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Boundary layer turbulence and freestream turbulence interface, turbulent spot and freestream turbulence interface, laminar boundary layer and freestream turbulence interface

机译:边界层湍流和FreeSteam湍流界面,湍流点和自由流湍流接口,层边界层和Freestream湍流界面

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摘要

We study the boundary layer turbulence and freestream turbulence interface (BTFTI), the turbulent spot and freestream turbulence interface (TSFTI), and the laminar boundary-layer and freestream turbulence interface (LBFTI) using direct simulation. Grid spacings in the freestream are less than 1 Kolmogorov length scale during transition. Probability density functions of temperature and its derivatives are used to select the interface identification threshold, corroborated by a vorticity-based method. The interfaces so detected are confirmed to be physical a posteriori by the distinctive quasi-step-jump behavior in the swirling strength and temperature statistics along traverses normal to the BTFTI and TSFTI. No interface-normal inflection is detected across the LBFTI for either swirling strength, temperature, vorticity magnitude, Reynolds shear stress, streamwise velocity, normal velocity, or turbulence kinetic energy. The present direct numerical simulation data thus cast serious doubts on the shear sheltering hypothesis/theory, which asserts that a subset of freestream fluctuations is blocked by the LBFTI. In the early stage of transition, quasi-spansvise structures exist on the LBFTI. The TSFTI shape is dominated by head prints of concentrated hairpin vortices. Further downstream, the BTFTI geometry is strongly modulated by groves of hairpin vortices (the boundary layer large-scale motions) with a distinct streamwise preferential orientation. Streamwise velocity and turbulence kinetic energy only exhibit minor plateaus (rather than quasi-step-jump) across the BTFTI and the TSFTI. We emphasize that it is more meaningful and important to acquire reproducible and reliable interface-normal statistics prior to considering any plausible substructures and elusive transient dynamics of the BTFTI, TSFTI, and LBFTI. Published under license by AIP Publishing
机译:我们使用直接仿真研究边界层湍流和FreeStream湍流界面(BTFTI),湍流点和自由流湍流界面(TSFTI),以及层层边界层和自由流湍流界面(LBFTI)。在过渡期间,FreeStream中的网格间距小于1个Kolmogorov长度尺度。温度和其衍生物的概率密度函数用于选择界面识别阈值,通过基于涡度的方法来证实。如此检测到的接口被确认为物理A后序,其在旋转强度和温度统计中沿着BTFTI和TSFTI的旋转强度和温度统计中的旋转强度和温度统计。在LBFTI上检测到旋转强度,温度,涡度,雷诺剪切应力,流速速度,正常速度或湍流动能的界面正常的拐点。因此,目前的直接数值模拟数据在剪切保护假设/理论上施放严重怀疑,这置于LBFTI的自由流波动的子集。在过渡的早期阶段,在LBFTI上存在拟血管结构。 TSFTI形状由浓缩发夹涡流的头部印刷为主。进一步下游,BTFTI几何形状由发夹涡流(边界层大规模运动)的格子强烈调制,具有明显的流动优先取向。流动速度和湍流动能仅在BTFTI和TSFTI上表现出次要的强韧(而不是准步进)。我们强调,在考虑BTFTI,TSFTI和LBFTI的任何合理的子结构和难以捉摸的瞬态动态之前,在考虑任何合理的子结构和难以捉摸的瞬态动态之前,更加有意义和更重要。通过AIP发布在许可证下发布

著录项

  • 来源
    《Physics of fluids》 |2019年第4期|共23页
  • 作者单位

    Royal Mil Coll Canada Dept Mech &

    Aerosp Engn Kingston ON K7K 7B4 Canada;

    Univ Maryland IPST Burgers Program Fluid Dynam College Pk MD 20742 USA;

    Univ Waterloo Dept Mech &

    Mechatron Engn Waterloo ON N2L 3G1 Canada;

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

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