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A comparison study of multi-component Lattice Boltzmann models for flow in porous media applications

机译:多孔介质中流动的多分量格子玻尔兹曼模型的比较研究

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摘要

A comparison study of three different multi-component Lattice Boltzmann models is carried out to explore their capability of describing binary immiscible fluid systems. The Shan-Chen pseudo potential model, the Oxford free energy model and the colour gradient model are investigated using the multi-relaxation time scheme (MRT) algorithm to study the flow of binary immiscible fluids. We investigate Poiseuille flow of layered immiscible binary fluids and capillary fingering phenomena and evaluate the results against analytical solutions. In addition, we examine the capability of the various models to simulate fluids with significant viscosity and density contrast and suitable interface thickness. This is of great importance for large scale flow in porous media applications, where it is important to minimise the interfacial thickness from a computational point of view. We find that the Shan-Chen model can simulate high density ratios up to 800 for binary fluids with the same viscosity. Imposing a viscosity contrast will lead to highly diffusive interfaces in the Shan-Chen model and therefore this will affect significantly the numerical stability. The Free Energy model and the colour gradient model have similar capabilities on this point: they can simulate binary fluids having the same density but with significant viscosity contrast. This is of great importance to study the flow of water, supercritical CO_2 and oil in porous media, for CO_2 storage and Enhanced Oil Recovery (EOR) operations.
机译:进行了三种不同的多组分格子Boltzmann模型的比较研究,以探索它们描述二元不混溶流体系统的能力。利用多重弛豫时间方案(MRT)算法研究了Shan-Chen伪势模型,牛津自由能模型和颜色梯度模型,以研究二元不混溶流体的流动。我们研究层状不混溶二元流体的Poiseuille流动和毛细管指现象,并根据分析解决方案评估结果。此外,我们检查了各种模型模拟具有显着粘度和密度对比以及合适的界面厚度的流体的能力。这对于多孔介质应用中的大规模流动非常重要,从计算的角度来看,最小化界面厚度非常重要。我们发现,对于相同粘度的二元流体,Shan-Chen模型可以模拟高达800的高密度比。施加粘度对比会在Shan-Chen模型中导致高度扩散的界面,因此将大大影响数值稳定性。自由能量模型和颜色梯度模型在这一点上具有相似的功能:它们可以模拟具有相同密度但具有显着的粘度对比的二元流体。这对于研究水,超临界CO_2和油在多孔介质中的流动,对于CO_2的储存和提高采油率(EOR)操作而言至关重要。

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  • 来源
    《Computers & mathematics with applications》 |2013年第6期|882-890|共9页
  • 作者

    Jianhui Yang; Edo S. Boek;

  • 作者单位

    Qatar Carbonates and Carbon Storage Research Centre (QCCSRC), Department of Chemical Engineering, Imperial College London, London, SW7 2AZ, United Kingdom;

    Qatar Carbonates and Carbon Storage Research Centre (QCCSRC), Department of Chemical Engineering, Imperial College London, London, SW7 2AZ, United Kingdom;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lattice boltzmann; multi-component models; binary fluids;

    机译:格博尔兹曼多组件模型;二元流体;

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