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The Onset of Convection in a Two-Layered Porous Medium with Anisotropic Permeability

机译:具有各向异性渗透性的双层多孔介质中对流的开始

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摘要

We consider convection in a horizontal porous layer of uniform thickness which is heated from below and which is composed of two anisotropic sublayers with principal axes lying in the three coordinate directions. The aim is to determine criteria for the onset of convection by finding the critical Rayleigh number, wavenumber and roll orientation relative to the coordinate axes. The full set of nondimensional parameters has at least six members even when the sublayers are considered to be thermally isotropic, and therefore, we select some special cases in order to illuminate the type of qualitative behaviour which may be expected. One such case is where the anisotropic sublayers are identical except that one sublayer is rotated by an angle of 90 degrees to the other. In this situation, the most unstable roll is found to lie at an angle of +/- 45 degrees to the principal axes. It is also found that fluid particles exhibit a mean longitudinal flow as they circulate about the vortex axis. This drift along the vortex is balanced by an equal and opposite drift in the two neighbouring vortices. Convection in each sublayer is shown to be two dimensional even though the full flow field is three dimensional.
机译:我们考虑从下面加热的均匀厚度的水平多孔层中的对流,并且由两个具有位于三个坐标方向上的主轴的两个各向异性子层组成。目的是通过找到相对于坐标轴来确定对流开始的标准。即使在子层被认为是热正向的,也具有至少六个成员,因此,我们选择一些特殊情况,以照亮可能预期的定性行为的类型。除了一个子层旋转90度的角度之外,这样的情况是各向异性子层是相同的。在这种情况下,发现最不稳定的辊被置于主轴的角度+/- 45度。还发现,当它们围绕涡旋轴线循环时,流体颗粒表现出平均纵向流动。这种沿着涡流的漂移是通过两个相邻涡流的平等且相反的漂移平衡。即使全流场为三维,每个子层中的对流也是二维的。

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