流量在45-156 kg / m〜2 s范围内。测试部分的平均质量为45%,这对应于初始分层流,其中液位低于中心电极。高压电场会产生界面电场力,该界面电场力将液体从底部地层中抽出到蒸气核。这导致相重新分布,从而增加了热传递。传热的增加可以归因于管的下部中的传热模式从对流冷凝变为膜冷凝。

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