A three-dimensional mathematical model has been developed for the simulation of flow, temperature and concentration fields in the radiation section of industrial scale steam cracking units. The model takes into account turbulence-chemistry interactions through the Eddy Dissipation Concept (EDC) model and makes use of Detailed Reaction Kinetics (DRK), which allows the detailed investigation of the flame structure. Furthermore, simulation results obtained with the EDC-DRK model are compared with simulation results obtained with a simplified model combining the Eddy Break Up (EBU)/finite rate formulation with Simplified Reaction Kinetics (SRK). When the EBU-SRK model is used, much faster fuel oxidation and products formation is predicted. The ...
A coupled furnace/reactor simulation was conducted to determine product yields and coking rates for ...
A coupled furnace/reactor simulation was conducted to determine product yields and coking rates for ...
In this thesis, two types of models used in the CFD modeling of practical combustion devices with a ...
Three fully coupled Computational Fluid Dynamics (CFD) simulations of a complete industrial steam cr...
Three fully coupled Computational Fluid Dynamics (CFD) simulations of a complete industrial steam cr...
Modeling finite-rate chemistry in turbulent reacting flows is challenging because of the large span ...
Using detailed kinetic models in computational fluid dynamics (CFD) simulations is extremely challen...
Using detailed kinetic models in computational fluid dynamics (CFD) simulations is extremely challen...
Modeling finite-rate chemistry in turbulent reacting flows is challenging because of the large span ...
Modeling finite-rate chemistry in turbulent reacting flows is challenging because of the large span ...
Nonuniform temperature fields in steam cracking furnaces caused by geometry factors such as burner p...
This paper presents calculations of a pulverized coal flame and a coal-fired utility boiler with adv...
This work evaluates the feasibility of biogas air-fuel combustion and natural gas oxy-fuel in steam ...
A coupled furnace/reactor simulation was conducted to determine product yields and coking rates for ...
This work evaluates the feasibility of biogas air-fuel combustion and natural gas oxy-fuel in steam ...
A coupled furnace/reactor simulation was conducted to determine product yields and coking rates for ...
A coupled furnace/reactor simulation was conducted to determine product yields and coking rates for ...
In this thesis, two types of models used in the CFD modeling of practical combustion devices with a ...
Three fully coupled Computational Fluid Dynamics (CFD) simulations of a complete industrial steam cr...
Three fully coupled Computational Fluid Dynamics (CFD) simulations of a complete industrial steam cr...
Modeling finite-rate chemistry in turbulent reacting flows is challenging because of the large span ...
Using detailed kinetic models in computational fluid dynamics (CFD) simulations is extremely challen...
Using detailed kinetic models in computational fluid dynamics (CFD) simulations is extremely challen...
Modeling finite-rate chemistry in turbulent reacting flows is challenging because of the large span ...
Modeling finite-rate chemistry in turbulent reacting flows is challenging because of the large span ...
Nonuniform temperature fields in steam cracking furnaces caused by geometry factors such as burner p...
This paper presents calculations of a pulverized coal flame and a coal-fired utility boiler with adv...
This work evaluates the feasibility of biogas air-fuel combustion and natural gas oxy-fuel in steam ...
A coupled furnace/reactor simulation was conducted to determine product yields and coking rates for ...
This work evaluates the feasibility of biogas air-fuel combustion and natural gas oxy-fuel in steam ...
A coupled furnace/reactor simulation was conducted to determine product yields and coking rates for ...
A coupled furnace/reactor simulation was conducted to determine product yields and coking rates for ...
In this thesis, two types of models used in the CFD modeling of practical combustion devices with a ...