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Impact of Wall Permeability on Trailing-Edge Noise at High Reynolds Number

机译:高雷诺数下壁磁导率对后缘噪声的影响

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Acoustic absorption by permeable surfaces is numerically investigated for the flow over a trailing edge of a flat plate with a finite thickness. The trailing edge is defined by the homogeneous distribution of pores and the numerical approaches based on a dispersed flow assumption. The Reynolds number based on the chord length varies from 1.35 · 10~5 to 1.35 · 10~6. The numerical findings focus on the noise reduction that is attributed to the coherent flow structures of the wall-bounded turbulence interacting with the trailing edge. The anisotropy-invariant map shows that the two-component axisymmetric turbulence dominates the major part of the porous surface due to the strong generation of vortical structures. The porous surface reduced the overall sound pressure level 3dB to 8dB independent from the direction of the wave propagation.
机译:对于具有一定厚度的平板的后缘上的流动,对渗透性表面的声吸收进行了数值研究。后缘由孔隙的均匀分布和基于分散流动假设的数值方法定义。基于和弦长度的雷诺数从1.35·10〜5到1.35·10〜6不等。数值结果集中在降噪上,降噪归因于与后缘相互作用的边界壁湍流的相干流动结构。各向异性不变图表明,由于强烈生成涡旋结构,两组分轴对称湍流主导了多孔表面的主要部分。多孔表面将整体声压级降低了3dB至8dB,与波的传播方向无关。

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