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An experimental study of two-phase air-water flow and heat transfer characteristics of segmented flow in a microchannel

机译:微通道内两相空气-水流及分流传热特性的实验研究

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Cooling systems are needed for electronic devices in order to operate efficiently. Whereas the size of the equipment has decreased to the micro scale, research on the heat transfer characteristics in a microchannel heat sink is needed. In this work, we suggest that the segmented air-water flow can enhance the heat transfer rate in a microchannel heat sink as compared to using single-phase water cooling. The experiment was conducted with two-phase air-water flow in a single rectangular microchannel with a hydraulic diameter of 267 pm. The test section was made from copper. For a clear understanding, two-phase flow pattern, pressure drop, and heat transfer characteristics in the low Reynolds number of air-water flow were identified. The results show that segmented, throat-annular, throat-annular/liquid, and annular flow were observed within the test section. A flow pattern map was created and compared with the previous maps. The pressure drop can be predicted by the homogeneous flow model and the Friedel correlation separated flow model. The Nusselt number of segmented flow increases up to 1.2 times over the single-phase flow. (C) 2014 Elsevier Inc. All rights reserved.
机译:电子设备需要冷却系统才能有效运行。尽管设备的尺寸已减小到微米级,但仍需要研究微通道散热器中的传热特性。在这项工作中,我们建议与使用单相水冷相比,分段的空气水流可以提高微通道散热器的传热速率。实验是在水力直径为267 pm的单个矩形微通道中以两相空气-水流进行的。测试部分由铜制成。为了清楚理解,确定了低雷诺数空气-水流中的两相流型,压降和传热特性。结果表明,在测试区域内观察到分段的,喉咙-环形,喉咙-环形/液体和环形流动。创建了流模式图,并将其与以前的图进行比较。可以通过均质流动模型和Friedel相关分离流模型预测压降。分段流的Nusselt数量最多是单相流的1.2倍。 (C)2014 Elsevier Inc.保留所有权利。

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