A non-equilibrium plasma assisted combustion system was developed by integrating a counterflow bur-ner with a nano-second pulser to study the effects of atomic oxygen production on the extinction limits of methane diffusion flames at low pressure conditions. The production of atomic oxygen from the repetitive nano-second plasma discharge was measured by using two-photon absorption laser-induced fluorescence (TALIF). The results showed that both the atomic oxygen concentration production and the oxidizer stream temperature increased with the increase of the pulse repetition frequency for a constant plasma volt-age. The experimental results revealed that the plasma activated oxidizer significantly magnified the reac-tivity of diffusion flames...
Non-thermal plasma is regarded as a collection of free electrons, ions and neutral particles that ar...
The objective of this work is to understand the mechanism of plasma-assisted combustion in a steady-...
The focus of this work was to develop a hybrid plasma at atmospheric pressure, which we have deemed ...
A well-defined plasma assisted combustion system with novel in situ discharge in a counterflow diffu...
In this paper, we investigate the effects of nanosecond, repetitively-pulsed, non-equilibrium plasma...
Using of non-equilibrium plasma for ignition, combustion and high speed flow applications are rapidl...
At present, development of plasma assisted ignition and combustion is a very promising research area...
International audienceThe prediction of a flame response to plasma assistance requires extensive kno...
International audienceExperimental studies of plasma-assisted combustion have shown that Nanosecond ...
A numerical study on a high-pressure laminar counterflow diffusion flame is presented. Extinction li...
The effect of temperature on fuel-air ignition and combustion (thermal effects) have been widely stu...
The effects of flame structure on the extinction limits of CH4-O2-N2 counterflow diffusion flames we...
This paper examines the use of plasma discharges in flame stabilization. Three different types of pl...
In the last decade, nanosecond repetitively pulsed discharges (NRPD) had became very popular, becaus...
As a clean gaseous fuel, methane (the main constituent of natural gas) has been widely used in the l...
Non-thermal plasma is regarded as a collection of free electrons, ions and neutral particles that ar...
The objective of this work is to understand the mechanism of plasma-assisted combustion in a steady-...
The focus of this work was to develop a hybrid plasma at atmospheric pressure, which we have deemed ...
A well-defined plasma assisted combustion system with novel in situ discharge in a counterflow diffu...
In this paper, we investigate the effects of nanosecond, repetitively-pulsed, non-equilibrium plasma...
Using of non-equilibrium plasma for ignition, combustion and high speed flow applications are rapidl...
At present, development of plasma assisted ignition and combustion is a very promising research area...
International audienceThe prediction of a flame response to plasma assistance requires extensive kno...
International audienceExperimental studies of plasma-assisted combustion have shown that Nanosecond ...
A numerical study on a high-pressure laminar counterflow diffusion flame is presented. Extinction li...
The effect of temperature on fuel-air ignition and combustion (thermal effects) have been widely stu...
The effects of flame structure on the extinction limits of CH4-O2-N2 counterflow diffusion flames we...
This paper examines the use of plasma discharges in flame stabilization. Three different types of pl...
In the last decade, nanosecond repetitively pulsed discharges (NRPD) had became very popular, becaus...
As a clean gaseous fuel, methane (the main constituent of natural gas) has been widely used in the l...
Non-thermal plasma is regarded as a collection of free electrons, ions and neutral particles that ar...
The objective of this work is to understand the mechanism of plasma-assisted combustion in a steady-...
The focus of this work was to develop a hybrid plasma at atmospheric pressure, which we have deemed ...