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Analytical solution to heat transfer in compressible laminar flow in a flat minichannel

机译:扁平小通道中可压缩层流中热传递的解析解

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Heat transfer in compressible laminar flow in mini-/micro-channels, a classical and general topic in fields of fuel cells, electronics, micro heat exchanger, etc., is revisited. Based on a two-dimensional continuum flow model, analytical solutions of the dimensionless model are achieved in closed-form symbolic algebras of Whittaker eigenfunctions, corresponding to two kinds of boundary conditions with arbitrarily prescribed wall temperature or wall heat flux. As the eigenvalues and eigenfunctions are independent on the dimensionless quantities, which influence the along-the-channel behaviors, the algorithm reveals the common features of compressible laminar thermal flows. The algorithms do not require the assumption of a linear pressure distribution, which is proved to be untenable in some cases (e.g. constant wall heat flux). The algorithms are validated well by the exact (numerical) computations in exemplary cases of both small and moderate Reynolds number, Mach number and Eckert number of air. Although expressed in a series of eigenfunctions, only several terms (sometimes one or two terms) of solutions are required for a practical computation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:微型/微通道中可压缩层流中的热传递是燃料电池,电子,微型热交换器等领域的经典和通用课题。基于二维连续流模型,在惠特克特征函数的闭合形式符号代数中,对应于任意指定壁温或壁热通量的两种边界条件,实现了无量纲模型的解析解。由于特征值和特征函数与无量纲量无关,这会影响通道的行为,因此该算法揭示了可压缩层流的共同特征。该算法不需要假设线性压力分布,这在某些情况下被证明是站不住脚的(例如恒定的壁热通量)。在小和中等雷诺数,马赫数和空气埃克特数的示例情况下,通过精确(数值)计算对算法进行了很好的验证。尽管以一系列本征函数表示,但对于实际计算,只需要解的几个项(有时是一个或两个项)即可。 (C)2018 Elsevier Ltd.保留所有权利。

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