Experimental investigation of heat transfer characteristics on a gas-to-gas parallel flow microchannel heat exchanger

K. Koyama, Y. Asako
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引用次数: 8

Abstract

Heat transfer characteristics of a gas-to-gas parallel flow microchannel heat exchanger have been experimen- tally investigated. Temperatures and pressures at inlets and outlets of the heat exchanger are measured to obtain heat transfer rates and pressure drops. The heat transfer and pressure drop characteristics are discussed. The results show that experimental pressure drop is approximately ten times as large as theoretically estimated pressure drop. Geometric con- figuration of the heat exchanger dominates pressure drop characteristics. The conventional log-mean temperature differ- ence method and the constant wall temperature model proposed in our earlier work are applied to predict heat transfer rate of the parallel flow microchannel heat exchanger. Prediction accuracy of the log-mean temperature difference method is superior to that of the constant wall temperature model. Applicability of the log-mean temperature difference method de- pends on direction of fluid flow.
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气-气平行流微通道换热器换热特性实验研究
对气-气平行流微通道换热器的换热特性进行了实验研究。测量热交换器入口和出口的温度和压力,以获得传热率和压降。讨论了传热和压降特性。结果表明,实验压降约为理论估计压降的10倍。换热器的几何结构决定了压降特性。采用传统的对数平均温差法和恒壁温度模型对平行流微通道换热器的换热速率进行了预测。对数平均温差法的预测精度优于恒壁温度模型。对数平均温差法的适用性取决于流体流动的方向。
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