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On the use of the Ffowcs Williams- Hawkings equation to predict far-Held jet noise from large-eddy simulations

机译:关于使用Ffowcs Williams-Hawkings方程从大涡模拟中预测远距喷射噪声的方法

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摘要

This study presents best practices for the use of the permeable-surface Ffowcs Williams-Hawkings equations to calculate far-field sound from large-eddy simulations of high-speed turbulent jets. A parametric study of the Ffowcs Williams-Hawkings equations is performed by post-processing existing large-eddy simulations at different operating conditions gathering subsonic, supersonic, cold, isothermal, and heated jets. It is concluded that using the pressure formulations of the Ffowcs Williams-Hawkings equations yields better results than the density formulation, especially for the heated jet. In terms of surface closure, best results are obtained with closed surfaces, in conjunction with outflow disk averaging, which confirms the results obtained by Spalart and Shur in 2009. This is different from most previous studies, which recommend using open surfaces. In addition, detailed implementation information and quantified technical recommendations are presented as a guideline for post-processing large-eddy simulations for jet noise.
机译:这项研究提出了使用可渗透表面Ffowcs Williams-Hawkings方程从高速湍流射流的大涡模拟计算远场声的最佳实践。 Ffowcs Williams-Hawkings方程的参数研究是通过在不同工作条件下收集亚音速,超音速,冷,等温和热射流对现有的大涡流模拟进行后处理来进行的。结论是,使用Ffowcs Williams-Hawkings方程的压力公式比密度公式产生更好的结果,尤其是对于加热的射流。在表面封闭方面,封闭表面与流盘平均相结合可获得最佳结果,这证实了Spalart和Shur在2009年获得的结果。这与以前的大多数研究(建议使用开放表面)不同。此外,还提供了详细的实施信息和量化的技术建议,作为对喷气噪声进行大涡流模拟后处理的指南。

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