Laminar methane diffusion flames doped by vapors of different blends of n-heptane and iso-octane burning in a coflow of air diluted with CO2 were simulated numerically in this study. These laminar coflow diffusion flames have been experimentally investigated recently by Kashif et al. (2014). Numerical simulations were performed using a detailed reaction model containing 175 species and 1189 reactions together with a sectional soot model. The soot model consists of inception as a result of the collision of two pyrene molecules, heterogeneous surface growth and oxidation following the hydrogen abstraction acetylene addition (HACA) mechanism, soot particle coagulation, and PAH surface condensation. The numerical model provides prediction in fa...
This article employs the CoFlame Code to investigate the effects of hydrogen addition to fuel on soo...
The intent of this paper is to predict the experimental sooting tendencies [Combust. Flame 148 (2007...
The intent of this paper is to predict the experimental sooting tendencies [Combust. Flame 148 (2007...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
International audienceThe laminar coflow nitrogen-diluted methane/air diffusion flames doped with a ...
International audienceThe laminar coflow nitrogen-diluted methane/air diffusion flames doped with a ...
International audienceThe laminar coflow nitrogen-diluted methane/air diffusion flames doped with a ...
The laminar coflow nitrogen-diluted methane/air diffusion flames doped with a small amount of n-hept...
International audienceLaminar nitrogen-diluted n-heptane diffusion flames burning in coflow air were...
International audienceLaminar nitrogen-diluted n-heptane diffusion flames burning in coflow air were...
The effects of fuel dilution by C02 and N2 on soot formation and the flame structure in laminar cofl...
A numerical study is carried out to, first of all, investigate the capability of a Polycyclic Aromat...
This article employs the CoFlame Code to investigate the effects of hydrogen addition to fuel on soo...
The intent of this paper is to predict the experimental sooting tendencies [Combust. Flame 148 (2007...
The intent of this paper is to predict the experimental sooting tendencies [Combust. Flame 148 (2007...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
International audienceThe laminar coflow nitrogen-diluted methane/air diffusion flames doped with a ...
International audienceThe laminar coflow nitrogen-diluted methane/air diffusion flames doped with a ...
International audienceThe laminar coflow nitrogen-diluted methane/air diffusion flames doped with a ...
The laminar coflow nitrogen-diluted methane/air diffusion flames doped with a small amount of n-hept...
International audienceLaminar nitrogen-diluted n-heptane diffusion flames burning in coflow air were...
International audienceLaminar nitrogen-diluted n-heptane diffusion flames burning in coflow air were...
The effects of fuel dilution by C02 and N2 on soot formation and the flame structure in laminar cofl...
A numerical study is carried out to, first of all, investigate the capability of a Polycyclic Aromat...
This article employs the CoFlame Code to investigate the effects of hydrogen addition to fuel on soo...
The intent of this paper is to predict the experimental sooting tendencies [Combust. Flame 148 (2007...
The intent of this paper is to predict the experimental sooting tendencies [Combust. Flame 148 (2007...