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Analytical Modeling of Fluid Flow and Heat Transfer in Microchannel/Nanochannel Heat Sinks

机译:微通道/纳通道散热器中流体流动和传热的分析模型

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摘要

Laminar forced convection in two-dimensional rectangular microcbannels and nanochannels under hydrodynamically and thermally fully developed conditions is investigated analytically in the slip-flow regime. Closed-form solutions for fluid friction and Nusselt numbers are obtained by solving the continuum momentum and energy equations with the first-order velocity slip and temperature jump boundary conditions at the channel walls. An isoflux thermal boundary condition is applied on the heat sink base. The results of the present analysis are presented in terms of the channel aspect ratio, hydraulic diameter, momentum and thermal accommodation coefficients, Knudsen number, slip velocity, Reynolds number, and Prandtl number. It is found that fluid friction decreases and heat transfer increases compared with no-slip flow conditions, depending on the aspect ratios and Knudsen numbers that include the effects of the channel size or rarefaction and the fluid/wall interaction.
机译:在滑流状态下,分析研究了在水动力和热充分发展条件下二维矩形微通道和纳米通道中的层流强迫对流。通过在通道壁处以一阶速度滑移和温度跃变边界条件求解连续量动量和能量方程,获得流体摩擦和Nusselt数的封闭形式解。等流量热边界条件应用于散热器基座。本分析结果以通道长宽比,水力直径,动量和热调节系数,克努森数,滑移速度,雷诺数和普朗特数表示。已经发现,与无滑流条件相比,流体摩擦减小而热传递增加,这取决于包括通道尺寸或稀疏性和流体/壁相互作用的纵横比和克努森数。

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