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Numerical investigation of high speed free shear flow instability and Mach wave radiation

机译:高速自由剪切流不稳定性和马赫波辐射的数值研究

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The linear stability theory is used to investigate the emergence, in supersonic free shear flows such as mixing layers and fully expanded plane jets, of supersonically travelling instability waves, which do not vanish in the ambient space. It is shown that, at supersonic convective Mach numbers, the slow and fast supersonic modes in the mixing layer as well as the sinuous supersonic mode in the plane jet should lead to Mach wave radiation. Direct numerical simulations are further used to study nonlinear stages of instability development in high-speed mixing layers and jets. They have shown that the formation of oblique shock waves attached to large-scale structures is observed in free shear flows forced by modes with supersonic phase speeds. The relevance of this phenomenon to the noise generation by high-speed jets is discussed.
机译:线性稳定性理论用于研究在超声速自由剪切流(例如混合层和完全膨胀的平面射流)中超声传播的不稳定波的出现,这些不稳定波在环境空间中不会消失。结果表明,在超音速对流马赫数下,混合层中的慢速和快速超音速模式以及平面射流中的正弦超音速模式均会导致马赫波辐射。直接数值模拟还被用于研究高速混合层和射流中不稳定发展的非线性阶段。他们已经表明,在超音速相速度模式所强迫的自由剪切流中,观察到了附着在大型结构上的倾斜冲击波的形成。讨论了这种现象与高速喷气机产生的噪声的相关性。

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