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VISUALIZATION OF FC-72 FLOW BOILING IN PARALLEL- AND COUNTER-FLOW PLATE HEAT EXCHANGERS

机译:平行和反流板热交换器中FC-72流沸腾的可视化

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This study investigates FC-72 (Perfluorohexane) flow boiling in a plate heat exchanger. A plate heat exchanger which has a transparent cover plate is manufactured to visualize boiling two-phase flow pattern of the working fluid FC-72 heated by hot water. Titanium is used for heat transfer plate, which has micro pin-fin structure on the heat transfer surface to enhance heat transfer. Experiment is conducted for parallel- and counter-flow arrangements to compare thermal and hydraulic performances. Flow boiling is photographed by a digital camera and instantaneous images are processed to classify flow pattern and to measure void fraction in the heat exchanger. Flow rates and temperatures of FC-72 and hot water at inlet and outlet of the heat exchanger are simultaneously measured to obtain overall heat transfer coefficient. Two-phase flow pattern of FC-72 flow boiling and void fraction along flow direction as well as thermal performance are discussed. Experimental results show that bubbly flow, slug flow, and churn flow are observed for the experimental range of this study. Extent of churn flow in the parallel-flow heat exchanger is larger than that of the counter-flow one due to generated bubbles at upstream region in working fluid channel. Void fraction of the parallel-flow plate heat exchanger increases rapidly compared with that of the counter-flow one due to location of onset of nucleate boiling. Overall heat transfer coefficients for the parallel-flow arrangement is larger than that of the counter-flow due to destruction of thermal boundary layer. The experimental results show that flow arrangement of a plate heat exchanger has the potential to improve its thermal performance.
机译:本研究研究了板式换热器中的FC-72(全氟己烷)流动沸腾。具有透明盖板的板式热交换器被制造成可视化由热水加热的工作流体Fc-72的沸腾两相流动图案。钛用于传热板,其在传热表面上具有微针翅片结构,以增强传热。进行实验,用于平行和反流装置,以比较热和液压性能。通过数码相机拍摄的流沸腾,并处理瞬时图像以对流动模式进行分类并测量热交换器中的空隙部分。同时测量热交换器入口和出口处的Fc-72和热水的流速和温度,以获得总传热系数。讨论了FC-72的两相流动模式沿着流动方向以及热性能的流动沸腾和空隙部分。实验结果表明,对于本研究的实验范围,观察到泡沫流动,块状流和搅拌流动。平行流动热交换器中的流失程度大于工作流体通道上游区域的产生气泡的逆流液的程度。平行流动板热交换器的空隙率与由于核心沸腾的位置的位置而迅速增加。平行流动布置的总传热系数大于热边界层的破坏引起的逆流的传热系数。实验结果表明,板式热交换器的流动布置具有改善其热性能的可能性。

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