The present paper investigates the role of combustion models and kinetic mechanisms on the prediction of NOx emissions in a turbulent combustion system where conventional and unconventional routes are equally important for NOx formation. To this end, a lab-scale combustion system working in Moderate and Intense Low-oxygen Dilution (MILD) conditions, namely the Adelaide Jet in Hot Co-flow (JHC) burner, is targeted. The Eddy Dissipation Concept (EDC) and the Partially-Stirred Reactor (PaSR) models are used for turbulence-chemistry interactions. The KEE and GRI2.11 chemical mechanisms are employed. The results show that the choice of the combustion model has a higher impact than the selection of the kinetic mechanism for the investigated cases...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
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...
Thesis (Master's)--University of Washington, 2018The role of the NNH mechanism in NOx formation is i...
Two reduced kinetic models, incorporating thermal, N2O, NNH as well as HNO/NO2 intermediate routes, ...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
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...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
The direct implementation into CFD codes of large kinetic mechanisms for the prediction of pollutant...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
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...
Thesis (Master's)--University of Washington, 2018The role of the NNH mechanism in NOx formation is i...
Two reduced kinetic models, incorporating thermal, N2O, NNH as well as HNO/NO2 intermediate routes, ...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
MILD combustion is a recent development in the combustion of hydrocarbon fuels which promises high e...
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...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
The direct implementation into CFD codes of large kinetic mechanisms for the prediction of pollutant...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...
An experimental and computational investigation of a lab-scale burner, which can operate in both fla...