A two-dimensional simulation of a non-premixed ethylene–air flame was conducted by employing a detailed gas-phase reaction mechanism considering polycyclic aromatic hydrocarbons, an aerosol-dynamics-based soot model using a method of moments with interpolative closure, and a grey gas and soot radiation model using the discrete transfer method. Interaction of the sooting flame with a prescribed decaying random velocity field was investigated, with a primary interest in the effects of velocity fluctuations on the flame structure and the associated soot formation process for a fuel-strip configuration and a composition with mature soot growth. The temporally evolving simulation revealed a multi-layered soot formation process within the flame, ...
International audienceDue to their negative impacts on environment and human health, future regulati...
A sooting, ethylene co¯ow diffusion ¯ame has been studied both experimentally and computationally. T...
In this paper a new soot formation model for gas turbine combustor simulations is presented. A secti...
The dynamics of soot formation in turbulent ethylene-air nonpremixed counterflow flames is studied u...
A Direct Numerical Simulation (DNS) of soot formation in an n-heptane/air turbulent nonpremixed flam...
A detailed kinetic mechanism of soot formation and oxidation is revised and extended to include temp...
A detailed model of soot formation is proposed, which consists of a gas-phase kinetic model for the ...
International audienceThe formation of soot in actual combustion systems involves several complex pr...
A coupled radiation/flamelet combustion model is applied to the simulation of a turbulent diffusion ...
This work developed and employed high-fidelity direct numerical simulations to investigate fundament...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
In this paper, Large Eddy Simulations (LES) have been performed on an ethylene/air piloted turbulent...
Polycyclic aromatic hydrocarbons (PAHs) are known as soot precursors, but their formation/consumptio...
A numerical model is developed aiming at investigating soot formation in ethylene counterflow diffus...
International audienceBecause the numerical simulation of soot production in turbulent flames is qui...
International audienceDue to their negative impacts on environment and human health, future regulati...
A sooting, ethylene co¯ow diffusion ¯ame has been studied both experimentally and computationally. T...
In this paper a new soot formation model for gas turbine combustor simulations is presented. A secti...
The dynamics of soot formation in turbulent ethylene-air nonpremixed counterflow flames is studied u...
A Direct Numerical Simulation (DNS) of soot formation in an n-heptane/air turbulent nonpremixed flam...
A detailed kinetic mechanism of soot formation and oxidation is revised and extended to include temp...
A detailed model of soot formation is proposed, which consists of a gas-phase kinetic model for the ...
International audienceThe formation of soot in actual combustion systems involves several complex pr...
A coupled radiation/flamelet combustion model is applied to the simulation of a turbulent diffusion ...
This work developed and employed high-fidelity direct numerical simulations to investigate fundament...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
In this paper, Large Eddy Simulations (LES) have been performed on an ethylene/air piloted turbulent...
Polycyclic aromatic hydrocarbons (PAHs) are known as soot precursors, but their formation/consumptio...
A numerical model is developed aiming at investigating soot formation in ethylene counterflow diffus...
International audienceBecause the numerical simulation of soot production in turbulent flames is qui...
International audienceDue to their negative impacts on environment and human health, future regulati...
A sooting, ethylene co¯ow diffusion ¯ame has been studied both experimentally and computationally. T...
In this paper a new soot formation model for gas turbine combustor simulations is presented. A secti...