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Titlebook: IUTAM Symposium on Simulation and Identification of Organized Structures in Flows; Proceedings of the I J. N. Sørensen,E. J. Hopfinger,N. A

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E. A. Christensen,N. Aubry,J. N. Sørensen man, in 1986. In addition to a general effort to improve typography, English, and presentation, the main novelty of this second edition is the integration of some new material. Part of it is mine (mostly jointly with coauthors). Here is brief guide to these additions. I have augmented the account o
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A. Spohn man, in 1986. In addition to a general effort to improve typography, English, and presentation, the main novelty of this second edition is the integration of some new material. Part of it is mine (mostly jointly with coauthors). Here is brief guide to these additions. I have augmented the account o
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Taming Near-Wall Streamwise Vortices: A Modus Operandi for Boundary Layer Controlis given. Control schemes are developed based on the premise that the most effective way to control turbulent boundary layers is through proper manipulation of the near-wall streamwise vortices. Two different methods — neural networks and suboptimal control theory — are utilized to achieve this goal
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Visualisation of Coherent Structures in Manipulated Turbulent Flow Over A Fenceind a flow obstacle should have a significant effect on macroscopic parameters such as recirculation length or pressure drag. In the case of a flow over a fence with laminar inflow the shear layer separating from the leading edge of the flow obstacle will undergo transition to turbulence and the mai
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Three Dimensional Configuration of A Large-Scale Coherent Vortex in a Turbulent Boundary Layernt boundary layer. Coherent vorticity vector maps gave it a horseshoe sculpture. The horseshoe vortex induces four kinds of coherent structures; the strong outflow (ejection) between a pair of its legs, the inrush (sweep) outside the legs, the large-scale .-discontinuity upstream of the outflow and
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