Methane is an important fuel for gas turbine and gas engine combustion, and the most common fuel in fundamental combustion studies. As Computational Fluid Dynamics (CFD) modeling of combustion becomes increasingly important, so do chemical kinetic mechanisms for methane combustion. Kinetic mechanisms of different complexity exist, and the aim of this study is to review commonly used detailed, reduced, and global mechanisms of importance for CFD of methane combustion. In this review, procedures of relevance to model development are outlined. Simulations of zero and one-dimensional configurations have been performed over a wide range of conditions, including addition of H2, CO2 and H2O, and the results are used in a final recommendation about...
Micro-combustors operating with oxygen-enriched combustion of hydrocarbon fuels promise exceptionall...
Reduced mechanisms are needed for use with computational fluid dynamic codes (CFD) utilized in the d...
AbstractIn this work, we have developed a chemical kinetic modeling of methane combustion using a de...
Methane, which has properties intermediate between hydrogen and kerosene, is a fuel of several devel...
Methane, which has properties intermediate between hydrogen and kerosene, is a fuel of several devel...
Methane, which has properties intermediate between hydrogen and kerosene, is a fuel of several devel...
Computational fluid dynamics of methane combustion using chemical kinetics for description of the ch...
Computational fluid dynamics of methane combustion using chemical kinetics for description of the ch...
A reduced chemical kinetic reaction mechanism that could be used in computational fluid dynamics (CF...
A reduced chemical kinetic reaction mechanism that could be used in computational fluid dynamics (CF...
The aim of this study is to eliminate unimportant steps from a detailed chemical-kinetic mechanism i...
The aim of this study is to eliminate unimportant steps from a detailed chemical-kinetic mechanism i...
Four alternative ways to describe methane oxidation that all can be used in computational fluid dyna...
There has been some recent work on the global kineticmodeling of flames in oxy-fuel combustion for m...
Micro-combustors operating with oxygen-enriched combustion of hydrocarbon fuels promise exceptionall...
Micro-combustors operating with oxygen-enriched combustion of hydrocarbon fuels promise exceptionall...
Reduced mechanisms are needed for use with computational fluid dynamic codes (CFD) utilized in the d...
AbstractIn this work, we have developed a chemical kinetic modeling of methane combustion using a de...
Methane, which has properties intermediate between hydrogen and kerosene, is a fuel of several devel...
Methane, which has properties intermediate between hydrogen and kerosene, is a fuel of several devel...
Methane, which has properties intermediate between hydrogen and kerosene, is a fuel of several devel...
Computational fluid dynamics of methane combustion using chemical kinetics for description of the ch...
Computational fluid dynamics of methane combustion using chemical kinetics for description of the ch...
A reduced chemical kinetic reaction mechanism that could be used in computational fluid dynamics (CF...
A reduced chemical kinetic reaction mechanism that could be used in computational fluid dynamics (CF...
The aim of this study is to eliminate unimportant steps from a detailed chemical-kinetic mechanism i...
The aim of this study is to eliminate unimportant steps from a detailed chemical-kinetic mechanism i...
Four alternative ways to describe methane oxidation that all can be used in computational fluid dyna...
There has been some recent work on the global kineticmodeling of flames in oxy-fuel combustion for m...
Micro-combustors operating with oxygen-enriched combustion of hydrocarbon fuels promise exceptionall...
Micro-combustors operating with oxygen-enriched combustion of hydrocarbon fuels promise exceptionall...
Reduced mechanisms are needed for use with computational fluid dynamic codes (CFD) utilized in the d...
AbstractIn this work, we have developed a chemical kinetic modeling of methane combustion using a de...