Two reduced kinetic models, incorporating thermal, N2O, NNH as well as HNO/NO2 intermediate routes, are proposed for The quick evaluation of NO emissions from MILD combustion of H2-enriched fuels through post-processing of Computational Fluid Dynamics simulations. The models were derived from a Rate Of Production Analysis carried out with two different detailed kinetic schemes. The models were tested using data from The Adelaide Jet in Hot Coflow burner fed with CH4/H2 mixture and operated with three different O2 contents. Very satisfactory predictions of in-flame NO measurements were achieved for The three cases, indicating a good applicability of The models across a wide range of MILD combustion conditions. Significant impact of The NNH i...
Paper from the AFRC 2016 conference titled Numerical Analysis of NO and CO in a Flameless BurnerComb...
The direct implementation of large kinetic mechanisms for the prediction of pollutant emissions into...
The formation/destruction mechanisms of nitric oxides (No-x) in CH4/H-2 jet flames in a hot coflow a...
Two reduced kinetic models, incorporating thermal, N(2)0, NNH as well as HNO/NO2 intermediate routes...
Flameless combustion, the thermal NO formation becomes less significant than other routes because t...
The prediction of NO emissions from industrial burners represents a key goal of Computational Fluid ...
The direct implementation into CFD codes of large kinetic mechanisms for the prediction of pollutant...
Emissions of nitrogen oxides (NOx) from combustion systems remain a lingering environmental issue, b...
Emissions of nitrogen oxides (NOx) from combustion systems remain a lingering environmental issue, b...
The present paper investigates the role of combustion models and kinetic mechanisms on the predictio...
The present paper investigates the role of combustion models and kinetic mechanisms on the predictio...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
The mechanisms of formation and destruction of NO in MILD combustion of CH4/H2 fuels blends are inve...
The mechanisms of formation and destruction of NO in MILD combustion of CH4/H-2 fuels blends are inv...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
Paper from the AFRC 2016 conference titled Numerical Analysis of NO and CO in a Flameless BurnerComb...
The direct implementation of large kinetic mechanisms for the prediction of pollutant emissions into...
The formation/destruction mechanisms of nitric oxides (No-x) in CH4/H-2 jet flames in a hot coflow a...
Two reduced kinetic models, incorporating thermal, N(2)0, NNH as well as HNO/NO2 intermediate routes...
Flameless combustion, the thermal NO formation becomes less significant than other routes because t...
The prediction of NO emissions from industrial burners represents a key goal of Computational Fluid ...
The direct implementation into CFD codes of large kinetic mechanisms for the prediction of pollutant...
Emissions of nitrogen oxides (NOx) from combustion systems remain a lingering environmental issue, b...
Emissions of nitrogen oxides (NOx) from combustion systems remain a lingering environmental issue, b...
The present paper investigates the role of combustion models and kinetic mechanisms on the predictio...
The present paper investigates the role of combustion models and kinetic mechanisms on the predictio...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
The mechanisms of formation and destruction of NO in MILD combustion of CH4/H2 fuels blends are inve...
The mechanisms of formation and destruction of NO in MILD combustion of CH4/H-2 fuels blends are inv...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
Paper from the AFRC 2016 conference titled Numerical Analysis of NO and CO in a Flameless BurnerComb...
The direct implementation of large kinetic mechanisms for the prediction of pollutant emissions into...
The formation/destruction mechanisms of nitric oxides (No-x) in CH4/H-2 jet flames in a hot coflow a...