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- W2004114725 abstract "Results from linear stability analysis are presented for a wide variety of mixing layers, including low-speedlayers with variable density and high Mach number mixing layers. The linear amplification predicts correctly theexperimentally observed trends in growth rate that are due to velocity ratio, density ratio, and Mach number,provided that the spatial theory is used and the mean flow is a computed solution of the compressibleboundary-layer equations. It is found that three-dimensional modes are dominant in the high-speed mixing layerabove a convective Mach number of 0.6, and a simple relationship is proposed that approximately describes theorientation of these waves. Direct numerical simulations of the compressible Navier-Stokes equations are usedto show the reduced growth rate that is due to increasing Mach number. From consideration of the compressiblevorticity equation, it is found that the dominant physics controlling the nonlinear roll-up of vortices in thehigh-speed mixing layer is contained in an elementary form in the linear eigenfunctions. It is concluded that thelinear theory can be very useful for investigating the physics of free shear layers and predicting the growth rateof the developed plane mixing layer" @default.
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- W2004114725 date "1990-04-01" @default.
- W2004114725 modified "2023-09-28" @default.
- W2004114725 title "Compressible mixing layer - Linear theory and direct simulation" @default.
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- W2004114725 doi "https://doi.org/10.2514/3.10437" @default.
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