Dynamics Study of Shock Wave Intersection under High-Frequency Sine Oscillation Incoming Flow

Physics of Fluids(2022)

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摘要
This paper numerically studies the dynamics of Symmetrical-wedge shock intersection under sinusoidal supersonic oscillation conditions. The 15◦ symmetrical wedges are used as the shock generator, the sinusoidal oscillation is used as the inflow condition. Two forms are considered:(I)The fluctuation amplitude is kept constant(A=1.4), the influence of the fluctuation frequency from 4kHz with a step of 2kHz to 10kHz on the shock wave system is considered. (II) Keeping the frequency constant (f=10kHz), the effect of three amplitudes (A=1.0,1.4,1.8) on shock waves is considered. A detailed analysis of unsteady flow features, including the Mach stem growth, the swing of slip lines, pressure evolution, peculiar pressure wave phenomenon are presented with a focus on the bi-directional regular intersection (RI↔MI) Mach intersection transition process. The study found that:RI↔MI always occurs near the von Neumann solution, there are premature transformations and hysteresis. The higher the frequency, the more obvious the hysteresis and premature transformation are, the more obvious the swing of slip lines is. The lower the frequency, the longer the bi-directional transition time of the RI↔MI, the greater the maximum height of the Mach stem, the more frequent the triple points' pressure fluctuation. In addition, the oscillating flow will cause the propagation of pressure waves in the slip line channel and the transition from transverse waves to longitudinal waves. Under the different amplitudes, the greater the amplitude is, the greater the height of the Mach stem is. When the amplitude is maximum, the evolution of the detached shock wave will lead to the complexity of the system.
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shock wave intersection,dynamics,high-frequency
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