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Noise radiated by flow impingement on a flat plate using DNS with a virtual boundary method

机译:使用虚拟边界方法使用DNS使用平板电脑上的流撞击在平板上辐射的噪声

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Uniform flow impinging on the rectangular leading edge of a flat plate is simulated using an incompressible, two-dimensional direct numerical simulation with uniform grid, the solid surface being modelled by the virtual boundary method previously developed by Goldstein et al. Access is given to the hydrodynamic field at a Reynolds number of 500, which shows the separation at the edge, the development of a double recirculating bubble, a periodic vortex-shedding, and the generation of a boundary layer profile after the re-attachment point. Curie's analogy is then applied to evaluate the sound emission in the far field. Results are given in terms of far field pressure levels directivity and pressure spectra associated with surfacic or volumic sources. The emission from the surfacic sources reaches its maximum value in the direction perpendicular to the plate and acoustic frequencies tend to follow the main wall pressure frequencies of the flow, while the emission from the volumic sources exhibits a shear noise behaviour and acoustic frequencies seem to be the double of the main velocity frequencies.
机译:使用具有均匀网格的不可压缩的二维直接数值模拟来模拟撞击在平板矩形前缘上的均匀流动,其中固体表面是由Goldstein等人先前开发的虚拟边界方法建模的。雷诺数为500时可以进入流体动力学场,该场显示了边缘处的分离,二次循环气泡的产生,周期性涡流脱落以及在重新附着点之后边界层轮廓的生成。然后将居里的类比应用于评估远场中的声音发射。根据远场压力水平的方向性和与表面或体积源有关的压力谱给出了结果。来自表面声源的发射在垂直于板的方向上达到最大值,并且声频趋向于跟随流动的主壁压力频率,而来自体源的发射表现出剪切噪声行为,并且声频似乎是主速度频率的两倍。

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