International audienceSurface dielectric barrier discharges have been proposed as means of airflow actuation. A simplified air plasma model fully coupled with gas dynamics is presented and solved numerically using asynchronous mesh adaptation and time integration. Two modes of actuation depending on the driving voltage waveform are presented and analyzed. The first one uses high-voltage sine waveform in the kilohertz frequency range to transfer momentum from ions to gas molecules. The second one uses high-voltage nanosecond pulses to transfer energy to the neutral gas on a short time scale thus generating shockwaves
The efficacy of dielectric barrier discharge (DBD) plasmas driven by high voltage (~15 kV) repetitiv...
International audienceSurface dielectric barrier discharges (DBDs) have been proposed as actuators f...
International audienceA parallel 2D code for modeling nanosecond surface dielectric barrier discharg...
Experimental studies were conducted of a flow induced in an initially quiescent room air by a single...
Nanosecond-pulse surface dielectric barrier discharge is a promising method used for airflow control...
Numerical calculations were carried out to examine the physics of the operation of a nanosecond-puls...
An earlier developed detailed physical model of an asymmetric dielectric barrier discharge (DBD) pla...
Experimental studies were conducted of a flow induced in an initially quiescent room air by a single...
A detailed physical model for an asymmetric dielectric barrier discharge (DBD) in air driven by repe...
Over the past few decades, the use of plasma actuators as flow control devices has been a growing fi...
International audienceThis paper presents a study of the development of a surface dielectric barrier...
Airfoil stall influences the performance of flight vehicles and remains a challenge for the design o...
Detailed physical model for asymmetric dielectric barrier discharge (DBD) in air is developed. Model...
none7Experimental studies were conducted of a flow induced in an initially quiescent room air by a ...
A dielectric barrier discharge, operating at kHz and kV conditions, can generate largely isothermal ...
The efficacy of dielectric barrier discharge (DBD) plasmas driven by high voltage (~15 kV) repetitiv...
International audienceSurface dielectric barrier discharges (DBDs) have been proposed as actuators f...
International audienceA parallel 2D code for modeling nanosecond surface dielectric barrier discharg...
Experimental studies were conducted of a flow induced in an initially quiescent room air by a single...
Nanosecond-pulse surface dielectric barrier discharge is a promising method used for airflow control...
Numerical calculations were carried out to examine the physics of the operation of a nanosecond-puls...
An earlier developed detailed physical model of an asymmetric dielectric barrier discharge (DBD) pla...
Experimental studies were conducted of a flow induced in an initially quiescent room air by a single...
A detailed physical model for an asymmetric dielectric barrier discharge (DBD) in air driven by repe...
Over the past few decades, the use of plasma actuators as flow control devices has been a growing fi...
International audienceThis paper presents a study of the development of a surface dielectric barrier...
Airfoil stall influences the performance of flight vehicles and remains a challenge for the design o...
Detailed physical model for asymmetric dielectric barrier discharge (DBD) in air is developed. Model...
none7Experimental studies were conducted of a flow induced in an initially quiescent room air by a ...
A dielectric barrier discharge, operating at kHz and kV conditions, can generate largely isothermal ...
The efficacy of dielectric barrier discharge (DBD) plasmas driven by high voltage (~15 kV) repetitiv...
International audienceSurface dielectric barrier discharges (DBDs) have been proposed as actuators f...
International audienceA parallel 2D code for modeling nanosecond surface dielectric barrier discharg...