International audienceThis paper presents the application of the ghost fluid method (GFM) to solve Poisson's equation for streamer discharge simulations between electrodes of complex geometries. This approach allows one to use a simple rectilinear grid and nevertheless take into account the influence of the exact shape of the electrode on the calculation of the potential and the electric field. First, the validity of the GFM approach concerning the computation of the electric field is demonstrated by performing direct comparisons in a point-to-plane geometry of the Laplacian potential and electric field calculated with this method and given by the analytical solution. Second, the GFM is applied to the simulation of a positive streamer propagatio...
We present and compare six simulation codes for positive streamer discharges from six different rese...
Abstract—The dynamics of an anode-directed streamer can be described by advection-diffusion equation...
Streamers are the first stage of sparks and lightning; they grow due to a strongly enhanced electric...
International audienceThis paper presents the application of the ghost fluid method (GFM) to solve Po...
The evolution of negative streamers during electric breakdown of a non-attaching gas can be describe...
The evolution of negative streamers during electric breakdown of a non-attaching gas can be describe...
Abstract. The improved finite-element flux-corrected transport method (FE-FCT), developed by the aut...
The aim of this thesis is a numerical simulation of a streamer propagation (electric discharge in a ...
The dynamics of an anode-directed streamer can be described by advection-diffusion equations for the...
The development of a positive surface streamer in air at atmospheric pressure is numerically modelle...
Streamer front propagation involves steep gradients in charge density and electric field. Since the ...
The propagation of streamer discharges in air in strongly divergent electric fields and their intera...
We present an open-source plasma fluid code for 2D, cylindrical and 3D simulations of streamer disch...
We present and compare six simulation codes for positive streamer discharges from six different rese...
Abstract—The dynamics of an anode-directed streamer can be described by advection-diffusion equation...
Streamers are the first stage of sparks and lightning; they grow due to a strongly enhanced electric...
International audienceThis paper presents the application of the ghost fluid method (GFM) to solve Po...
The evolution of negative streamers during electric breakdown of a non-attaching gas can be describe...
The evolution of negative streamers during electric breakdown of a non-attaching gas can be describe...
Abstract. The improved finite-element flux-corrected transport method (FE-FCT), developed by the aut...
The aim of this thesis is a numerical simulation of a streamer propagation (electric discharge in a ...
The dynamics of an anode-directed streamer can be described by advection-diffusion equations for the...
The development of a positive surface streamer in air at atmospheric pressure is numerically modelle...
Streamer front propagation involves steep gradients in charge density and electric field. Since the ...
The propagation of streamer discharges in air in strongly divergent electric fields and their intera...
We present an open-source plasma fluid code for 2D, cylindrical and 3D simulations of streamer disch...
We present and compare six simulation codes for positive streamer discharges from six different rese...
Abstract—The dynamics of an anode-directed streamer can be described by advection-diffusion equation...
Streamers are the first stage of sparks and lightning; they grow due to a strongly enhanced electric...