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Noise prediction of a subsonic turbulent round jet using the lattice-Boltzmann method

机译:基于格-玻尔兹曼方法的亚音速湍流圆形射流噪声预测

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摘要

The lattice-Boltzmann method (LBM) was used to study the far-field noise generated from a Mach, Mj=0.4, unheated turbulent axisymmetric jet. A commercial code based on the LBM kernel was used to simulate the turbulent flow exhausting from a pipe which is 10 jet radii in length. Near-field flow results such as jet centerline velocity decay rates and turbulence intensities were in agreement with experimental results and results from comparable LES studies. The predicted far field sound pressure levels were within 2 dB from published experimental results. Weak unphysical tones were present at high frequency in the computed radiated sound pressure spectra. These tones are believed to be due to spurious sound wave reflections at boundaries between regions of varying voxel resolution. These “VR tones” did not appear to bias the underlying broadband noise spectrum, and they did not affect the overall levels significantly. The LBM appears to be a viable approach, comparable in accuracy to large eddy simulations, for the problem considered. The main advantages of this approach over Navier–Stokes based finite difference schemes may be a reduced computational cost, ease of including the nozzle in the computational domain, and ease of investigating nozzles with complex shapes.
机译:格-玻尔兹曼方法(LBM)用于研究由马赫数Mj = 0.4的未加热湍流轴对称射流产生的远场噪声。使用基于LBM内核的商业代码来模拟从长度为10射流半径的管道中排出的湍流。近场流动结果,例如射流中心线速度衰减率和湍流强度,与实验结果和可比的LES研究的结果一致。预测的远场声压级与已发布的实验结果相差2 dB以内。在计算的辐射声压谱中,高频出现弱的非物理音调。据信这些音调是由于体素分辨率变化的区域之间的边界处的虚假声波反射所致。这些“ VR音调”似乎并未对潜在的宽带噪声频谱造成偏见,也未对总体水平产生重大影响。对于所考虑的问题,LBM似乎是一种可行的方法,其精确度可与大型涡流模拟相比。与基于Navier-Stokes的有限差分方案相比,此方法的主要优点可能是降低了计算成本,易于将喷嘴包括在计算域中以及易于研究形状复杂的喷嘴。

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