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Three-dimensional cascaded lattice Boltzmann method: Improved implementation and consistent forcing scheme

机译:三维级联晶格Boltzmann方法:改进实施和一致的迫使方案

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摘要

The cascaded or central-moment-based lattice Boltzmann method (CLBM) proposed in [Phys. Rev. E 73, 066705 (2006)] possesses very good numerical stability. However, two constraints exist in three-dimensional (3D) CLBM simulations. First, the conventional implementation for 3D CLBM involves cumbersome operations and requires much higher computational cost compared to the single-relaxation-time (SRT) LBM. Second, it is a challenge to accurately incorporate a general force field into the 3D CLBM. In this paper, we present an improved method to implement CLBM in 3D. The main strategy is to adopt a simplified central moment set and carry out the central-moment-based collision operator based on a general multi-relaxation-time (GMRT) framework. Next, the recently proposed consistent forcing scheme for CLBM [Fei and Luo, Phys. Rev. E 96, 053307 (2017)] is extended to incorporate a general force field into 3D CLBM. Compared with the recently developed nonorthogonal CLBM [Rosis, Phys. Rev. E 95, 013310 (2017)], our implementation is proved to reduce the computational cost significantly. The inconsistency of adopting the discrete equilibrium distribution functions in the nonorthogonal CLBM is analyzed and validated. The 3D CLBM developed here in conjunction with the consistent forcing scheme is verified through numerical simulations of several canonical force-driven flows, highlighting very good properties in terms of accuracy, convergence, and consistency with the nonslip rule. Finally, the techniques developed here for 3D CLBM can be applied to make the implementation and execution of 3D MRT-LBM more efficient.
机译:基于级联或中央矩的晶格Boltzmann方法(CLBM),提出在[PHY。 Rev.E 73,066705(2006)]具有非常良好的数值稳定性。然而,三维(3D)CLBM仿真中存在两个约束。首先,3D CLBM的传统实现涉及麻烦的操作,并且与单弛豫时间(SRT)LBM相比需要更高的计算成本。其次,准确地将一般力场纳入3D CLBM是一个挑战。在本文中,我们介绍了一种在3D中实现CLBM的改进方法。主要策略是采用简化的中心时刻集,并基于一般的多放松时间(GMRT)框架来执行基于中心的碰撞运算符。接下来,最近提出的CLBM [FEI和LUO,PHARS。 Rev. E 96,053307(2017)]扩展为将一般力字段纳入3D CLBM。与最近开发的非正交CLBM [ross,phys。 Rev. E 95,013310(2017)]我们的实施被证明是显着降低计算成本。分析并验证采用非正交CLBM中的离散平衡分布函数的不一致。这里开发的3D CLBM与一致的强制方案结合使用几种规范力驱动的流量的数值模拟来验证,在准确性,收敛和与非NONSLIP规则的一致性方面突出显示非常好的特性。最后,可以应用此处为3D CLBM开发的技术来实现3D MRT-LBM的实现和执行更有效。

著录项

  • 来源
    《Physical review, E》 |2018年第1期|共12页
  • 作者

    Linlin Fei; Kai H. Luo; Qing Li;

  • 作者单位

    Center for Combustion Energy;

    Key laboratory for Thermal Science and Power Engineering of Ministry of Education Department of Energy and Power Engineering Tsinghua University Beijing 100084 China;

    Center for Combustion Energy;

    Key laboratory for Thermal Science and Power Engineering of Ministry of Education Department of Energy and Power Engineering Tsinghua University Beijing 100084 China;

    School of Energy Science and Engineering Central South University Changsha 410083 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 统计物理学;等离子体物理学;流体力学;
  • 关键词

    Three-dimensional cascaded; lattice Boltzmann method; forcing scheme;

    机译:三维级联;格子Boltzmann方法;迫使方案;

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