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首页> 外文期刊>Journal of Fluid Mechanics >Cross-wavelet analysis of wall pressure fluctuations beneath incompressible turbulent boundary layers
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Cross-wavelet analysis of wall pressure fluctuations beneath incompressible turbulent boundary layers

机译:不可压缩湍流边界层下壁压力波动的交叉小波分析

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Pressure fluctuations measured at the wall of a turbulent boundary layer are analysed using a bi-variate continuous wavelet transform. Cross-wavelet analyses of pressure signals obtained from microphone pairs are performed and a novel post-processing technique aimed at selecting events with strong local-in-time coherence is applied. Probability density functions and conditionally averaged equivalents of Fourier spectral quantities, usually introduced for modelling purposes, are computed. The analysis is conducted for signals obtained at low Mach numbers from two different non-equilibrium turbulent boundary layer experiments. It is found that that the selected events, though statistically independent, exhibit bi-modal statistics while the conditional coherence function coincides with its non-conditional Fourier equivalent. The physical nature of the selected events has been further explored by the computation of ensemble-averaged pressure time signatures and the results have been physically interpreted with the aid of numerical and experimental results from the literature. In both experiments, it has been found that the major physical mechanisms responsible for the observed conditional statistics are represented by sweep-type events which can be ascribed to the effect of streamwise vortices in the near-wall region. More precisely, the wavelet analysis highlights the convection of the selected structures in both cases. Conversely, compressibilty effects could be related to these events only in one case.
机译:使用双变量连续小波变换分析在湍流边界层壁处测得的压力波动。从麦克风对获得的压力信号进行了交叉小波分析,并应用了一种新颖的后处理技术,旨在选择具有强大的本地时间相干性的事件。计算通常出于建模目的而引入的概率密度函数和傅立叶频谱量的条件平均等价物。分析是从两个不同的非平衡湍流边界层实验中以低马赫数获得的信号。发现所选择的事件尽管在统计上是独立的,但表现出双峰统计,而条件相干函数与其非条件傅立叶等价函数一致。所选事件的物理性质已通过集合平均压力时间特征的计算得到了进一步探索,并且已借助文献中的数值和实验结果对结果进行了物理解释。在这两个实验中,已经发现负责观察到的条件统计的主要物理机制是由扫掠型事件代表的,该事件可以归因于近壁区域中流向旋涡的影响。更准确地说,小波分析强调了两种情况下所选结构的对流。相反,可压缩性效应仅在一种情况下与这些事件有关。

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