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- W3035329609 abstract "The effects of a new permeable material on the hypersonic boundary layer transition are investigated on a flared cone at Peking University. The experimental and theoretical results show that the material can delay the transition, though the second mode increases faster on the material surface. Rayleigh-scattering flow visualization and fast-response pressure sensors were used to observe the disturbances development in the boundary layer of the flared cone. And the transition location was determined by means of infrared thermography. On the permeable wall, the second mode appears earlier and lasts over a longer distance along the flow direction. Stability calculations based on the acoustic model show that this phenomeon is due to the admittance phase of the material. Finally, a bispectral analysis is employed to identify nonlinear interactions present within the boundary layer. It is determined that the second mode decays more slowly on the permeable wall due to weaker nonlinear interactions." @default.
- W3035329609 created "2020-06-19" @default.
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- W3035329609 date "2020-06-08" @default.
- W3035329609 modified "2023-10-14" @default.
- W3035329609 title "Experimental and theoretical study of the hypersonic boundary layer transition on the permeable wall of a flared cone" @default.
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- W3035329609 doi "https://doi.org/10.2514/6.2020-2964" @default.
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