In this study, a two-dimensional axi-symmetric model has been developed in order to shed light into the evolution of a He and He/O2 capillary plasma jet. The plasma jet interacts with a dielectric surface placed normal to the jet axis to bring the model closer to applications. This work examines, from first principles, the shape and speed of the of the plasma bullet, the intensity of the induced electric (IEF) field on the dielectric surface and the underlying dominant chemical reactions of the plasma. Furthermore, the work provides insight and understanding into the mechanisms behind many experimental observations such as the torus (or donut) and sphere plasma bullet shapes for pure Helium and He/O2 plasma, respectively.International Confe...
The family of non-thermal atmospheric pressure discharges has been the focus of intense research of ...
Cold atmospheric pressure plasma jets, although mostly researched for applications in surface treatm...
Cold atmospheric pressure plasma jets, although mostly researched for applications in surface treatm...
In this study, a two-dimensional axi-symmetric model has been developed in order to shed light into ...
Atmospheric pressure plasma jet devices have received a lot attention in the last two decades, due t...
In the last two decades, the atmospheric pressure plasma jet has gained much attention, due to its l...
Atmospheric pressure plasma jets are promising for applications in the area of material science and ...
Atmospheric pressure plasma jet (APPJ) can be generated in capillary tubes flowing with pure helium ...
The main aim of this paper is to numerically investigate the evolution of the different species in a...
Reactive oxygen and nitrogen species (RONS) play a central role in the immune system and on disease ...
Using a time-dependent two-dimensional axisymmetric fluid model the interaction of a plasma jet with...
For many applications in plasma medicine the atmospheric pressure plasma jet represents a good choic...
International audienceThis paper presents 2D simulations of atmospheric pressure discharges in heliu...
Characteristics of streamer propagating over helium jet at atmospheric pressure are studied in 2D si...
The family of non-thermal atmospheric pressure discharges has been the focus of intense research of ...
Cold atmospheric pressure plasma jets, although mostly researched for applications in surface treatm...
Cold atmospheric pressure plasma jets, although mostly researched for applications in surface treatm...
In this study, a two-dimensional axi-symmetric model has been developed in order to shed light into ...
Atmospheric pressure plasma jet devices have received a lot attention in the last two decades, due t...
In the last two decades, the atmospheric pressure plasma jet has gained much attention, due to its l...
Atmospheric pressure plasma jets are promising for applications in the area of material science and ...
Atmospheric pressure plasma jet (APPJ) can be generated in capillary tubes flowing with pure helium ...
The main aim of this paper is to numerically investigate the evolution of the different species in a...
Reactive oxygen and nitrogen species (RONS) play a central role in the immune system and on disease ...
Using a time-dependent two-dimensional axisymmetric fluid model the interaction of a plasma jet with...
For many applications in plasma medicine the atmospheric pressure plasma jet represents a good choic...
International audienceThis paper presents 2D simulations of atmospheric pressure discharges in heliu...
Characteristics of streamer propagating over helium jet at atmospheric pressure are studied in 2D si...
The family of non-thermal atmospheric pressure discharges has been the focus of intense research of ...
Cold atmospheric pressure plasma jets, although mostly researched for applications in surface treatm...
Cold atmospheric pressure plasma jets, although mostly researched for applications in surface treatm...