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首页> 外文期刊>Flow, turbulence and combustion >The Impact of Footprints of Large-Scale Outer Structures on the Near-Wall Layer in the Presence of Drag-Reducing Spanwise Wall Motion
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The Impact of Footprints of Large-Scale Outer Structures on the Near-Wall Layer in the Presence of Drag-Reducing Spanwise Wall Motion

机译:大规模外部结构的占地面积在近壁层的存在下在近壁层存在下的阻力下墙壁运动

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This study is motivated by the observation that the drag-reduction effectiveness achieved by the imposition of oscillatory spanwise wall motion declines with Reynolds number. The question thus posed is whether the decline is linked to the increasingly strong influence of large-scale outer structures in the log layer on the near-wall turbulence, in general, and the streak strength in the viscosity-affected layer, in particular - a process referred to as modulation. This question is addressed via an extensive statistical analysis of DNS data for a channel flow at a friction Reynolds number 1020, subjected to oscillatory spanwise wall motion at a nominal wall-scaled period of 100. The analysis rests on a separation of turbulent scales by means of the Empirical Mode Decomposition. This method is used to derive conditional statistics of small-scale motions and skin friction subject to prescribed intensity of large-scale motions - referred to as footprinting. It is shown that the large-scale fluctuations are responsible, directly on their own, for roughly 30% to the skin friction. Positive large-scale fluctuations are also shown to be the cause of a major amplification of small-scale streaks, relative to weak attenuation by negative fluctuations. This highly asymmetric process is likely to be indirectly influential on the drag-reduction process, although it is not possible to identify this indirect effect in quantitative terms as part of the present analysis.
机译:该研究通过观察到通过施加振荡跨度壁运动而实现的阻抗效果与雷诺数下降。因此,所提出的问题是,下降与近壁湍流上的日志层中的大型外部结构的越来越强烈的影响有关。尤其是粘度影响层中的条纹强度 - a进程称为调制。通过对摩擦雷诺数1020的沟道流的广泛统计分析来解决该问题,该摩擦雷诺数1020处于标称壁缩放时间为100的振荡血管壁运动。分析借助于湍流尺度的分离在经验模式分解中。该方法用于导出小规模动作和皮肤摩擦的条件统计,其进行规定的大规模运动强度 - 称为足迹。结果表明,大规模的波动是直接造成的,直接依照皮肤摩擦为大约30%。积极的大规模波动也被证明是小规模条纹的主要放大的原因,相对于负波动的弱衰减。该高度不对称的过程可能间接地影响减少减压过程,尽管无法以定量术语确定这种间接效应作为本分析的一部分。

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