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Numerical simulation and theoretical analysis of thermal boundary characteristics of convection heat transfer in porous media

机译:多孔介质中对流换热热边界特征的数值模拟与理论分析

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The thermal boundary characteristics at the contact interface between a porous media and an impermeable wall subject to a constant heat flux on its upper surface with and without consideration of the thermal contact resistance were investigated using a particle-level numerical simulation of single phase fluid flow and convection heat transfer in porous media. The numerical simulations assumed an ideal packed bed (simple cubic structure) formed by uniform diameter particles with small contact areas and a zero- or finite-thickness wall subject to a constant heat flux at the surface which mirrors the experimental setup. The numerical simulations showed that the temperature distribution at the contact interface is non-uniform for the porous media with a zero-thickness impermeable wall, and in the porous media with a finite-thickness impermeable wall with a thermal contact resistance between the particles and the plate (such as with a non-sintered porous media) with a constant heat flux on the outer surface, while the heat flux distribution at the contact interface is quite uniform for these cases. However, in the porous media with a finite-thickness impermeable wall without a thermal contact resistance between the particles and the plate (such as with a sintered porous media) with a constant heat flux on the outer surface, the heat flux distribution at the contact interface is very non-uniform, while the temperature distribution at the contact interface is quite uniform. Numerical simulations of the thermal boundary characteristics of the convection heat transfer in the porous media were used to investigate the applicability of various boundary conditions for the energy equations with and without a thermal contact resistance between the particles and the plate wall.
机译:使用单相流体流动的颗粒级数值模拟研究了多孔介质与不渗透壁之间的接触界面处的热边界特性,该壁在其上表面受到恒定热通量(不考虑或不考虑热接触阻力)。多孔介质中的对流传热。数值模拟假设理想的填充床(简单的立方结构)是由直径均匀,接触面积小的颗粒和厚度为零或有限的壁在表面受到恒定热通量形成的,这反映了实验装置。数值模拟表明,对于具有零厚度不透水壁的多孔介质,在接触界面处的温度分布是不均匀的;对于具有有限厚度不透水壁的多孔介质,在颗粒和颗粒之间的热接触电阻是不均匀的。板(例如带有非烧结多孔介质)在外表面上具有恒定的热通量,而在这些情况下,接触界面处的热通量分布非常均匀。然而,在具有有限厚度的不渗透壁的多孔介质中,在颗粒与板之间没有热接触阻力的情况下(例如烧结多孔介质),其外表面上的热通量恒定,在接触处的热通量分布界面非常不均匀,而接触界面处的温度分布非常均匀。多孔介质中对流换热的热边界特征的数值模拟被用来研究在能量方程中带和不带颗粒与板壁之间的热接触电阻的各种边界条件的适用性。

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