摘要
The instability of a hypersonic boundary layer on a cone is investigated by bicoherence spectrum analysis.The experiment is conducted at Mach number 6 in a hypersonic wind tunnel.The time series signals of instantaneous fluctuating surface-thermal-flux are measured by Pt-thin-film thermocouple temperature sensors mounted at 28 stations on the cone surface along streamwise direction to investigate the development of the unstable disturbances.The bicoherence spectrum analysis based on wavelet transform is employed to investigate the nonlinear interactions of the instability of Mack modes in hypersonic laminar boundary layer transition.The results show that wavelet bicoherence is a powerful tool in studying the unstable mode nonlinear interaction of hypersonic laminar-turbulent transition.The first mode instability gives rise to frequency shifts to higher unstable modes at the early stage of hypersonic laminar-turbulent transition.The modulations subsequently lead to the second mode instability occurrence.The second mode instability governs the last stage of instability and final breakdown to turbulence with multi-scale disturbances growth.
作者
HAN Jian
JIANG Nan
韩健;姜楠(Department of Mechanics,Tianjin University,Tianjin 300072;Department of Mathematics,Tianjin University,Tianjin 300072;Tianjin Key Laboratory of Modern Engineering Mechanics,Tianjin 300072)
基金
Supported by the National Natural Science Foundation of China under Grant No 10832001
the Opening Subject of State Key Laboratory of Nonlinear Mechanics,Institute of Mechanics,Chinese Academy of Sciences.