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Analytical and numerical stability analysis of Soret-driven convection in a horizontal porous layer: the effect of conducting bounding plates

机译:水平多孔层中Soret驱动的对流的分析和数值稳定性分析:传导边界板的影响

摘要

The aim of this study was to investigate the effect of conducting boundaries on the onset of convection in a binary fluid-saturated porous layer. The isotropic saturated porous layer is bounded by two impermeable but thermally conducting plates, subjected to a constant heat flux. These plates have identical conductivity. Moreover, the conductivity of the plates is generally different from the porous layer conductivity. The overall layer is of large extent in both horizontal directions. The problem is governed by seven dimensionless parameters, namely the normalized porosity of the medium ε, the ratio of plates over the porous layer thickness δ and their relative thermal conductivities ratio d, the separation ratio δ, the Lewis number Le and thermal Rayleigh number Ra. In this work, an analytical and numerical stability analysis is performed. The equilibrium solution is found to lose its stability via a stationary bifurcation or a Hopf bifurcation depending on the values of the dimensionless parameters. For the long-wavelength mode, the critical Rayleigh number is obtained as Racs=12(1+2dδ )/[1+ψ (2dδLe+Le+1)] and kcs=0 for ψ> ψ uni> 0. This work extends an earlier paper by Mojtabi and Rees (2011 Int. J. Heat Mass Transfer 54 293-301) who considered a configuration where the porous layer is saturated by a pure fluid.
机译:这项研究的目的是研究传导边界对二元流体饱和多孔层中对流开始的影响。各向同性的饱和多孔层由两块不可渗透但导热的板界定,它们受到恒定的热通量。这些板具有相同的导电性。而且,板的电导率通​​常不同于多孔层的电导率。整个层在两个水平方向上都很大程度。该问题由七个无因次参数决定,即介质的归一化孔隙率ε,板在多孔层厚度上的比率δ及其相对热导率比d,分离比δ,路易斯数Le和热瑞利数Ra 。在这项工作中,进行了分析和数值稳定性分析。根据无量纲参数的值,发现平衡解通过固定分支或Hopf分支失去了稳定性。对于长波长模式,获得的临界瑞利数为Racs = 12(1 +2dδ)/ [1 +ψ(2dδLe+ Le + 1)],对于ψ>ψuni> 0,kcs = 0。 Mojtabi和Rees(2011 Int。J.热传质54 293-301)的早期论文,他考虑了多孔层被纯流体饱和的构造。

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