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CONSTANT WALL TEMPERATURE NUSSELT AND POISEUILLE NUMBERS IN RECTANGULAR MICROCHANNELS

机译:矩形微通道中的恒定壁温数值和泊量数

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Slip flow convective heat transfer and friction loss characteristics are numerically evaluated for constant wall temperature rectangular microchannels. The effects of rarefaction, accommodation coefficients, aspect ratio, second-order slip boundary conditions, axial conduction, and viscous dissipation with flow work are each considered. Second-order slip boundary conditions, axial conduction, and viscous dissipation with flow work effects have not been studied previously for rectangular channel slip flows. The effects of each of these parameters on the numerically computed convective heat transfer rate and friction loss are evaluated through the Nusselt number and Poiseuille number respectively. The numerical results are obtained using a continuum-based computational fluid dynamics algorithm that includes second-order slip flow and temperature jump boundary conditions. Numerical results for the three-dimensional, fully developed Nusselt and Poiseuille numbers are presented as functions of Knudsen number, first- and second-order velocity slip and temperature jump coefficients, aspect ratio, Brinkman number, and Peclet number. Effects of rarefaction, accommodation coefficients, and aspect ratio are consistent with previously reported analytical results for rectangular channel constant wall temperature flows. The effects of second-order slip terms, axial conduction and viscous dissipation are also shown to significantly affect the Nusselt and Poiseuille numbers.
机译:对于恒定壁温的矩形微通道,对滑流对流换热和摩擦损失特性进行了数值评估。分别考虑了稀疏度,容纳系数,长宽比,二阶滑移边界条件,轴向传导和粘性耗散随流动功的影响。先前尚未研究矩形通道滑移流的二阶滑移边界条件,轴向传导和具有流动功效应的粘性耗散。分别通过Nusselt数和Poiseuille数评估这些参数中的每一个对数值计算的对流传热速率和摩擦损失的影响。数值结果是使用基于连续介质的计算流体动力学算法获得的,该算法包括二阶滑流和温度跃变边界条件。三维,完全展开的Nusselt和Poiseuille数的数值结果表示为Knudsen数,一阶和二阶速度滑移和温度跳跃系数,长宽比,Brinkman数和Peclet数的函数。稀疏性,容纳系数和长宽比的影响与先前报道的矩形通道恒定壁温流动的分析结果一致。还显示了二阶滑移项,轴向传导和粘性耗散的影响会显着影响Nusselt和Poiseuille数。

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