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Single-phase flow and heat transfer in swirl microchannels

机译:旋流微通道中的单相流动和传热

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摘要

Flow and heat transfer characteristics of swirl microchannels of differing rectangular cross sections have been experimentally investigated using ethylene glycol solutions of 30% (volume concentration). Ten test sections with hydraulic diameters from 0.3 to 0.8. mm are tested. The influence of geometry and fluid velocity on the behavior of flow and heat transfer through these swirl microchannels is reported. Flow and heat transfer correlations for these swirl microchannels are obtained. Friction factors and average Nusselt numbers are determined and are compared with conventional curved duct correlations. The result indicates that values for the friction factors and average Nusselt numbers obtained using conventional correlations provide poor estimates. Flow and heat transfer behaviors are compared with straight microchannels, and the results indicate that swirl microchannels improve heat transfer performance by 50% on average.
机译:已经使用30%(体积浓度)的乙二醇溶液对不同矩形横截面的旋流微通道的流动和传热特性进行了实验研究。十个测试部分的液压直径为0.3到0.8。毫米已测试。报告了几何形状和流体速度对通过这些旋流微通道的流动和传热行为的影响。获得了这些旋流微通道的流动和传热相关性。确定摩擦系数和平均Nusselt数,并将其与常规弯管相关性进行比较。结果表明,使用常规相关性获得的摩擦系数值和平均努塞尔数提供的估算值很差。将流动和传热行为与直的微通道进行了比较,结果表明,旋流微通道将传热性能平均提高了50%。

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