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Thermal design methodology for high-heat-flux single-phase and two-phase micro-channel heat sinks

机译:高热通量单相和两相微通道散热器的热设计方法

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This paper explores several issues important to the thermal design of single-phase and two-phase micro-channel heat sinks. The first part of the paper concerns single-phase heat transfer in rectangular micro-channels. Experimental results are compared with predictions based on both numerical as well as fin analysis models. While the best agreement between predictions and experimental results was achieved with numerical simulation, a few of the fin models are found to provide fairly accurate predictions. The second part of the paper focuses on predicting the incipient boiling heat flux. A comprehensive model based on bubble departure and superheat criteria is developed and validated with experimental data. The incipience model is capable of predicting the location, shape and size of bubbles departing in rectangular micro-channels. In the third part of the study, an analytical model is developed to predict pressure drop across a two-phase micro-channel heat sink. This model provides a detailed assessment of pressure drop concerns with two-phase micro-channels, including compressibility, flashing and choking. Overall, the present study provides important guidelines concerning practical implementation of micro-channel heat sinks in high-heat-flux electronic cooling applications.
机译:本文探讨了对单相和两相微通道散热器的热设计重要的几个问题。本文的第一部分涉及矩形微通道中的单相传热。将实验结果与基于数值和鳍分析模型的预测结果进行比较。虽然通过数值模拟可以在预测和实验结果之间取得最佳的一致性,但发现一些鳍片模型可以提供相当准确的预测。本文的第二部分着重于预测初期沸腾热通量。建立了基于气泡偏离和过热标准的综合模型,并通过实验数据进行了验证。初始模型能够预测在矩形微通道中离开的气泡的位置,形状和大小。在研究的第三部分中,开发了一种分析模型来预测两相微通道散热器上的压降。该模型提供了两相微通道对压降问题的详细评估,包括可压缩性,闪蒸性和窒息性。总体而言,本研究提供了有关在高热通量电子冷却应用中微通道散热器的实际实施的重要指南。

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