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首页> 外文期刊>Journal of Fluid Mechanics >Wall pressure fluctuations and flow-induced noise in a turbulent boundary layer over a bump
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Wall pressure fluctuations and flow-induced noise in a turbulent boundary layer over a bump

机译:凸块上方湍流边界层中的壁压波动和流动引起的噪声

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摘要

Direct numerical simulations of a turbulent boundary layer over a bump were performed to examine the effects of surface longitudinal curvature on wall pressure fluctuations (p(w)) and flow-induced noise. Turbulence statistics and frequency spectra were obtained to elucidate the response of wall pressure fluctuations to the longitudinal curvature and to the corresponding pressure gradient. Wall pressure fluctuations were significantly enhanced near the trailing edge of the bump, where the boundary layer was subjected to a strong adverse pressure gradient. Large-scale structures in the distribution of wall pressure fluctuations were observed to grow rapidly near the trailing edge of the bump and convect downstream. Acoustic sources of the Lighthill equations were investigated in detail at various longitudinal surface curvatures. The acoustic sources (S) were highest near the trailing edge of the bump, where the root mean square wall pressure fluctuations were greatest. The maximum correlation coefficient between p(w) and S was located just above the location of maximum wall pressure fluctuations. Far-field acoustic density fluctuations were computed using the Lighthill acoustic analogy. We found that the surface dipole is dominant in the total acoustic field. The contribution of the volume quadrupoles to the total acoustic field gradually increases with increasing radius of the surface curvature (delta/R).
机译:对凸块上的湍流边界层进行了直接数值模拟,以检查表面纵向曲率对壁压力波动(p(w))和流动引起的噪声的影响。获得了湍流统计数据和频谱,以阐明壁面压力波动对纵向曲率和相应压力梯度的响应。壁的压力波动在凸块的后缘附近显着增强,边界层受到强烈的不利压力梯度的作用。观察到壁面压力波动分布中的大型结构在凸起的后缘附近迅速生长并向下游对流。在各种纵向表面曲率下,对Lighthill方程的声源进行了详细研究。声源(S)在凸点的后缘附近最高,其中均方根壁压力波动最大。 p(w)和S之间的最大相关系数位于最大壁压波动位置的正上方。远场声密度起伏是使用Lighthill声比拟来计算的。我们发现表面偶极子在整个声场中占主导地位。体积四极对总声场的贡献随着表面曲率半径(delta / R)的增加而逐渐增加。

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