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Investigation of downstream and sideline subsonic jet noise using Large Eddy Simulation

机译:利用大涡模拟研究下游和副线亚音速喷射噪声

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摘要

The sound fields radiated by Mach number 0.6 and 0.9, circular jets with Reynolds numbers varying from 1.7 x 10(3) to 4 x 10(5) are investigated using Large Eddy Simulations. As the Reynolds number decreases, the properties of the sound radiation do not change significantly in the downstream direction, whereas they are modified in the sideline direction. At low Reynolds numbers, for large angles downstream from the jet axis, the acoustic levels are indeed remarkably lower and a large high-frequency part of the sound spectra vanishes. For all Reynolds numbers, the downstream and the sideline sound spectra both appear to scale in frequency with the Strouhal number. However their peak amplitudes vary following two different velocity exponents according to the radiation direction. The present observations suggest the presence of two sound sources: a Reynolds number-dependent source, predominant for large radiation angles, connected to the randomly-developing turbulence, and a deterministic source, radiating downstream, related to a mechanism intrinsic to the jet geometry, which is still to be comprehensively described. This view agrees well with the experimental results displaying two distinguishable components in turbulent mixing noise [1, 2].
机译:使用大型涡流模拟研究了马赫数为0.6和0.9的雷诺数为1.7 x 10(3)到4 x 10(5)的圆形射流辐射出的声场。随着雷诺数减小,声音辐射的特性在下游方向上没有明显变化,而在边线方向上发生了变化。在低雷诺数下,对于射流轴下游的大角度,声级确实确实较低,并且很大一部分声谱高频部分消失了。对于所有雷诺数,下游声谱和边线声谱都似乎在频率上与斯特劳哈尔数成比例。然而,它们的峰值幅度根据辐射方向跟随两个不同的速度指数而变化。目前的观察结果表明存在两种声源:雷诺数相关声源,主要用于大的辐射角,与随机发展的湍流有关;确定性声源,向下游辐射,与射流几何学的内在机理有关,仍有待全面描述。这种观点与显示湍流混合噪声中两个不同成分的实验结果非常吻合[1、2]。

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