Rigorous experimental, theoretical, and numerical investigation of various issues relevant to the development of reduced, validated kinetic mechanisms for synthetic gas combustion in gas turbines was carried out - including the construction of new radiation models for combusting flows, improvement of flame speed measurement techniques, measurements and chemical kinetic analysis of H{sub 2}/CO/CO{sub 2}/O{sub 2}/diluent mixtures, revision of the H{sub 2}/O{sub 2} kinetic model to improve flame speed prediction capabilities, and development of a multi-time scale algorithm to improve computational efficiency in reacting flow simulations
In this study a 5-step reduced chemical kinetic mechanism involving nine species is developed for co...
It is expected that, in the future, gas turbines will be operated on gaseous fuels currently unutili...
In this study a 5-step reduced chemical kinetic mechanism involving 9 species is developed for combu...
A detailed reaction mechanism for the oxidation of hydrogen and syngas in freely propagating and bur...
The aim of this study is to eliminate unimportant steps from a detailed chemical-kinetic mechanism i...
It is essentially important to use appropriate chemical kinetic models in the simulation process of ...
Methane is an important fuel for gas turbine and gas engine combustion, and the most common fuel in ...
A four-step reduced chemical-kinetic mechanism for syngas combustion is proposed for use under condi...
A comprehensively tested H2/O2 chemical kinetic mechanism based on Mueller et al. [1] and recently p...
Due to the complexity of modeling the combustion process in nuclear power plants, the global mechani...
2013-10-01Developing reliable chemical kinetic models is a key ingredient in current and future effo...
Journal articleA comprehensive and hierarchical optimization of a joint hydrogen and syngas combusti...
Reduced chemical-kinetic mechanisms are investigated for hydrogen and syngas combustion to fill the ...
Gasification is a widely used thermo-chemical route for conversion of biomass and coal, yields fuel ...
Computational fluid dynamics modeling of the complex processes that occur within the burner of a gas...
In this study a 5-step reduced chemical kinetic mechanism involving nine species is developed for co...
It is expected that, in the future, gas turbines will be operated on gaseous fuels currently unutili...
In this study a 5-step reduced chemical kinetic mechanism involving 9 species is developed for combu...
A detailed reaction mechanism for the oxidation of hydrogen and syngas in freely propagating and bur...
The aim of this study is to eliminate unimportant steps from a detailed chemical-kinetic mechanism i...
It is essentially important to use appropriate chemical kinetic models in the simulation process of ...
Methane is an important fuel for gas turbine and gas engine combustion, and the most common fuel in ...
A four-step reduced chemical-kinetic mechanism for syngas combustion is proposed for use under condi...
A comprehensively tested H2/O2 chemical kinetic mechanism based on Mueller et al. [1] and recently p...
Due to the complexity of modeling the combustion process in nuclear power plants, the global mechani...
2013-10-01Developing reliable chemical kinetic models is a key ingredient in current and future effo...
Journal articleA comprehensive and hierarchical optimization of a joint hydrogen and syngas combusti...
Reduced chemical-kinetic mechanisms are investigated for hydrogen and syngas combustion to fill the ...
Gasification is a widely used thermo-chemical route for conversion of biomass and coal, yields fuel ...
Computational fluid dynamics modeling of the complex processes that occur within the burner of a gas...
In this study a 5-step reduced chemical kinetic mechanism involving nine species is developed for co...
It is expected that, in the future, gas turbines will be operated on gaseous fuels currently unutili...
In this study a 5-step reduced chemical kinetic mechanism involving 9 species is developed for combu...