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Forcing frequency effects on turbulence dynamics in pulsatile pipe flow

机译:脉动管流动中湍流动力学的频率效应

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摘要

The turbulence dynamics of pulsatile pipe flow are investigated using direct numerical simulation (DNS) at a mean friction Reynolds number of 180. Results are presented for a range of forcing frequencies at a fixed amplitude, which, based on existing classifications, corresponds to the current-dominated regime. This work directs attention towards the phase-variations of single and two-point turbulence statistics, with a particular emphasis on the response of the Reynolds shear stress to systematic changes in the applied forcing frequency. The study has yielded two key outcomes, (i) A new frequency classification procedure for pulsatile turbulent flows (at low-to-moderate friction Reynolds numbers), informed by the Reynolds shear stress frequency co-spectra and the value of the applied forcing frequency. (ii) A detailed account of single- and two-point Reynolds shear stress statistics, in response to high, very-high and ultra-high forcing frequencies in order to study turbulence dynamics in the physical and Fourier domains. Furthermore, the oscillatory velocity field obtained from the DNS data is compared against the laminar Womersley solution in order to assess the interaction (or lack thereof) between the oscillatory velocity field and phase-averaged Reynolds shear stress fluctuations. For the higher frequencies considered in this work, single- and two-point Reynolds shear statistics all enter the so-called "frozen" regime — which occurs as the forcing time-scale becomes smaller than that of the highest-frequency, energy-containing motions in the Reynolds shear stress co-spectra.
机译:使用直接数值模拟(DNS)在平均摩擦雷诺数为180的直接数值模拟(DNS)来研究脉动管流的湍流动力学。在固定幅度处呈现的结果,该结果基于现有分类,这是对应于当前的固定幅度的强制频率 - 政治制度。这项工作引导了对单点和两点湍流统计的相位变型的关注,特别强调雷诺剪切应力对所施加的强制频率的系统变化的响应。该研究产生了两个关键结果,(i)脉动湍流流动的新频率分类程序(在低于中等摩擦雷诺数),被雷诺剪切应力频率共光谱和应用强制频率的值通知。 (ii)响应于高,非常高,超高强制频率的单点和两点雷诺剪切应力统计的详细描述,以研究物理和傅里叶域中的湍流动态。此外,将从DNS数据获得的振荡速度场与层状组织溶液进行比较,以便在振荡速度场和相平均雷诺剪切应力波动之间评估相互作用(或其缺乏)。对于在本工作中考虑的较高频率,单点和两点雷诺兹剪切统计数据都输入所谓的“冷冻”制度 - 由于强制时间尺度变得小于含最高频率的能量尺度而发生的所谓的“冷冻”制度雷诺剪切应力共光谱中的动作。

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  • 来源
    《International Journal of Heat and Fluid Flow》 |2020年第4期|108538.1-108538.15|共15页
  • 作者单位

    Department of Mechanical Engineering The University of Melbourne Melbourne 3010 VIC Australia;

    Department of Mechanical Engineering The University of Melbourne Melbourne 3010 VIC Australia;

    Department of Mechanical Engineering The University of Melbourne Melbourne 3010 VIC Australia;

    Department of Mechanical Engineering The University of Melbourne Melbourne 3010 VIC Australia;

    Department of Mechanical Engineering The University of Melbourne Melbourne 3010 VIC Australia;

  • 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

    Direct numerical simulation; Turbulence; Unsteady shear flows;

    机译:直接数值模拟;湍流;不稳定的剪切流量;

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