A systematic approach for mechanism reduction was demonstrated to generate a skeletal and reduced mechanism for the oxidation of n-butane. First, a skeletal mechanism, including 89 species and 440 elementary reactions, was derived from a 230-species detailed mechanism using path flux analysis (PFA). Then, the unimportant reactions were eliminated using the importance index defined in computational singular perturbation (CSP), resulting in a skeletal mechanism consisting of 89 species and 298 elementary reactions. Finally, 20 global quasi-steady-state species were identified using a CSP-based time-scale analysis, leading to a 69-species reduced mechanism. Validation of the 89-species skeletal and 69-species reduced mechanisms showed good agr...
A new method for the reduction of chemical kinetic detailed mechanisms is presented. It is based on ...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
Emission of nitrogen oxides (NOx) is a major challenge for combustion of solid fuels. Strategies for...
A new skeletal mechanism of n-butane is developed for describing its ignition and combustion charact...
In this work, a skeletal kinetic mechanism is obtained for the Integrated Development on Engine Acti...
The combustion of hydrocarbon is a main energy resource for transportation. It is easy to start but ...
A reduced chemical kinetic reaction mechanism that could be used in computational fluid dynamics (CF...
Combustion process are used to improve modern society, but it comes with problems, like global warmi...
The use of simplifying techniques to obtain skeletal kinetic mechanisms with the required accuracy i...
We use a procedure based on the decomposition into fast and slow dynamical components offered by the...
When it comes to handling large hydrocarbon molecules and describing the pyrolysis and combustion be...
A methodology for deriving a reduced kinetic mechanism for alkane oxidation is described and applied...
Skeletal chemical kinetic mechanisms are presented for combustion analysis of a series of fuels of i...
A single detailed kinetic mechanism for the oxidation and combustion of n-decane and n-heptane has b...
We use a procedure based on the decomposition into fast and slow dynamical components offered by the...
A new method for the reduction of chemical kinetic detailed mechanisms is presented. It is based on ...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
Emission of nitrogen oxides (NOx) is a major challenge for combustion of solid fuels. Strategies for...
A new skeletal mechanism of n-butane is developed for describing its ignition and combustion charact...
In this work, a skeletal kinetic mechanism is obtained for the Integrated Development on Engine Acti...
The combustion of hydrocarbon is a main energy resource for transportation. It is easy to start but ...
A reduced chemical kinetic reaction mechanism that could be used in computational fluid dynamics (CF...
Combustion process are used to improve modern society, but it comes with problems, like global warmi...
The use of simplifying techniques to obtain skeletal kinetic mechanisms with the required accuracy i...
We use a procedure based on the decomposition into fast and slow dynamical components offered by the...
When it comes to handling large hydrocarbon molecules and describing the pyrolysis and combustion be...
A methodology for deriving a reduced kinetic mechanism for alkane oxidation is described and applied...
Skeletal chemical kinetic mechanisms are presented for combustion analysis of a series of fuels of i...
A single detailed kinetic mechanism for the oxidation and combustion of n-decane and n-heptane has b...
We use a procedure based on the decomposition into fast and slow dynamical components offered by the...
A new method for the reduction of chemical kinetic detailed mechanisms is presented. It is based on ...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
Emission of nitrogen oxides (NOx) is a major challenge for combustion of solid fuels. Strategies for...