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Dynamics of coherent structures in turbulent square duct flow

机译:湍流方形管道流动相干结构的动态

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摘要

The underlying flow dynamics in a turbulent flow in a periodic square duct is investigated by using the snapshot Proper Orthogonal Decomposition (POD) technique. In this study, the friction Reynolds number based on the duct width is fixed at 300. The coherent structures are identified through the spatial and temporal analysis of POD modes. Analysis of two sets of POD data is performed. In obtaining the first set, POD is performed on the combined fluctuating velocity vector, while for the second set, only the fluctuating velocity along the y- or z-direction is used. It was found that the first two most energetic spatial POD modes are the streamwise-independent or non-propagating roll modes. The third and fourth most energetic modes are observed to be streamwise-dependent, propagating modes. The spatio-temporal analysis of POD modes confirms the presence of traveling waves in the square duct, and its average speed is also calculated. The POD of the second dataset showed only propagating modes, and no non-propagating modes were found. These propagating modes are also rotationally symmetric. It has been shown that there is an energy exchange between non-propagating modes and propagating modes. The flow dynamics of the first four reconstructed POD modes portray the self-sustaining turbulence mechanism in a square duct. The structures obtained from the first POD dataset reconstruction of 10% energy show well organized hairpin vortices. Furthermore, it is found that the energy content of 35% gives detailed information on the coherent structures aligned along the wavy streamwise direction.
机译:通过使用快照适当的正交分解(POD)技术来研究周期性方形管道中的湍流中的底层流动动态。在该研究中,基于管道宽度的摩擦雷诺数固定为300.通过荚模式的空间和时间分析来识别相干结构。执行两组POD数据的分析。在获得第一组时,对组合的波动速度向量执行POD,而对于第二组,仅使用沿Y或Z方向的波动速度。发现前两个最能量的空间荚模式是流动独立的或非繁殖辊模式。观察到第三和第四最精力充沛的模式是流动依赖性的传播模式。 POD模式的时空分析确认存在方形管道中的行进波,还计算其平均速度。第二数据集的POD仅显示了传播模式,并且没有找到非传播模式。这些传播模式也旋转对称。已经表明,非传播模式和传播模式之间存在能量交换。前四个重建POD模式的流动动态描绘了方形管道中的自维持湍流机构。从第一POD数据集重建10%能量的结构提供了良好的组织发夹涡流。此外,发现35%的能量含量给出了沿波状流动方向对齐的相干结构的详细信息。

著录项

  • 来源
    《Physics of fluids》 |2020年第4期|共15页
  • 作者单位

    IIT Delhi Dept Appl Mech New Delhi 110016 India;

    AMU ZHCET Computat Aerodynam Lab Dept Mech Engn Aligarh 202002 Uttar Pradesh India;

    AMU ZHCET Computat Aerodynam Lab Dept Mech Engn Aligarh 202002 Uttar Pradesh India;

    IIT Delhi Dept Appl Mech New Delhi 110016 India;

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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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