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Heat Transfer and Pressure Drop Characteristics in Straight Microchannel of Printed Circuit Heat Exchangers

机译:印刷电路换热器直微通道中的传热和压降特性

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Performance tests were carried out for a microchannel printed circuit heat exchanger (PCHE), which was fabricated with micro photo-etching and diffusion bonding technologies. The microchannel PCHE was tested for Reynolds numbers in the range of 100‒850 varying the hot-side inlet temperature between 40 °C–50 °C while keeping the cold-side temperature fixed at 20 °C. It was found that the average heat transfer rate and heat transfer performance of the countercurrrent configuration were 6.8% and 10%‒15% higher, respectively, than those of the parallel flow. The average heat transfer rate, heat transfer performance and pressure drop increased with increasing Reynolds number in all experiments. Increasing inlet temperature did not affect the heat transfer performance while it slightly decreased the pressure drop in the experimental range considered. Empirical correlations have been developed for the heat transfer coefficient and pressure drop factor as functions of the Reynolds number.
机译:对使用微光蚀刻和扩散键合技术制造的微通道印刷电路换热器(PCHE)进行了性能测试。测试了微通道PCHE的雷诺数在100‒850范围内,使热侧入口温度在40°C–50°C之间变化,同时将冷侧温度保持在20°C。结果发现,逆流结构的平均传热率和传热性能分别比平行流高6.8%和10%‒15%。在所有实验中,平均传热速率,传热性能和压降均随雷诺数的增加而增加。入口温度的升高并没有影响传热性能,尽管它在所考虑的实验范围内略微降低了压降。已经建立了作为雷诺数函数的传热系数和压降系数的经验相关性。

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