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Temperature fields in a channel partially filled with a porous material under local thermal non-equilibrium condition-an exact solution

机译:局部热不平衡条件下部分填充有多孔材料的通道中的温度场-精确解

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摘要

This work examines analytically the forced convection in a channel partially filled with a porous material and subjected to constant wall heat flux. The Darcy–Brinkman–Forchheimer model is used to represent the fluid transport through the porous material. The local thermal non-equilibrium, two-equation model is further employed as the solid and fluid heat transport equations. Two fundamental models (models A and B) represent the thermal boundary conditions at the interface between the porous medium and the clear region. The governing equations of the problem are manipulated, and for each interface model, exact solutions, for the solid and fluid temperature fields, are developed. These solutions incorporate the porous material thickness, Biot number, fluid to solid thermal conductivity ratio and Darcy number as parameters. The results can be readily used to validate numerical simulations. They are, further, applicable to the analysis of enhanced heat transfer, using porous materials, in heat exchangers.
机译:这项工作分析地检查了部分填充有多孔材料并经受恒定壁热通量的通道中的强制对流。 Darcy–Brinkman–Forchheimer模型用于表示通过多孔材料的流体传输。局部热非平衡两方程模型被进一步用作固体和流体的热传递方程。两个基本模型(模型A和B)表示多孔介质与透明区域之间界面的热边界条件。操作该问题的控制方程,并针对每个接口模型,为固体和流体温度场开发精确的解决方案。这些解决方案将多孔材料的厚度,比奥数,流体与固体的热导率比以及达西数作为参数。结果可以很容易地用于验证数值模拟。它们还适用于在热交换器中使用多孔材料分析增强的热传递。

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