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Horizontally isotropic bidispersive thermal convection

机译:水平各向同性的竞选热对流

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A bidispersive porous material is one which has usual pores but additionally contains a system of micro pores due to cracks or fissures in the solid skeleton. We present general equations for thermal convection in a bidispersive porous medium when the permeabilities, interaction coefficient and thermal conductivity are anisotropic but symmetric tensors. In this case, we show exchange of stabilities holds and fluid movement will commence via stationary convection, and additionally we show the global nonlinear stability threshold is the same as the linear instability one. Attention is then focused on the case where the interaction coefficient and thermal conductivity are isotropic, and the permeability is isotropic in the horizontal directions, although the permeability in the vertical direction is different. The nonlinear stability threshold is calculated in this case and numerical results are presented and discussed in detail.
机译:具有常用孔的有突出的多孔材料,但另外含有由于固体骨架中的裂缝或裂缝引起的微孔系统。 当渗透率,相互作用系数和导热率是各向异性但对称的张量时,我们在有偏移的多孔介质中呈现出在Bidispersive多孔介质中的热对流的一般方程。 在这种情况下,我们显示稳定性的换算和流体运动将通过静止对流开始,并且另外我们显示全局非线性稳定性阈值与线性不稳定性阈值相同。 然后将注意力集中在相互作用系数和导热性是各向同性的情况下,并且渗透性在水平方向上是各向同性的,尽管垂直方向上的渗透性不同。 在这种情况下计算非线性稳定性阈值,并详细介绍和讨论数值结果。

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