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Influence of Vertical Vibrations on the Stability of a Binary Mixture in a Horizontal Porous Layer Subjected to a Vertical Heat Flux

机译:垂直振动对垂直热流作用下水平多孔层中二元混合物稳定性的影响

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摘要

We present an analytical and numerical stability analysis of Soret-driven convection in a porous cavity saturated by a binary fluid mixture and subjected to vertical high-frequency and small-amplitude vibrations. Two configurations have been considered and compared: an infinite horizontal layer and a bounded domain with a large aspect ratio. In both cases, the initial temperature gradient is produced by a constant uniform heat flux applied on the horizontal boundaries. A formulation using time-averaged equations is used. The linear stability of the equilibrium solution is carried out for various Soret separation ratios , vibrational Rayleigh numbers Rv, Lewis numbers Le and normalized porosity. For an infinite horizontal layer, the critical Rayleigh number is determined analytically. For a steady bifurcation to a one-cell solution (the critical wavenumber is zero), we obtain for all Rv. When the bifurcation is a Hopf bifurcation or when the critical wavenumber is not zero, we use a Galerkin method to compute the critical values. Our study is completed by a nonlinear analysis of the bifurcation to one-cell solutions in an infinite horizontal layer that is compared to numerical simulations in bounded horizontal domains with large aspect ratio.
机译:我们提出了在由二元流体混合物饱和并经受垂直高频和小振幅振动的多孔腔中,Soret驱动的对流的分析和数值稳定性分析。已经考虑并比较了两种配置:无限的水平层和具有大纵横比的有界区域。在这两种情况下,初始温度梯度都是由施加在水平边界上的恒定均匀热通量产生的。使用使用时间平均方程的公式。平衡溶液的线性稳定性是针对各种Soret分离比,振动瑞利数Rv,路易斯数Le和归一化孔隙度进行的。对于无限水平层,临界瑞利数是通过解析确定的。对于单细胞解决方案的稳定分叉(临界波数为零),我们获得所有Rv。当分叉为霍普夫分叉或临界波数不为零时,我们使用Galerkin方法计算临界值。我们的研究是通过对无限水平层中分叉到单细胞解的非线性分析完成的,该分析与具有高长宽比的有界水平域中的数值模拟进行了比较。

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