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- W2103172860 abstract "Turbularization of an acoustic boundary layer (Stokes layer) on impermeable and permeable surfaces is analytically considered. The theoretical approach utilizes a second-order closure model of turbulence. Both an approximate, closed-form solution and a more comprehensive finite-difference solution of the time-dependent, parabolic, one-dimensional governing equations are obtained. For simple acoustic boundary layers on impermeable surfaces, both the approximate solution and the numerical results for the critical acoustic Mach number required for turbulent transition are qualitatively confirmed by experiment. The calculations for acoustic boundary layers with transpiration (injection) indicate a substantial reduction of the acoustic Mach number required for transition, up to a limiting injection velocity that is frequency dependent. The results may provide a mechanism for flow-related combustion instability in practical systems, particularly solid propellant rockets, since turbularization of the near-surface combustion zone could result at relatively low-acoustic Mach numbers." @default.
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- W2103172860 date "1988-08-01" @default.
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- W2103172860 title "Turbularization of an acoustic boundary layer on a transpiring surface" @default.
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- W2103172860 doi "https://doi.org/10.2514/3.9991" @default.
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