Instability of Poiseuille Flow in a Bidisperse Porous Medium Subject to a Uniform Vertical Throughflow Effect

Shahizlan Shakir Hajool, A. Harfash
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Abstract

In this article, we investigate the influence of the vertical throughflow Reynolds number on the instability of Poiseuille flow in a bidisperse porous medium. The Brinkman model was employed to describe fluid flow in the porous medium with large pores, referred to as "macropores, " while the Darcy model was utilized for fluid flow in the porous medium with small pores, referred to as "micropores." The resulting eigenvalue system was solved using the Chebyshev collocation method, renowned for its accuracy and flexibility, rendering it one of the most reliable methods available. Regardless of its direction, the impact of the vertical throughflow Reynolds number on system instability is not uniform; it exhibits a dual nature, acting as a destabilising factor at specific values while serving as a stabilising influence at others. In the case of the permeability ratio, porous parameter, interaction parameter, and Darcy Reynolds, our observations indicate that elevating these parameters results in an enhancement of system stability.
双分散多孔介质中受均匀垂直贯流效应影响的波塞流的不稳定性
本文研究了垂直流雷诺数对双分散多孔介质中 Poiseuille 流不稳定性的影响。布林克曼模型用于描述大孔隙多孔介质(称为 "大孔")中的流体流动,而达西模型用于描述小孔隙多孔介质(称为 "微孔")中的流体流动。无论其方向如何,垂直流雷诺数对系统不稳定性的影响并不一致;它表现出双重性质,在特定值时起破坏稳定的作用,而在其他值时则起稳定作用。就渗透率、多孔参数、相互作用参数和达西雷诺数而言,我们的观察结果表明,提高这些参数会增强系统的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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