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HEAT EXCHANGE CHARACTERISTICS OF A GAS-GAS COUNTERFLOW MICROCHANNEL HEAT EXCHANGER

机译:气体逆流微通道换热器的热交换特性

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Heat exchange characteristics of a gas-gas counterflow microchannel heat exchanger have been investigated experimentally. The microchannel has a rectangular cross section with 200 μm high and 300 μm wide. Working fluid is air. Reynolds number in the hot passage ranges from 127 to 381, and that in the cold passage ranges from 25 to 381. Temperatures and pressures at inlets and outlets of the heat exchanger have been measured to obtain heat transfer rates and pressure losses. The heat exchange and the pressure loss characteristics of the tested microchannel heat exchanger are discussed. Since the partition wall of the heat exchanger is thick comparing with the microchannel dimensions, a simple heat exchange model, the wall temperature of which is constant, is proposed to predict the heat transfer rate. The predicted heat transfer rates are compared with those of the experimental results and both results agree well.
机译:已经通过实验研究了气体逆流微通道换热器的热交换特性。微通道的矩形横截面有200μm高,宽300μm。工作流体是空气。热通道中的雷诺数范围为127至381,并且在冷通道中的范围为25至381.热交换器的入口和出口处的温度和压力已经测量以获得传热速率和压力损失。讨论了经测试的微通道热交换器的热交换和压力损失特性。由于热交换器的分隔壁与微通道尺寸相比,提出了简单的热交换模型,其恒定的壁温度是恒定的,以预测传热速率。将预测的传热速率与实验结果的结果进行比较,并且两种结果都很好。

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