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首页> 外文期刊>Transport in Porous Media >Double-Diffusive Natural Convection in Anisotropic Porous Medium Bounded by Finite Thickness Walls: Validity of Local Thermal Equilibrium Assumption
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Double-Diffusive Natural Convection in Anisotropic Porous Medium Bounded by Finite Thickness Walls: Validity of Local Thermal Equilibrium Assumption

机译:有限厚度壁为边界的各向异性多孔介质中的双扩散自然对流:局部热平衡假设的有效性

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Double-diffusive natural convection in fluid-saturated porous medium inside a vertical enclosure bounded by finite thickness walls with opposing temperature, concentration gradients on vertical walls as well as adiabatic and impermeable horizontal ones has been performed numerically. The Darcy model was used to predict fluid flow inside the porous material, while thermal fields are simulated based on two-energy equations for fluid and solid phases on the basis of a local thermal non-equilibrium model. Computations have been performed for different controlling parameters such as the buoyancy ratio N, the Lewis number Le, the anisotropic permeability ratio R_p, the fluid-to-solid thermal conductivity ratio R_c, the interphase heat transfer coefficient H, the ratio of the wall thickness to its height D, the wall-to-porous medium thermal diffusivity ratio R_w, and the solid-to-fluid heat capacity ratio γ. Thus, the effects of the controlling parameters on heat and mass transfer characteristics are discussed in detail. Moreover, the validity domain of the local thermal equilibrium (LTE) assumption has been delimited for different set of the governing parameters. It has been shown that Le has a noticeable significant effect on fluid temperature profiles and that higher N values lead to a significant enhancement in heat and mass transfer rates. Moreover, for higher H, R_c, R_p, R_w, or D values and/or lower y values, the solid and fluid phases tend toward LTE.
机译:在以垂直方向的有限厚度壁为边界的垂直封闭空间内的流体饱和多孔介质中,在流体饱和多孔介质中进行了双扩散自然对流,并在数值上进行了垂直壁上的浓度梯度以及绝热和不渗透水平壁上的浓度梯度。 Darcy模型用于预测多孔材料内部的流体流动,而热场则基于局部热非平衡模型,基于流体和固相的两个能量方程式进行模拟。已经针对不同的控制参数进行了计算,例如浮力比N,刘易斯数Le,各向异性渗透率R_p,流固热导率R_c,相间传热系数H,壁厚比到其高度D,壁对多孔介质的热扩散率R_w,以及固体与流体的热容比γ。因此,将详细讨论控制参数对传热和传质特性的影响。此外,对于不同组的控制参数,已经界定了局部热平衡(LTE)假设的有效性域。已经表明,Le对流体温度曲线具有显着的显着影响,而较高的N值会导致传热和传质速率显着提高。此外,对于较高的H,R_c,R_p,R_w或D值和/或较低的y值,固相和流体相趋于LTE。

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