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Throughflow Effects on Penetrative Convection in Superposed Fluid and Porous Layers

机译:贯穿流对叠加流体层和多孔层中渗透对流的影响

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摘要

The effect of vertical throughflow on the onset of penetrative convection simulated via internal heating in a two-layer system in which a layer of fluid overlies and saturates a layer of porous medium is studied. Flow in the porous medium is governed by Forchheimer-extended Darcy equation, and Beavers-Joseph slip condition is applied at the interface between the fluid and the porous layers. The boundaries are considered to be rigid, however permeable, and insulated to temperature perturbations. The eigenvalue problem is solved using a regular perturbation technique with wave number as a perturbation parameter. The ratio of fluid layer thickness to porous layer thickness, ζ, the direction of throughflow, and the presence of volumetric internal heat source in fluid and/or porous layer play a decisive role on the stability characteristics of the system. In addition, the influence of Prandtl number arising due to throughflow is also emphasized on the stability of the system. It is observed that both stabilizing and destabilizing factors can be enhanced because of the simultaneous presence of a volumetric heat source and vertical throughflow so that a more precise control (suppress or augment) of thermal convective instability in a layer of fluid or porous medium is possible.
机译:在两层系统中研究了垂直通流对通过内部加热模拟的穿透对流的影响,在该系统中,一层流体覆盖并饱和了一层多孔介质。多孔介质中的流动受Forchheimer扩展的Darcy方程控制,并且Beavers-Joseph滑动条件应用于流体和多孔层之间的界面。边界被认为是刚性的,但是是可渗透的,并且对温度扰动是绝缘的。使用常规的摄动技术以波数作为摄动参数来解决特征值问题。流体层厚度与多孔层厚度之比ζ,通流方向以及流体和/或多孔层中存在的内部体积热源对系统的稳定性起决定性作用。此外,还强调了由于通流引起的普朗特数的影响对系统的稳定性。可以观察到,由于同时存在体积热源和垂直通流,因此可以提高稳定和不稳定因素,因此可以在流体或多孔介质层中更精确地控制(抑制或增强)热对流不稳定性。

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