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Computational Study of Shock-Associated Noise Characteristics Using LES

机译:基于LES的冲击噪声特性的计算研究。

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Shock-associated noise generation has been investigated by using large-eddy simulations to compute jet flows at an underexpanded jet condition with three jet temperatures. To better understand shock-associated noise generation, shock-free jets with the same fully expanded jet conditions have also been simulated. The predictions agree well with the available experimental data in both the near and far field. It is found that shock cells at this underexpanded jet condition have little impact on the jet core length and the turbulence kinetic energy distribution, whereas the heating effect has a much larger impact by increasing the initial shear-layer spreading and shortening the jet core length. Shock-associated noise dominates in the upstream direction, and the broadband peak frequencies move to higher values in downstream direction. This frequency increase is initially small in the upstream direction, but becomes much larger in the downstream direction. In addition, it is found that the heating effect increases the broadband peak frequency. Overall the heating effect increases the mixing noise and slightly reduces the shock-associated noise. This reduces the difference between the shock-containing jets and the shock-free jets as the temperature increases.
机译:通过使用大涡流模拟来计算在三个喷射温度下的膨胀不足的喷射条件下的射流,已经研究了与冲击有关的噪声的产生。为了更好地了解与冲击相关的噪声的产生,还模拟了具有相同完全扩展的射流条件的无冲击射流。这些预测与近场和远场中的可用实验数据非常吻合。发现在这种未充分膨胀的射流条件下的冲击单元对射流芯长度和湍流动能分布几乎没有影响,而加热效果则通过增加初始剪切层扩展和缩短射流芯长度而具有更大的影响。与冲击相关的噪声在上游方向上占主导地位,而宽带峰值频率在下游方向上移至更高的值。该频率增加最初在上游方向上很小,但是在下游方向上变得更大。另外,发现加热效果增加了宽带峰值频率。总的来说,加热效果增加了混合噪音,并略微降低了与震动相关的噪音。随着温度升高,这减小了包含冲击的射流与没有冲击的射流之间的差异。

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