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Reprint of: Parabolized stability equation models of large-scale jet mixing noise

机译:转载:大规模射流混合噪声的抛物线稳定性方程模型

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We report on the development of parabolized stability equation models to predict the evolution of low frequencies, large-scale wavepacket structures in turbulent jets and their radiated sound. We consider computations and data corresponding to high subsonic and supersonic jets from circular nozzles. Previous methods are extended to consider nonlinear interactions amongst the waves and use a Kirchhoff-surface type approach to project the near-field wavepacket amplitudes to the far-field. Linear PSE, whose initial conditions are chosen to provide an overall amplitude reference, show excellent agreement for the wavepacket amplitudes and phases with microphone array data just outside the jet shear layers, especially when the microphone data are processed to filter out contributions from uncorrelated fluctuations. Far-field sound predictions based on the linear PSE are also in reasonable agreement with far-field data. In order to investigate nonlinearity, we use an LES database to evaluate initial conditions for the PSE modes, and then compare their later evolution along the jet. Preliminary cases show some sensitivity to the initial amplitudes and their phases, and that nonlinear effects may be important in predicting the far-field sound based on the initial (near-nozzle) spectrum of disturbances.
机译:我们报告了抛物稳定方程模型的发展,以预测湍流喷射中低频,大规模波包结构及其辐射声的演变。我们考虑与圆形喷嘴的高亚音速和超音速射流相对应的计算和数据。先前的方法已扩展为考虑波之间的非线性相互作用,并使用基尔霍夫表面型方法将近场波包振幅投影到远场。选择初始条件以提供整体幅度参考的线性PSE,对于波包幅度和相位与射流剪切层外的麦克风阵列数据显示出极好的一致性,尤其是在处理麦克风数据以滤除不相关波动的影响时。基于线性PSE的远场声音预测也与远场数据合理地吻合。为了研究非线性,我们使用LES数据库评估PSE模式的初始条件,然后比较它们沿射流的后期演变。初步情况显示出对初始振幅及其相位有一定的敏感性,并且非线性效应对于基于干扰的初始(近喷嘴)谱预测远场声音可能很重要。

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