We model heat dominated electrical breakdown in air in a short planar gap. We couple the discharge dynamics in fluid approximation with the hydrodynamic motion of the air heated by the discharge. To be computationally efficient, we derive a reduced model on the ion time scale, and we switch between the full model on the electron time scale and the reduced model. We observe an ion pulse reaching the cathode, releasing electrons by secondary emission, and these electrons create another ion pulse. These cycles of ion pulses might lead to electrical breakdown. This breakdown is driven by Ohmic heating, thermal shocks and induced pressure waves, rather than by the streamer mechanism of local field enhancement at the streamer tip
Understanding of ion generation in air provides insights to several applications, such as gas sensor...
A two-dimensional cylindrically symmetric model is developed to study the streamer-less spark format...
A wire-to-plane discharge during the early phases of breakdown has been studied. The discharge has b...
We model heat dominated electrical breakdown in air in a short planar gap. We couple the discharge d...
A 3D particle model is developed to investigate the streamer formation in electric fields above the ...
htmlabstractA 2D cylindrically symmetric model is developed to study the streamer-less spark formati...
After the first streamer discharge front in a spark, heating and gas expansion sets in.This effect u...
Understanding of ion generation in air provides insights to several applications, such as gas sensor...
Electrical discharge in gaseous media happens in very different regimes: corona discharge is charact...
A two-dimensional cylindrically symmetric model is developed to study the streamer-less spark forma...
\u3cp\u3e A two-dimensional cylindrically s...
The breakdown of a positive point to plane gap in air near atmospheric pressure begins with the form...
International audienceThis paper presents 2D simulations of the dynamics of formation of a nanosecon...
Streamer discharges are fast ionisation fronts generated under intensive electrical stress. They are...
A new analytic model of energy coupling to repetitive nanosecond pulsed discharge plasmas has been d...
Understanding of ion generation in air provides insights to several applications, such as gas sensor...
A two-dimensional cylindrically symmetric model is developed to study the streamer-less spark format...
A wire-to-plane discharge during the early phases of breakdown has been studied. The discharge has b...
We model heat dominated electrical breakdown in air in a short planar gap. We couple the discharge d...
A 3D particle model is developed to investigate the streamer formation in electric fields above the ...
htmlabstractA 2D cylindrically symmetric model is developed to study the streamer-less spark formati...
After the first streamer discharge front in a spark, heating and gas expansion sets in.This effect u...
Understanding of ion generation in air provides insights to several applications, such as gas sensor...
Electrical discharge in gaseous media happens in very different regimes: corona discharge is charact...
A two-dimensional cylindrically symmetric model is developed to study the streamer-less spark forma...
\u3cp\u3e A two-dimensional cylindrically s...
The breakdown of a positive point to plane gap in air near atmospheric pressure begins with the form...
International audienceThis paper presents 2D simulations of the dynamics of formation of a nanosecon...
Streamer discharges are fast ionisation fronts generated under intensive electrical stress. They are...
A new analytic model of energy coupling to repetitive nanosecond pulsed discharge plasmas has been d...
Understanding of ion generation in air provides insights to several applications, such as gas sensor...
A two-dimensional cylindrically symmetric model is developed to study the streamer-less spark format...
A wire-to-plane discharge during the early phases of breakdown has been studied. The discharge has b...