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A model supersonic buried-nozzle jet: instability and acoustic wave scattering and the far-field sound

机译:超声波掩埋喷嘴模型:不稳定性和声波散射以及远场声

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摘要

We consider sound source mechanisms involving the acoustic and instability modes of dual-stream isothermal supersonic jets with the inner nozzle buried within an outer shroud-like nozzle. A particular focus is scattering into radiating sound waves at the shroud lip. For such jets, several families of acoustically coupled instability waves exist, beyond the regular vortical Kelvin-Helmholtz mode, with different shapes and propagation characteristics, which can therefore affect the character of the radiated sound. In our model, the coaxial shear layers are vortex sheets while the incident acoustic disturbances are the propagating shroud modes. The Wiener-Hopf method is used to compute their scattering at the sharp shroud edge to obtain the far-field radiation. The resulting far-field directivity quantifies the acoustic efficiency of different mechanisms, which is particularly important in the upstream direction, where the results show that the scattered sound is more intense than that radiated directly by the shear-layer modes.
机译:我们考虑的声源机制涉及双流等温超音速射流的声学和不稳定性模式,内部喷嘴埋在外部罩状喷嘴内。一个特别的焦点是散射到在罩唇处辐射出声波。对于此类射流,除了常规的涡旋开尔文-亥姆霍兹模式以外,还存在数种声学耦合的不稳定性波,它们具有不同的形状和传播特性,因此会影响辐射声的特性。在我们的模型中,同轴剪切层是涡流片,而入射声干扰是传播的覆盖模式。 Wiener-Hopf方法用于计算它们在围带边缘的散射,以获得远场辐射。产生的远场方向性量化了不同机构的声学效率,这在上游方向上尤为重要,结果表明,散射声比剪切层模式直接辐射的声更强烈。

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