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An experimental investigation of saturated flow boiling heat transfer and pressure drop in square microchannels

机译:方形微通道内饱和流沸腾传热和压降的实验研究

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In this study, saturated flow boiling characteristics of deionized water in parallel microchannels are investigated experimentally. The silicone microchannel heat sink consists of 29 parallel square microchannels having hydraulic diameters of 150 mu m. Experiments have been conducted for four different values of the mass flux consisting of 51, 64.5, 78 and 92.6 kg/m(2)s and heat flux values from 59.3 to 84.1 kW/m(2). Inlet temperature of deionized water is kept at 50 +/- 1 degrees C. Heat transfer and pressure drop are examined for varying values of the governing parameters. Simultaneous high-speed video images have been taken as well as temperature and pressure measurements. The flow visualization results lead to key findings for flow boiling instabilities and underlying physical mechanisms of heat transfer in microchannels. Quasi-periodical rewetting and drying, rapid bubble growth and elongation toward both upstream and downstream of the channels and reverse flow are observed in parallel microchannels. (C) 2016 Elsevier Ltd and IIR. All rights reserved.
机译:在这项研究中,实验研究了去离子水在平行微通道中的饱和沸腾特性。硅树脂微通道散热器由29个平行的方形微通道组成,水力直径为150微米。已经对质量通量的四个不同值进行了实验,质量通量分别为51、64.5、78和92.6 kg / m(2)s,热通量值为59.3至84.1 kW / m(2)。去离子水的入口温度保持在50 +/- 1摄氏度。检查传热和压降的控制参数值。同时拍摄了高速视频图像以及温度和压力测量值。流动可视化结果可得出关于流动沸腾不稳定性和微通道内传热的物理机制的关键发现。在平行的微通道中观察到准周期性的重新润湿和干燥,气泡的快速增长以及向通道上游和下游的伸长以及反向流动。 (C)2016 Elsevier Ltd和IIR。版权所有。

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