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首页> 外文期刊>Applied Mathematical Modelling >Pore-scale simulation of salt fingers in porous media using a coupled iterative source-correction immersed boundary-lattice Boltzmann solver
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Pore-scale simulation of salt fingers in porous media using a coupled iterative source-correction immersed boundary-lattice Boltzmann solver

机译:使用耦合迭代源 - 矫正沉浸式边界晶石Boltzmann求解器的多孔介质中盐手指的孔径模拟

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摘要

In the conventional representative elementary volume-scale models, details of fluid movement, thermal transfer and mass transport in the porous media are relatively hard to capture, while the understanding of them is crucial in many diverse engineering and environmental applications such as running nuclear power facilities or pollutant diffusion in soil environment. In this paper, a pore-scale lattice Boltzmann method (LBM) modeling of double diffusion systems in saturated porous media is developed to investigate the role played by pore structure in the behavior of salt finger phenomena together with their fluid flow mechanism. An iterative source-correction immersed boundary method is developed to describe the solid skeleton with different boundary conditions for velocity field, heat transfer, and mass transport, respectively. The natural convection in a vertical annulus and the conjugate heat transfer problem in a two-layer horizontal annulus are employed to verify the accuracy and the applicability of the immersed boundary method for Dirichlet-type, Neumann-type and conjugate heat transfer boundary conditions, respectively. Comparisons between the present results and existing investigation show a very good agreement and demonstrate that the double diffusive process in porous media can be predicted with a good accuracy by the proposed model. Subsequently, the instability evolution process of salt finger-type of double diffusive convection in porous media is investigated, with a focus on the structure and behavior of salt fingers and the kinetic energy evolution. The obtained simulation results show that in saturated porous media, relatively large vertical mass fluxes can be generated even if the density distribution is of dynamical stability.
机译:在传统的代表性的基本体积尺度模型中,多孔介质中的流体运动,热转印和质量传输的细节相对难以捕获,而对它们的理解是在许多不同的工程和环境应用中的关键,例如运行核电力设施或土壤环境中的污染物扩散。在本文中,开发了一种饱和多孔介质中双扩散系统的孔径格子玻璃晶型方法(LBM)建模,以研究孔结构在盐手指现象的行为中发挥作用的作用与流体流动机理。开发了一种迭代源校正浸没边界方法,用于描述具有不同边界条件的固体骨架,分别用于速度场,传热和质量传输。采用垂直环的自然对流和双层水平环空中的缀合物传热问题分别用于分别验证浸没边界法的精度和适用性,分别用于抗体型,Neumann型和共轭传热边界条件。现有结果与现有调查之间的比较表明,可以通过所提出的模型以良好的精度预测多孔介质中的双扩散过程。随后,研究了多孔介质中双重扩散对流的盐指对的不稳定演化过程,重点关注盐手指的结构和行为和动能演化。所获得的仿真结果表明,在饱和多孔介质中,即使密度分布具有动态稳定性,也可以产生相对大的垂直质量通量。

著录项

  • 来源
    《Applied Mathematical Modelling》 |2021年第6期|656-675|共20页
  • 作者单位

    State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering Hohai University Nanjing 210098 China College of water Conservancy and Hydropower Engineering Hohai University Nanjing 210029 China Department of Applied Ocean Physics and Engineering Woods Hole Oceanographic Institution Woods Hole MA 02543 USA;

    State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering Hohai University Nanjing 210098 China College of water Conservancy and Hydropower Engineering Hohai University Nanjing 210029 China;

    College of water Conservancy and Hydropower Engineering Hohai University Nanjing 210029 China;

    College of water Conservancy and Hydropower Engineering Hohai University Nanjing 210029 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Salt finger; Immersed boundary method; Lattice Boltzmann method; Neumann boundary;

    机译:盐手指;浸没边界法;格子Boltzmann方法;neumann边界;

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