In this paper a new soot formation model for gas turbine combustor simulations is presented. A sectional approach for the description of Polycyclic Aromatic Hydrocarbons (PAHs) and a two-equation model for soot particle dynamics are introduced. By including the PAH chemistry the formulation becomes more general in that the soot formation is neither directly linked to the fuel nor to C2-like species, as it is the case in simpler soot models currently available for CFD applications. At the same time, the sectional approach for the PAHs keeps the required computational resources low if compared to models based on a detailed description of the PAH kinetics. These features of the new model allow an accurate yet affordable calculation of soot in ...
Reducing soot emissions from combustion processes is important due to the negative health and enviro...
Journal ArticleTwo soot formation models using particle dynamics with one-dimensional nucleation mod...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
The modeling of soot formation and oxidation under industrially relevant conditions has made signifi...
Soot particles formed and emitted from (e.g.) direct-injected diesel engines are dangerous to human ...
The aim of this work is to couple a general and detailed kinetic model of gas phase combustion chemi...
Combustion of hydrocarbon fuels is a major source of pollutants, causing adverse effects to environm...
A new chemical mechanism with 12 species and 26 reactions for formation of polycyclic aromatic hydr...
A detailed model of soot formation is proposed, which consists of a gas-phase kinetic model for the ...
This study employs a novel approach in order to satisfy the need in industry for a computationally i...
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...
The primary objective of the present work is to collect and review the vast amount of experimental d...
Modeling combustion of transportation fuels remains a difficult task due to the extremely large numb...
Reducing soot emissions from combustion processes is important due to the negative health and enviro...
Journal ArticleTwo soot formation models using particle dynamics with one-dimensional nucleation mod...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...
The modeling of soot formation and oxidation under industrially relevant conditions has made signifi...
Soot particles formed and emitted from (e.g.) direct-injected diesel engines are dangerous to human ...
The aim of this work is to couple a general and detailed kinetic model of gas phase combustion chemi...
Combustion of hydrocarbon fuels is a major source of pollutants, causing adverse effects to environm...
A new chemical mechanism with 12 species and 26 reactions for formation of polycyclic aromatic hydr...
A detailed model of soot formation is proposed, which consists of a gas-phase kinetic model for the ...
This study employs a novel approach in order to satisfy the need in industry for a computationally i...
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...
The primary objective of the present work is to collect and review the vast amount of experimental d...
Modeling combustion of transportation fuels remains a difficult task due to the extremely large numb...
Reducing soot emissions from combustion processes is important due to the negative health and enviro...
Journal ArticleTwo soot formation models using particle dynamics with one-dimensional nucleation mod...
International audienceLaminar methane diffusion flames doped by vapors of different blends of n-hept...