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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Influence of grid resolution on the spectral characteristics of noise radiated from turbulent jets: Sound pressure fields and their decomposition
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Influence of grid resolution on the spectral characteristics of noise radiated from turbulent jets: Sound pressure fields and their decomposition

机译:网格分辨率对湍流喷射辐射辐射噪声光谱特性的影响:声压场及其分解

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jet noise remains a key target for aircraft noise reduction in the foreseeable future. While being extremely challenging, the requirement of predicting both low and high frequency noise spectra is increasingly important for design purposes. Novel approaches are needed to overcome the current numerical limitations in capturing the required broad noise spectra. Once sufficiently resolved, the energy contents of the numerically simulated near- and far-field sound pressure have intrinsic correlations among different levels of grid resolution. The present work explores the novel potential of such correlations to broaden the spectral prediction. The noise radiated from high subsonic turbulent jets is investigated using large-eddy simulation. The 3-D filtered compressible Navier-Stokes solutions are obtained for an axisymmetric and a serrated nozzle on successively refined multi-resolution grids, ranging from 5 to 80 million grid points. The radiated far-field sound is computed using the Ffowcs Williams - Hawkings (FW-H) surface integral method. Fourier decomposition for pressure near-field is applied to help identify the location of the sound source regions and the dominant directions of propagation, which provides a more thorough understanding of the effect of the grid resolution on the numerical cut-off frequencies of the far-field spectra. Further analysis of the far-field spectra and of their azimuthal modes confirms that a novel strategy to obtain a broadened overall sound spectrum is possible, at reduced computational cost, from a combination of multiple spectra from successively refined grids. (C) 2019 Elsevier Ltd. All rights reserved.
机译:喷射噪声仍然是可预见的未来飞机降噪的关键目标。虽然非常具有挑战性,但是预测低频噪声谱的要求对于设计目的而言越来越重要。需要新的方法来克服当前在捕获所需的广谱谱方面的数值限制。一旦充分解决,数值模拟的近端和远场声压的能量内容具有不同水平的网格分辨率之间的相关相关性。目前的工作探讨了这种相关性的新电位,以扩大光谱预测。使用大涡模拟研究了从高亚源湍流喷射射流辐射的噪声。 3-D滤波的可压缩Navier-Stokes解决方案是在连续的多分辨率网格上的轴对称和锯齿状喷嘴获得的,从5到8000万个网格点。使用FFOWCS Williams - Hawkings(FW-H)表面积分法计算辐射的远场声音。对压力近场的傅里叶分解应用于帮助识别声源区域的位置和传播的主导方向,这提供了更彻底的了解电网分辨率对远处的数值截止频率的影响场光谱。进一步分析远场谱和其方位角模式的进一步分析证实,从连续改进网格的多个光谱的组合,可以以降低的计算成本获得更广泛的整体声光谱的新策略。 (c)2019年elestvier有限公司保留所有权利。

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