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Mechanisms and Responses of a Dielectric Barrier Plasma Actuator: Geometric Effects

AIAA Journal · 2004 · Vol. 42(3) · pp. 595–604
C. L. EnloeThomas McLaughlinRobert D. VanDykenK. D. KachnerEric JumperThomas CorkeMartiqua PostO. M. Haddad

Abstract

The single dielectric barrier discharge plasma, a plasma sustainable at atmospheric pressure, has shown considerable promise as a flow control device operating at modest (tens of watts) power levels. Measurements are presented of the development of the plasma during the course of the discharge cycle, and the relevance of these measurements to the modeling of the actuator's electrical properties is discussed. Experimental evidence is presented strongly pointing to the electric field enhancement near the leading edge of the actuator as a dominant factor determining the effectiveness of momentum coupling into the surrounding air

Plasma Applications and DiagnosticsPlasma and Flow Control in AerodynamicsElectrohydrodynamics and Fluid DynamicsPlasma actuatorDielectric barrier dischargePlasmaActuatorDielectricMaterials scienceMechanicsFlow control (data)Momentum (technical analysis)Electric field
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References
The development of dielectric barrier discharges in gas gaps and on surfaces
Journal of Physics D Applied Physics · 2000 · 547 citations
Principles of Plasma Physics
American Journal of Physics · 1973 · 2,378 citations
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