The dynamics of soot formation in turbulent ethylene-air nonpremixed counterflow flames is studied using direct numerical simulation (DNS) with a semi-empirical soot model and the discrete ordinate method (DOM) as a radiation solver. Transient characteristics of soot behavior are studies by a model problem of flame interaction with turbulence inflow at various intensities. The interaction between soot and turbulence reveals that the soot volume fraction depends on the combined effects of the local conditions of flow, temperature, and fuel concentration, while the soot number density depends predominantly on the high temperature regions. Depending on the relative strength between mixing and reaction, the effects of turbulence on the soot for...
A numerical model is developed aiming at investigating soot formation in ethylene counterflow diffus...
International audienceDue to their negative impacts on environment and human health, future regulati...
International audienceThis work reviews the state-of-the-art of the main soot modeling approaches us...
A two-dimensional simulation of a non-premixed ethylene–air flame was conducted by employing a detai...
Abstract. This paper provides an overview of recent progress in our development of high-fidelity sim...
A coupled radiation/flamelet combustion model is applied to the simulation of a turbulent diffusion ...
In this paper, Large Eddy Simulations (LES) have been performed on an ethylene/air piloted turbulent...
Numerical study of soot formation in counterflow ethylene diffusion flames at atmospheric pressure w...
This paper provides an overview of recent progress in our development of highfidelity simulation of ...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
This work developed and employed high-fidelity direct numerical simulations to investigate fundament...
A Direct Numerical Simulation (DNS) of soot formation in an n-heptane/air turbulent nonpremixed flam...
Current ability to predict radiation heat release from large fires via numerical simulation is limit...
This thesis describes an extended flamelet approach for modelling of soot formation in turbulent hyd...
A numerical model is developed aiming at investigating soot formation in ethylene counterflow diffus...
A numerical model is developed aiming at investigating soot formation in ethylene counterflow diffus...
International audienceDue to their negative impacts on environment and human health, future regulati...
International audienceThis work reviews the state-of-the-art of the main soot modeling approaches us...
A two-dimensional simulation of a non-premixed ethylene–air flame was conducted by employing a detai...
Abstract. This paper provides an overview of recent progress in our development of high-fidelity sim...
A coupled radiation/flamelet combustion model is applied to the simulation of a turbulent diffusion ...
In this paper, Large Eddy Simulations (LES) have been performed on an ethylene/air piloted turbulent...
Numerical study of soot formation in counterflow ethylene diffusion flames at atmospheric pressure w...
This paper provides an overview of recent progress in our development of highfidelity simulation of ...
Soot and radiation play an important role when designing practical combustion devices, and great eff...
This work developed and employed high-fidelity direct numerical simulations to investigate fundament...
A Direct Numerical Simulation (DNS) of soot formation in an n-heptane/air turbulent nonpremixed flam...
Current ability to predict radiation heat release from large fires via numerical simulation is limit...
This thesis describes an extended flamelet approach for modelling of soot formation in turbulent hyd...
A numerical model is developed aiming at investigating soot formation in ethylene counterflow diffus...
A numerical model is developed aiming at investigating soot formation in ethylene counterflow diffus...
International audienceDue to their negative impacts on environment and human health, future regulati...
International audienceThis work reviews the state-of-the-art of the main soot modeling approaches us...