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Thermally Developing Flow and Heat Transfer in Rectangular Microchannels of Different Aspect Ratios

机译:不同长宽比的矩形微通道中的热流和传热

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摘要

Laminar convective heat transfer in the entrance region of microchannels of rectangular cross-section is investigated under circumferentially uniform wall temperature and axially uniform wall heat flux thermal boundary conditions. Three-dimensional numerical simulations were performed for laminar thermally developing flow in microchannels of different aspect ratios. Based on the temperature and heat flux distributions obtained, both the local and average Nusselt numbers are presented graphically as a function of the dimensionless axial distance and channel aspect ratio. Generalized correlations, useful for the design and optimization of microchannel heat sinks and other microfluidic devices, are proposed for predicting Nusselt numbers. The proposed correlations are compared with other conventional correlations and with available experimental data, and show very good agreement.
机译:在周向均匀壁温和轴向均匀壁热通量热边界条件下,研究了矩形截面微通道入口区域的层流对流换热。进行了三维数值模拟,以研究不同纵横比的微通道中层流的热发展流动。根据获得的温度和热通量分布,图形化地表示了局部Nusselt数和平均Nusselt数,它们是无因次轴向距离和通道纵横比的函数。提出了对微通道散热器和其他微流体设备的设计和优化有用的广义相关性,以预测Nusselt数。拟议的相关性与其他常规相关性和可用的实验数据进行了比较,并显示出很好的一致性。

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