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Using Large Eddy Simulations to Predict Fluctuating Wall Pressure Caused by Turbulent Flow over Rough Surfaces

机译:使用大涡模拟来预测湍流在粗糙表面上引起的壁面波动

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The large eddy simulation (LES) framework in the AcousticFOAM suite of flow simulation software has been traditionally used to predict fluctuating wall pressures caused by turbulent flow over smooth, rigid surfaces. The fluctuating wall pressure is then used to characterize the acoustic source field. In reality, of course, surfaces are rarely hydrodynamically smooth, and can be quite rough as when, for example, flow occurs over surfaces roughened by irregular roughness. The spectrum of fluctuating wall pressure associated with turbulent flow over surface roughness can be significantly different from that associated with turbulent flow over a smooth surface. Accordingly, the LES formulation in AcousticFOAM has been modified to account for the effects of surface roughness. This modification is in the form of the dynamic sub-grid-scale surface roughness model developed by Anderson and Meneveau (2011). To account for the dipole nature of sound radiated from surface roughness, the spectral formulation of Glegg and Devenport (2009) for sound radiated from rough surfaces has also been used to calculate far-field sound spectrum.
机译:传统上,AcousticFOAM流量模拟软件套件中的大型涡流模拟(LES)框架用于预测由光滑,刚性表面上的湍流引起的壁面压力波动。然后使用波动的壁压来表征声源场。当然,实际上,表面很少具有流体动力学上的光滑度,并且可能非常粗糙,例如当在因不规则粗糙度而粗糙化的表面上发生流动时。与在表面粗糙度上的湍流有关的脉动壁压的频谱可以与在光滑表面上的湍流有关的脉动壁压的谱显着不同。因此,已经修改了AcousticFOAM中的LES配方,以解决表面粗糙度的影响。这种修改采用了由Anderson和Meneveau(2011)开发的动态亚网格规模的表面粗糙度模型的形式。为了说明从表面粗糙度辐射出的声音的偶极性质,Glegg和Devenport(2009)对从粗糙表面辐射出的声音的频谱公式也已用于计算远场声谱。

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