Linear and nonlinear development of controlled disturbances in the supersonic boundary layer on a swept wing at Mach 2.5

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Abstract

Experimental data on the linear and nonlinear wave train development in 3D supersonic boundary layer over a 45° swept-wing at Mach number 2.5 are presented. Travelling artificial disturbances were introduced in the boundary layer by periodical glow discharge at frequencies 10 and 20 kHz. The spatial-temporal and spectral-wave characteristics of the wave train of unstable disturbances in the linear region are obtained. It is shown that the additional peaks in β'-spectra arise for both subharmonic and fundamental frequencies. The experiments indicate the presence of subharmonic resonance mechanism in 3D boundary layer at Mach number 2.5.

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Kolosov, G. L., & Kosinov, A. D. (2016). Linear and nonlinear development of controlled disturbances in the supersonic boundary layer on a swept wing at Mach 2.5. In Journal of Physics: Conference Series (Vol. 754). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/754/2/022005

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