Spatial Evolution Of Nonlinear Acoustic Mode Instabilities On Hypersonic Boundary Layers


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Spatial Evolution of Nonlinear Acoustic Mode Instabilities on Hypersonic Boundary Layers


Spatial Evolution of Nonlinear Acoustic Mode Instabilities on Hypersonic Boundary Layers

Author: National Aeronautics and Space Administration (NASA)

language: en

Publisher: Createspace Independent Publishing Platform

Release Date: 2018-07-11


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The effects are considered of strong critical layer nonlinearity on the spatial evolution of an initially linear acoustic mode instability wave on a hypersonic flat plate boundary layer. The analysis shows that nonlinearity, which is initially confined to a thin critical layer, first becomes important when the amplitude of the pressure fluctuations become 0(1/M exp 4 In M exp 2), where M is the free stream Mach number. The flow outside the critical layer is still determined by linear dynamics and therefore takes the form of a linear instability wave, but with its amplitude completely determined by the flow within the critical layer. The latter flow is determined by a coupled set of nonlinear equations, which were solved numerically. Goldstein, M. E. and Wundrow, D. W. Glenn Research Center NAS3-25266; NASA ORDER C-99066-G; NGT-50085; RTOP 505-62-21...