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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Effect of Unsteady Wake Passing Frequency on Boundary Layer Transition, Experimental Investigation, and Wavelet Analysis
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Effect of Unsteady Wake Passing Frequency on Boundary Layer Transition, Experimental Investigation, and Wavelet Analysis

机译:非恒定唤醒频率对边界层过渡,实验研究和小波分析的影响

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Detailed experimental and theoretical investigations were carried out to study the effect of unsteady wake passing frequency on the boundary layer transition along the concave surface of a curved plate under a zero longitudinal pressure gradient. Periodic unsteady flow with different passing frequencies is generated utilizing an unsteady flow research facility with a rotating cascade of rods positioned upstream of the curved plate. Extensive unsteady boundary layer measurements are carried out. The data are analyzed using conventional and wavelet-based methods. Local time scales are defined as those of the most energetic fluctuations, and are calculated from wavelet transforms of the velocity signals. The dominant time scales are mapped as functions of the distance to the plate, the downstream location, and the phase relative to the wake-passing. Furthermore, conditional sampling is applied, laminar and turbulent time scales are calculated and the effects of wake passing frequency on these scales are shown.
机译:进行了详细的实验和理论研究,以研究非恒定尾流通过频率对在零纵向压力梯度下沿弯曲板凹面的边界层过渡的影响。利用非定常流动研究设施,可产生周期性的非定常流动,该非定常流动具有位于弧形板上游的旋转旋转级联杆。进行了广泛的非稳态边界层测量。使用常规的和基于小波的方法分析数据。本地时间标度被定义为最剧烈的波动,并根据速度信号的小波变换计算得出。占主导地位的时标被映射为到板块的距离,下游位置以及相对于尾波通过的相位的函数。此外,应用条件采样,计算层流和湍流时间尺度,并显示尾流通过频率对这些尺度的影响。

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