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Optimizing free parameters in the D3Q19 Multiple-Relaxation lattice Boltzmann methods to simulate under-resolved turbulent flows

机译:优化D3Q19多放松格子Boltzmann方法中的免费参数,以模拟分辨湍流流动

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摘要

We present a D3Q19 lattice scheme based in MRT with central moments (MRT-CM), where the free parameters of the model are optimized to dissipate under-resolved flow structures with high wavenumbers. In Chavez-Modena et al. in Computers & Fluids 172:397-409, 2018 [I], we compared the BGK, MRT-RM and MRT-CM for the D2Q9 lattice scheme using von Neumann analyses and quantified their numerical properties. Based on this study, we proposed an optimized 2D MRT-CM scheme with enhanced stability for under-resolved flows. Here, we extend this idea to the D3Q19 MRT-CM scheme.As before, we base our optimization for the free parameters, on the k-1% dispersion-error rule, that states that waves with dispersive errors above 1% should be dissipated since they pollute the solution and may cause instabilities. To this aim we increase dissipation in the scheme for waves with dispersive errors above 1%.The resulting optimized scheme is verified through a von Newmann analysis and validated for the three-dimensional Taylor-Green isotropic turbulent flow. We show how the original D3Q19 MRT-CM (d'Humieres version) leads to unrealistic kinetic energy accumulation at high wave numbers, whilst our optimized MRT-CM provides the correct energy dissipated rate, avoiding energy build up at high wavenumbers. These results suggest that our optimization strategy enhances stability and allows for accurate energy spectra in under-resolved flow simulations such as typically found in Large Eddy Simulations. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们介绍了基于MRT的MRT的D3Q19晶格方案,其中模型的自由参数经过优化,以散发出欠搏击的流动结构。在Chavez-Modena等人。在计算机和流体172:397-409,2018 [I]中,我们将BGK,MRT-RM和MRT-CM用于使用von Neumann分析和量化其数值的D2Q9晶格方案。基于这项研究,我们提出了一种优化的2D MRT-CM方案,具有增强的稳定性的欠载流。在这里,我们将此想法扩展到D3Q19 MRT-CM方案。之前,我们将我们的优化基于k-1%色散误差规则的自由参数,使得在1%以上的分散误差的波应该消失由于它们污染了解决方案,可能导致稳定性。为此目的,我们可以通过高于1%的分散误差来增加波浪方案的耗散。通过von newmann分析来验证所得到的优化方案,并验证了三维泰勒 - 绿色各向同性湍流。我们展示了原始D3Q19 MRT-CM(D'Humieres版本)如何在高波数下导致不切实际的动能累积,同时我们的优化MRT-CM提供了正确的能量耗散率,避免在高挥虫器中积聚能量。这些结果表明,我们的优化策略增强了稳定性,并允许在诸如通常在大型涡流模拟中发现的破坏性流模拟中的精确能谱。 (c)2020 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Journal of computational science》 |2020年第9期|101170.1-101170.13|共13页
  • 作者单位

    Univ Politecn Madrid ETSIAE Plaza Cardenal Cisneros 3 Madrid 28040 Spain|Univ Politecn Madrid Ctr Computat Simulat Campus Montegancedo Madrid 28660 Spain;

    Univ Politecn Madrid ETSIAE Plaza Cardenal Cisneros 3 Madrid 28040 Spain|Univ Politecn Madrid Ctr Computat Simulat Campus Montegancedo Madrid 28660 Spain;

    Univ Politecn Madrid ETSIAE Plaza Cardenal Cisneros 3 Madrid 28040 Spain|Univ Politecn Madrid Ctr Computat Simulat Campus Montegancedo Madrid 28660 Spain;

    Univ Politecn Madrid ETSIAE Plaza Cardenal Cisneros 3 Madrid 28040 Spain|Univ Politecn Madrid Ctr Computat Simulat Campus Montegancedo Madrid 28660 Spain;

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

    Lattice Boltzmann; D3Q19 multiple-relaxation time; Rule of k-1 dispersion-error; Homogeneous isotropic turbulence;

    机译:格子Boltzmann;D3Q19多放松时间;K-1%的分散误差的规则;均匀各向同性湍流;
  • 入库时间 2022-08-18 21:31:47

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