Computational fluid dynamics (CFD) modeling of the complex processes that occur within the burner of a gas turbine engine has become a critical step in the design process. However, due to computer limitations, it is very difficult to completely couple the fluid mechanics solver with the full combustion chemistry. Therefore, simplified chemistry models are required, and the topic of this research was to provide reduced chemistry models for CH4/O2 gas turbine flow fields to be integrated into CFD codes for the simulation of flow fields of natural gas-fueled burners. The reduction procedure for the CH4/O2 model utilized a response modeling technique wherein the full mechanism was solved over a range of temperatures, pressures, and mixture rati...
Shock-tube experiments and chemical kinetics modeling were Performed to further understand the ignit...
Shock-tube experiments and chemical kinetics modeling were performed to further understand the ignit...
Computational fluid dynamics of methane combustion using chemical kinetics for description of the ch...
Computational fluid dynamics (CFD) modeling of the complex processes that occur within the burner of...
Computational fluid dynamics (CFD) modeling of the complex processes that occur within the burner of...
Computational fluid dynamics modeling of the complex processes that occur within the burner of a gas...
Computational fluid dynamics modeling of the complex processes that occur within the burner of a gas...
Computational fluid dynamics modeling of the complex processes that occur within the burner of a gas...
Natural gas is the primary fuel for industrial gas turbines. Although natural gas is mostly methane,...
Methane is an important fuel for gas turbine and gas engine combustion, and the most common fuel in ...
To achieve a reduced chemical model for comprehensive prediction of ammonia/hydrogen/methane mixture...
Shock-tube data and chemical kinetics simulations have been used to optimize a combustion mechanism ...
Presently, most of the world's energy is produced by combustion. Combustion related emissions, such ...
Shock-tube data and chemical kinetics simulations have been used to optimize a combustion mechanism ...
Computational fluid dynamics (CFD) model has been widely applied in internal combustion (IC) engine ...
Shock-tube experiments and chemical kinetics modeling were Performed to further understand the ignit...
Shock-tube experiments and chemical kinetics modeling were performed to further understand the ignit...
Computational fluid dynamics of methane combustion using chemical kinetics for description of the ch...
Computational fluid dynamics (CFD) modeling of the complex processes that occur within the burner of...
Computational fluid dynamics (CFD) modeling of the complex processes that occur within the burner of...
Computational fluid dynamics modeling of the complex processes that occur within the burner of a gas...
Computational fluid dynamics modeling of the complex processes that occur within the burner of a gas...
Computational fluid dynamics modeling of the complex processes that occur within the burner of a gas...
Natural gas is the primary fuel for industrial gas turbines. Although natural gas is mostly methane,...
Methane is an important fuel for gas turbine and gas engine combustion, and the most common fuel in ...
To achieve a reduced chemical model for comprehensive prediction of ammonia/hydrogen/methane mixture...
Shock-tube data and chemical kinetics simulations have been used to optimize a combustion mechanism ...
Presently, most of the world's energy is produced by combustion. Combustion related emissions, such ...
Shock-tube data and chemical kinetics simulations have been used to optimize a combustion mechanism ...
Computational fluid dynamics (CFD) model has been widely applied in internal combustion (IC) engine ...
Shock-tube experiments and chemical kinetics modeling were Performed to further understand the ignit...
Shock-tube experiments and chemical kinetics modeling were performed to further understand the ignit...
Computational fluid dynamics of methane combustion using chemical kinetics for description of the ch...