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首页> 外文期刊>The Open Acoustics Journal >Computations of Nonlinear Propagation of Sound Emitted from High Speed Mixing Layers
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Computations of Nonlinear Propagation of Sound Emitted from High Speed Mixing Layers

机译:高速混合层发出的声音的非线性传播计算

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摘要

Non-linear sound propagation is investigated computationally by simulating compressible time-developing mixing layers using the Large Eddy Simulation (LES) approach and solving the viscous Burgers Equation. The mixing layers are of convective Mach numbers of 0.4, 0.8 and 1.2. The LES results agree qualitatively with known flow behavior. Mach waves are observed in the near sound field of the supersonic mixing layer computed by the LES. These waves show steepening typical to non-linear propagation. Further calculations using the Burgers equation support this finding, where the initial wave slope has a role in kicking them. No visible non-linear propagation effects were found for the subsonic mixing layers. The effects of geometrical spreading and viscosity are also considered.
机译:通过使用大涡模拟(LES)方法模拟可压缩的时间发展混合层并求解粘性Burgers方程,可以对非线性声音传播进行计算研究。混合层的对流马赫数分别为0.4、0.8和1.2。 LES结果在质量上与已知的流动行为吻合。在LES计算的超音速混合层的近声场中观察到马赫波。这些波显示出典型的非线性传播陡峭。使用Burgers方程进行的进一步计算支持了这一发现,其中初始波浪斜率会对其起踢作用。对于亚音速混合层,没有发现可见的非线性传播效应。还考虑了几何扩展和粘度的影响。

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