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Wall shear stress fluctuations: mixed scaling and their effects on velocity fluctuations in a turbulent boundary layer

机译:壁面剪切应力波动:混合尺度及其对湍流边界层速度波动的影响

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摘要

The present work investigates numerically the statistics of the wall shear stress fluctuations in a turbulent boundary layer (TBL) and their relation to the velocity fluctuations outside of the near-wall region. The flow data are obtained from a Direct Numerical Simulation (DNS) of a zero pressure-gradient TBL using the high-order flow solver Incompact3D [S. Laizet and E. Lamballais, “High-order compact schemes for incompressible flows: A simple and efficient method with quasi-spectral accuracy,” J. Comput. Phys. 228(16), 5989 (2009)]. The maximum Reynolds number of the simulation is Re ≈2000, based on the free-stream velocity and the momentum thickness of the boundary layer. The simulation data suggest that the root-mean-squared fluctuations of the streamwise and spanwise wall shear-stress components τx and τz follow a logarithmic dependence on the Reynolds number, consistent with the empirical correlation of Örlü and Schlatter [R. Örlü and P. Schlatter, “On the fluctuating wall-shear stress in zero pressure-gradient turbulent boundary layer flows,” Phys. Fluids 23, 021704 (2011)]. These functional dependencies can be used to estimate the Reynolds number dependence of the wall turbulence dissipation rate in good agreement with reference DNS data. Our results suggest that the rare negative events of τx can be associated with the extreme values of τz and are related to the presence of coherent structures in the buffer layer, mainly quasi-streamwise vortices. We also develop a theoretical model, based on a generalisation of the Townsend-Perry hypothesis of wall-attached eddies, to link the statistical moments of the filtered wall shear stress fluctuations and the second order structure function of fluctuating velocities at a distance y from the wall. This model suggests that the wall shear stress fluctuations may induce a higher slope in the turbulence energy spectra of streamwise velocities than the one predicted by the Townsend-Perry attached-eddy model.
机译:本工作从数值上研究了湍流边界层(TBL)中壁面剪应力波动的统计及其与近壁区域外部速度波动的关系。流量数据是使用高阶流量求解器Incompact3D从零压力梯度TBL的直接数值模拟(DNS)获得的。 Laizet和E. Lamballais,“不可压缩流的高阶紧密方案:一种具有准光谱精度的简单有效的方法,” J。Comput。物理228(16),5989(2009)]。基于自由流速度和边界层的动量厚度,模拟的最大雷诺数为Re≈2000。模拟数据表明,沿流向和沿跨壁的剪应力分量τx和τz的均方根波动遵循雷诺数的对数依赖关系,与Örlü和Schlatter的经验相关性一致。 Örlü和P. Schlatter,“在零压力梯度湍流边界层流中波动的壁剪应力上”,物理。流体23,021704(2011)]。这些功能依赖性可以用来估计壁湍流耗散率的雷诺数依赖性,与参考DNS数据非常吻合。我们的结果表明,τx的罕见负事件可能与τz的极值相关,并且与缓冲层中主要是准流涡旋的相干结构有关。我们还基于附壁涡流的Townsend-Perry假设的泛化,开发了一个理论模型,以将过滤后的壁面剪应力波动的统计矩与距离y的波动速度的二阶结构函数联系起来。壁。该模型表明,壁面剪应力的波动可能会在流向速度的湍流能谱中引起比Townsend-Perry附着涡模型所预测的更高的斜率。

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