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Effect of an inserted porous layer located at a wall of a parallel plate channel on forced convection heat transfer

机译:位于平行板通道壁上的多孔层对强制对流传热的影响

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摘要

A theoretical study is performed on heat and fluid flow in partially porous medium filled parallel plate channel. A uniform symmetrical heat flux is imposed onto the boundaries of the channel partially filled with porous medium. The dimensional forms of the governing equations are solved numerically for different permeability and effective thermal conductivity ratios. Then, the governing equations are made dimensionless and solved analytically. The results of two approaches are compared and an excellent agreement is observed, indicating correctness of the both solutions. An overall Nusselt number is defined based on overall thermal conductivity and difference between the average temperature of walls and mean temperature to compare heat transfer in different channels with different porous layer thickness, Darcy number, and thermal conductivity ratio. Moreover, individual Nusselt numbers for upper and lower walls are also defined and obtained. The obtained results show that the maximum overall Nusselt number is achieved for thermal conductivity ratio of 1. At specific values of Darcy number and thermal conductivity ratio, individual Nusselt numbers approach to infinity since the value of wall temperatures approaches to mean temperature.
机译:对部分充满多孔介质的平行板通道中的热和流体流动进行了理论研究。均匀对称的热通量被施加到部分填充有多孔介质的通道的边界上。对于不同的渗透率和有效的热导率,数值求解了控制方程的维数形式。然后,使控制方程成为无量纲,并进行解析求解。比较了两种方法的结果,并观察到极好的一致性,表明两种解决方案的正确性。基于总导热系数以及壁的平均温度与平均温度之间的差异定义总的努塞尔数,以比较具有不同多孔层厚度,达西数和导热系数的不同通道中的传热。此外,还定义并获得了上壁和下壁的各个Nusselt数。获得的结果表明,当导热系数为1时,可以实现最大的总Nusselt数。在达西数和导热系数的特定值下,由于壁温值接近平均温度,所以各个Nusselt数接近无穷大。

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