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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - On the persistence of large-scale turbulent structures in turbulent Couette flow with wall-transpiration
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - On the persistence of large-scale turbulent structures in turbulent Couette flow with wall-transpiration

机译:APS-APS流体动力学分部第70届年会-活动-关于大规模湍流结构在带有壁蒸腾的湍动库埃特流中的持久性

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It has long been known that turbulent Couette flows (TCF) are dominated by large-scale turbulent structures of vortex-type in stream-wise direction (for an early experimental and numerical validation see e.g. Tillmark et al. 1995 and Bech et al. 1995), and a recent DNS study supports the persistence up to $Re_{au}=550$ (Avsarkisov et al. 2014).In an ongoing DNS study the TCF is extended towards wall transpiration, i.e. blowing from below and suction at the top at constant velocity $v_0$. Even at small transpiration rates, i.e. $v_o/u_wll 1$, where $u_w$ is the moving wall velocity, strong changes in the overall flow behavior is visible. E.g. a strong reduction of the mass-flux is observed.Beside interesting and new scaling issues, one of the most remarkable feature of this largely unexplored flow is, that even at the highest transpiration rates investigated so far, the footprints of the large turbulent rolls of the TCF are still visible at the highest Reynolds and transpiration number.Other quantities such as two-point auto-correlations, two-dimensional spectral energy densities and pre-multiplied spectra give a more detailed picture of the turbulent structure and support the finding of highly persisting large-scale turbulent structures in TCF with wall-transpiration.
机译:长期以来,众所周知,湍流库埃特流(TCF)以大涡流方向的湍流结构为主导(有关早期实验和数值验证,请参见Tillmark等1995和Bech等1995)。 ),而最近的DNS研究则支持高达$ Re_ {au} = 550 $的持久性(Avsarkisov等人,2014)。在正在进行的DNS研究中,TCF扩展到了壁蒸腾作用,即从下方吹出并在顶部吸出以恒定速度$ v_0 $。即使在较小的蒸腾速率下,即$ v_o / u_wll 1 $,其中$ u_w $是移动壁的速度,整体流动特性的强烈变化也是可见的。例如。除了有趣的和新的结垢问题外,这种未经大量研究的流动的最显着特征之一是,即使以目前为止研究的最高蒸腾速率,其大湍流的足迹也是如此。在最高雷诺数和蒸腾数下仍能看到TCF。其他数量,例如两点自相关,二维光谱能量密度和预乘光谱,给出了更详细的湍流结构图,并支持发现在具有壁蒸腾作用的TCF中保持大型湍流结构。

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