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Assessment of the two relaxation time Lattice-Boltzmann scheme to simulate Stokes flow in porous media

机译:评估模拟多孔介质中斯托克斯流的两个弛豫时间Lattice-Boltzmann方案

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摘要

The recent advances in 3-D imaging of porous structures have generated a tremendous interest in the simulation of complex single and two-phase flows. Lattice-Boltzmann (LB) schemes present a powerful tool to solve the flow field directly from the binarized 3-D images. However, as viscosity often plays an important role, the LB scheme should correctly treat viscosity effects. This is the case using a LB scheme with two relaxation times (TRT) unlike the broadly used, the single-relaxation rate, BGK, where the velocity of the modeled fluid does not vary as the inverse of the viscosity applying the bounce-back (no-slip) boundary rule. The aim of this work is to apply the LB-TRT approach to different types of porous media (straight channels, 2-D model porous media, sandstone) to solve for the flow field and to evaluate the approach in terms of parameter dependence, error and convergence time on the basis of permeability. We show that the variation of permeability with the free relaxation parameter A of the TRT scheme depends on the heterogeneity of the sample and on the numerical resolution. The convergence time depends on the applied viscosity and the parameter standing for the speed of sound, thus the computation time can be reduced by choosing appropriate values of those parameters. Two approaches to calculate permeability (Darcy's law and viscous energy dissipation) are proposed and investigated. We recommend to use Darcy's law, as dependence on A is less important. Periodic (in the presence of a driving body force) and pressure boundary conditions are evaluated in terms of the results.
机译:多孔结构3D成像的最新进展引起了对复杂的单相和两相流模拟的极大兴趣。 Lattice-Boltzmann(LB)方案提供了一个强大的工具,可以直接从二值化的3D图像中求解流场。但是,由于粘度通常起着重要作用,因此LB方案应正确处理粘度效应。这是使用具有两个弛豫时间(TRT)的LB方案的情况,与广泛使用的单弛豫率BGK不同,在该方案中,建模流体的速度不会随施加反弹的粘度的倒数而变化(无滑移)边界规则。这项工作的目的是将LB-TRT方法应用于不同类型的多孔介质(直通道,二维模型多孔介质,砂岩),以解决流场并评估参数依赖性,误差方面的方法。和基于渗透率的收敛时间。我们表明,渗透率随TRT方案的自由弛豫参数A的变化取决于样品的异质性和数值分辨率。收敛时间取决于所施加的粘度和代表声速的参数,因此可以通过选择那些参数的适当值来减少计算时间。提出并研究了两种计算渗透率的方法(达西定律和粘性能量耗散)。我们建议使用达西定律,因为对A的依赖不太重要。根据结果​​评估周期性(存在驱动力)和压力边界条件。

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  • 来源
    《Water resources research》 |2012年第4期|p.W04526.1-W04526.13|共13页
  • 作者单位

    Laboratoire FAST, UMR CNRS 7608,Universites Paris VI et Paris XI, Batiment 502, Campus Universitaire,91405 Orsay Cedex, France;

    IFP Energies nouvelles, 1 et 4,avenue de Bois Preau, 92852 Rueil-Malmaison Cedex, France;

    IFP Energies nouvelles, 1 et 4,avenue de Bois Preau, 92852 Rueil-Malmaison Cedex, France;

    IFP Energies nouvelles, 1 et 4,avenue de Bois Preau, 92852 Rueil-Malmaison Cedex, France;

    Laboratoire FAST, UMR CNRS 7608,Universites Paris VI et Paris XI, Batiment 502, Campus Universitaire,91405 Orsay Cedex, France;

    Antony Regional Centre, HBAN, Cemagref/Irstea, 1 rue Pierre-Gilles de Gennes CS 10030, 92761 Antony Cedex, France;

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