2009Proceeding of Sixth International Symposium on Turbulence and Shear Flow PhenomenaRequires access

ON THE PHYSICS OF VORTEX GENERATORS FOR FLOW SEPARATION CONTROL

Benoft Gardarin, Laurent Jacquin

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Abstract

We aim at analyzing the physical phenomena fixing the global efficiency of Vortex Generators for turbulent flow separation control. Fluidic and Mechanical Vortex Generators characteristic are considered. The vortices properties are evaluated with mean of hot wire and PIV measurements. We show that two mechanisms are likely participating in fixing the control strategy efficiency. The first one is mixing, carried out by vortices. The second one is an instability mechanism, which is responsible for the vortex system disruption. An efficient control strategy thus results from a compromise between improving vortex mixing and delaying the development of vortex instability.

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What this paper is about

We aim at analyzing the physical phenomena fixing the global efficiency of Vortex Generators for turbulent flow separation control. Fluidic and Mechanical Vortex Generators characteristic are considered. The vortices properties are evaluated with mean of hot wire and PIV measurements. We show that two mechanisms are likely participating in fixing the control strategy efficiency. The first one is mixing, carried out by vortices. The second one is an instability mechanism, which is responsible for the vortex system disruption. An efficient control strategy thus results from a compromise between improving vortex mixing and delaying the development of vortex instability.

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Available abstract

We aim at analyzing the physical phenomena fixing the global efficiency of Vortex Generators for turbulent flow separation control. Fluidic and Mechanical Vortex Generators characteristic are considered. The vortices properties are evaluated with mean of hot wire and PIV measurements. We show that two mechanisms are likely participating in fixing the control strategy efficiency. The first one is mixing, carried out by vortices. The second one is an instability mechanism, which is responsible for the vortex system disruption. An efficient control strategy thus results from a compromise between improving vortex mixing and delaying the development of vortex instability.

Key concepts: Vortex, Vortex generator, Flow control (data), Turbulence, Fluidics, Mechanics, Mixing (physics), Instability

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