A plasma discharge in a Helium gas reactor at different pressures and at low currents (0.25–0.45 A) has been investigated by Computational Fluid Dynamic modeling coupled with the Maxwell’s equations. The results show different discharge dynamics across the pressure range (0.1–8 MPa), with an arc discharge obtained at high pressure and a low current arc discharge observed at atmospheric pressure. A large density gradient at higher pressure causes a strong natural convection effect in the reactor. This density gradient affects drastically the discharge shape and the velocity field at high pressures while at atmospheric pressure, a lower density gradient was observed resulting in a low velocity magnitude. It has been observed that the ...
A two-dimensional computational study is presented to unravel radial structure of a dielectric barri...
Helium (He) and Argon (Ar) atmospheric pressure plasma jets operated with low-frequency power source...
DoctorLow-temperature plasmas at low pressure (~ mTorr) are widely used for dielectric etching, depo...
A plasma discharge in a Helium gas reactor at different pressures and at low currents (0.25–0.45 A)...
A plasma discharge in a Helium gas reactor at different pressures and at low currents (0.25–0.45 A) ...
A computational fluid dynamics (CFD) model has been developed to investigate the time evolution of a...
A computational fluid dynamics (CFD) model has been developed to investigate the time evolution of ...
This research work presents the numerical simulations of multispecies multi-dimensional fluid model ...
Without the need of large and expensive vacuum equipment, atmospheric-pressure plas- mas have receiv...
A detailed global model of atmospheric-pressure He + H2O plasmas is presented in this paper. The mod...
A detailed global model of atmospheric-pressure He + H2O plasmas is presented in this paper. The mod...
textThis document presents a study of the numerical simulation of non-equilibrium plasma discharges ...
In recent years, plasma discharge in liquid medium has been a topic of immense interest. Theoretical...
A hydrodynamic model of plasma has been developed, which takes into account both secondary and prima...
A two-dimensional computational study is presented to unravel radial structure of a dielectric barri...
Helium (He) and Argon (Ar) atmospheric pressure plasma jets operated with low-frequency power source...
DoctorLow-temperature plasmas at low pressure (~ mTorr) are widely used for dielectric etching, depo...
A plasma discharge in a Helium gas reactor at different pressures and at low currents (0.25–0.45 A)...
A plasma discharge in a Helium gas reactor at different pressures and at low currents (0.25–0.45 A) ...
A computational fluid dynamics (CFD) model has been developed to investigate the time evolution of a...
A computational fluid dynamics (CFD) model has been developed to investigate the time evolution of ...
This research work presents the numerical simulations of multispecies multi-dimensional fluid model ...
Without the need of large and expensive vacuum equipment, atmospheric-pressure plas- mas have receiv...
A detailed global model of atmospheric-pressure He + H2O plasmas is presented in this paper. The mod...
A detailed global model of atmospheric-pressure He + H2O plasmas is presented in this paper. The mod...
textThis document presents a study of the numerical simulation of non-equilibrium plasma discharges ...
In recent years, plasma discharge in liquid medium has been a topic of immense interest. Theoretical...
A hydrodynamic model of plasma has been developed, which takes into account both secondary and prima...
A two-dimensional computational study is presented to unravel radial structure of a dielectric barri...
Helium (He) and Argon (Ar) atmospheric pressure plasma jets operated with low-frequency power source...
DoctorLow-temperature plasmas at low pressure (~ mTorr) are widely used for dielectric etching, depo...