JOURNAL ARTICLE

Electrohydrodynamic force in dielectric barrier discharge plasma actuators

Jean-Pierre BœufYoussef LagmichT UnferThierry CallegariLeanne C. Pitchford

Year: 2007 Journal:   Journal of Physics D Applied Physics Vol: 40 (3)Pages: 652-662   Publisher: Institute of Physics

Abstract

Surface dielectric barrier discharges (DBDs) have been proposed as actuators for flow control. In this paper we discuss the basic mechanisms responsible for the electrohydrodynamic (EHD) force exerted by the discharge on the gas molecules. A two-dimensional fluid model of the DBD is used to describe the plasma dynamics, to understand the basic physics associated with the EHD force and to give some quantitative estimation of the force under simplified conditions. The results show that for ramp or sinusoidal voltage waveforms, the discharge consists of large amplitude short current pulses during which a filamentary plasma spreads along the surface, separated in time by long duration, low current discharge phases of a Townsend or corona type. The contribution of the low current phases to the total force exerted by the discharge on the gas is dominant because their duration is much longer than that of the current pulses and because the force takes place in a much larger volume. A description of the different discharge regimes and a parametric study of the EHD force as a function of voltage rise time and dielectric thickness is presented.

Keywords:
Plasma actuator Electrohydrodynamics Dielectric barrier discharge Plasma Mechanics Dielectric Materials science Chemistry Atomic physics Physics Optoelectronics Electric field

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1.00
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Citation History

Topics

Plasma and Flow Control in Aerodynamics
Physical Sciences →  Engineering →  Aerospace Engineering
Plasma Applications and Diagnostics
Health Sciences →  Medicine →  Radiology, Nuclear Medicine and Imaging
Plasma Diagnostics and Applications
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
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