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Inner-layer intensities for the flat-plate turbulent boundary layer combining a predictive wall-model with large-eddy simulations

机译:平板湍流边界层的内层强度结合了预测性壁模型和大涡模拟

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Time series velocity signals obtained from large-eddy simulations (LES) within the logarithmic region of the zero-pressure gradient turbulent boundary layer over a smooth wall are used in combination with an empirical, predictive inner-outer wall model [I. Marusic, R. Mathis, and N. Hutchins, "Predictive model for wall-bounded turbulent flow," Science329, 193 (2010)10.1126/science.1188765] to calculate the statistics of the fluctuating streamwise velocity in the inner region. Results, including spectra and moments up to fourth order, are compared with equivalent predictions using experimental time series, as well as with direct experimental measurements at Reynolds numbers Re _τ = 7300, 13 600, and 19 000. The LES combined with the wall model are then used to extend the inner-layer predictions to Reynolds numbers Reτ = 62 000, 100 000, and 200 000 that lie within a gap in log (Re _τ) space between laboratory measurements and surface-layer, atmospheric experiments. The present results support a loglike increase in the near-wall peak of the streamwise turbulence intensities with Reτ and also provide a means of extending LES results at large Reynolds numbers to the near-wall region of wall-bounded turbulent flows.
机译:从经验值预测的内外墙模型结合使用从平滑壁上零压力梯度湍流边界层对数区域内的大涡模拟(LES)获得的时间序列速度信号。 Marusic,R。Mathis和N. Hutchins,“壁面湍流的预测模型”,Science329,193(2010)10.1126 / science.11​​88765]计算内部区域脉动速度波动的统计数据。将结果(包括频谱和直至四阶的矩)与使用实验时间序列的等效预测以及雷诺数Re_τ= 7300、13 600和19 000的直接实验测量结果进行比较。LES与墙模型结合然后将其用于将内层预测扩展到雷诺数Reτ= 62 000、100 000和200000,这些雷诺数位于实验室测量值与表层大气实验之间的对数(Re_τ)空间中。目前的结果支持了Reτ沿流湍流强度的近壁峰的对数增加,并且提供了以大雷诺数将LES结果扩展到有壁湍流的近壁区域的一种手段。

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