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Optimal disturbances and bypass transition in boundary layers

Physics of Fluids · 1999 · Vol. 11(1) · pp. 134–150
Paul AnderssonMartin BerggrenDan S. Henningson

Abstract

Streamwise streaks are ubiquitous in transitional boundary layers, particularly when subjected to high levels of free-stream turbulence. Using the steady boundary-layer approximation, the upstream disturbances experiencing maximum spatial energy growth are numerically calculated. The calculations use techniques commonly employed when solving optimal-control problems for distributed parameter systems. The calculated optimal disturbances consist of streamwise vortices developing into streamwise streaks. The maximum spatial energy growth was found to scale linearly with the distance from the leading edge. Based on these results, a simple model for prediction of transition location is proposed. Available experiments have been used to correlate the single constant appearing in the model.

Fluid Dynamics and Turbulent FlowsWind and Air Flow StudiesAerodynamics and Acoustics in Jet FlowsPhysicsTurbulenceBoundary layerVortexMechanicsBoundary (topology)Upstream (networking)Constant (computer programming)Boundary value problemStatistical physics
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References
Optimal Control of Systems Governed by Partial Differential Equations.
American Mathematical Monthly · 1972 · 2,970 citations
The three-dimensional nature of boundary-layer instability
Journal of Fluid Mechanics · 1962 · 1,091 citations
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