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- W3204160950 abstract "Computations are performed to study laminar-turbulent transition due to isolated roughness elements in boundary layers at Mach 3.5 and 5.95, with an emphasis on flow configurations for which experimental measurements from low disturbance wind tunnels are available. The Mach 3.5 case corresponds to a roughness element with right-triangle planform with hypotenuse that is inclined at 45 degrees with respect to the oncoming stream, presenting an obstacle with spanwise asymmetry. The Mach 5.95 case corresponds to a circular roughness element along the nozzle wall of the Purdue BAMQT wind tunnel facility. In both cases, the mean flow distortion due to the roughness element is characterized by long-lived streamwise streaks in the roughness wake, which can support instability modes that did not exist in the absence of the roughness element. The linear amplification characteristics of the wake flow are examined towards the eventual goal of developing linear growth correlations for the onset of transition." @default.
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- W3204160950 date "2015-06-18" @default.
- W3204160950 modified "2023-10-18" @default.
- W3204160950 title "Computations of Disturbance Amplification Behind Isolated Roughness Elements and Comparison with Measurements" @default.
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- W3204160950 doi "https://doi.org/10.2514/6.2015-2625" @default.
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