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On the Inertial Single Phase Flow in 2D Model Porous Media: Role of Microscopic Structural Disorder

机译:二维模型多孔介质中的惯性单相流:微观结构紊乱的作用

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In this work, single-phase incompressible laminar flow in 2D model porous media is studied and the influence of microscopic structural disorder on the flow is thoroughly investigated. Emphasis is laid upon the onset of the deviation from Darcy's law and the identification of different inertia regimes observed before the flow becomes unsteady. For this purpose, six globally disordered pore structures were generated and the values of the critical Reynolds number at which the flow becomes unsteady corresponding to the first Hopf bifurcation were determined. Numerical simulations of steady laminar single-phase flow were then carried out to investigate the effects of the microstructures on the inertial correction to Darcy's law. Different flow regimes, namely weak inertia, strong inertia and the regime beyond strong inertia, are identified. Comparisons are made with results presented in the literature which were restricted to ordered and locally disordered structures. The critical Reynolds number decreases and inertia intensity increases as more disorder is introduced into the pore structure. Results on flow inertia widely extend some previous studies on the subject and show that it is mainly influenced by the shape of the obstacles (either circular or square), slightly affected by the inclination of the square cylinders and hardly disturbed by the size distribution of the obstacles.
机译:在这项工作中,研究了二维模型多孔介质中的单相不可压缩层流,并深入研究了微观结构紊乱对流的影响。重点放在偏离达西定律的开始以及在流体变得不稳定之前观察到的不同惯性状态的识别上。为此目的,生成了六个全局无序的孔结构,并确定了与第一霍普夫分叉相对应的流量不稳定的临界雷诺数值。然后进行了稳定层流单相流的数值模拟,以研究微观结构对达西定律的惯性校正的影响。确定了不同的流态,即弱惯性,强惯性和超出强惯性的态。与文献中给出的结果进行了比较,结果仅限于有序和局部无序的结构。随着更多的无序性引入孔结构中,临界雷诺数减少而惯性强度增加。流动惯性的结果广泛地扩展了先前对该主题的研究,并表明它主要受障碍物形状(圆形或正方形)的影响,受方形圆柱体的倾斜影响较小,而不受障碍物尺寸分布的干扰障碍。

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