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Mechanisms and Responses of a Single Dielectric Barrier Plasma Actuator: Plasma Morphology

AIAA Journal · 2004 · Vol. 42(3) · pp. 589–594
C. L. EnloeThomas McLaughlinRobert D. VanDykenK. D. KachnerEric JumperThomas Corke

Abstract

We present simultaneous optical, electrical, and thrust measurements of an aerodynamic plasma actuator. These measurements indicate that the plasma actuator is a form of the dielectric barrier discharge, whose behavior is governed primarily by the buildup of charge on the dielectric-encapsulated electrode. Our measurements reveal the temporal and macroscale spatial structure of the plasma. Correlating the morphology of the plasma and the electrical characteristics of the discharge to the actuator performance as measured by the thrust produced indicates a direct coupling between the interelectrode electric field (strongly modified by the presence of the plasma) and the charges in the plasma. Our measurements discount bulk heating or asymmetries in the structure of the discharge as mechanisms for the production of bulk motion of the surrounding neutral air, although such asymmetries clearly exist and impact the effectiveness of the actuator.

Plasma and Flow Control in AerodynamicsPlasma Applications and DiagnosticsPlasma Diagnostics and ApplicationsPlasma actuatorPlasmaDielectric barrier dischargeMaterials scienceActuatorDielectricElectric fieldElectrodeMechanicsThrust

Funding

  • Air Force Research Laboratory
Citations
635
FWCI
1067.74
field-weighted impact
References
29
Percentile
100%
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Citations per year
References
The development of dielectric barrier discharges in gas gaps and on surfaces
Journal of Physics D Applied Physics · 2000 · 547 citations
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