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Large-eddy simulations of stratified plane Couette flow using the anisotropic minimum-dissipation model

机译:使用各向异性最小耗散模型的分层平面沟槽的大涡模拟

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摘要

The anisotropic minimum-dissipation (AMD) model for large-eddy simulation (LES) has been recently developed, and here the model performance is examined in stratified plane Couette flow. To our knowledge, this is the first use of the AMD model for resolved LES of stratified wall-bounded flow. A comparison with previously published direct numerical simulations (DNS) provides insight into model and grid requirements. Prandtl numbers of Pr = 0.7-70 and a range of Richardson numbers show that the AMDLES performs well even with a strong stabilising buoyancy flux. We identify three new requirements for accurate LES of stratified wall-bounded flow. First, the LES must resolve the turbulent structures at the edge of the viscous sublayer in order to satisfy the Obukov length scale condition, L-S(+) 200. Otherwise the LES solution may laminarise where the DNS solution remains turbulent. Second, the LES must have enough vertical grid resolution within the viscous and diffusive sublayers to resolve the wall fluxes. Third, the grid must be reasonably isotropic (vertical-to-horizontal grid aspect ratio 0.25) at the edge of the sublayer and through the turbulent interior for the AMDLES to correctly simulate the scalar flux. When these model requirements are fulfilled, the AMD LES performs very well, producing vertical mean profiles, friction Reynolds numbers, and Nusselt numbers consistent with DNS solutions at significantly higher grid resolution. Published by AIP Publishing.
机译:最近开发了大型涡流模拟(LES)的各向异性最小耗散(AMD)模型,并且在分层平面循环流动中检查了模型性能。为了我们的知识,这是第一次使用AMD模型用于分解壁限流的解决方案。与先前已发布的直接数值模拟(DNS)的比较提供了对模型和网格要求的洞察力。 PRANDTL PR = 0.7-70的数量和一系列Richardson号码表明,即使具有强大的稳定性浮力通量,amdles也表现良好。我们确定了三个精确的具有分层壁限流的新要求。首先,LES必须在粘性子层的边缘处解析湍流结构,以满足obukov长度尺度条件,L-S(+)&否则,LES溶液可以是DNS溶液保持湍流的流体化。其次,LES必须在粘性和扩散子层内具有足够的垂直网格分辨率来解析壁通量。第三,网格必须在子层的边缘处具有合理的各向同性(垂直到水平的网格宽高比& 0.25),并通过巨大的湍流内部来正确模拟标量助焊剂。当满足这些模型要求时,AMD LES非常好,产生垂直平均曲线,摩擦雷诺数,与DNS解决方案一致的果实号在显着较高的网格分辨率。通过AIP发布发布。

著录项

  • 来源
    《Physics of fluids》 |2018年第8期|共13页
  • 作者单位

    Univ Cambridge Ctr Math Sci Dept Appl Math &

    Theoret Phys Wilberforce Rd Cambridge CB3 0WA England;

    Univ Cambridge Ctr Math Sci Dept Appl Math &

    Theoret Phys Wilberforce Rd Cambridge CB3 0WA England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
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