Several reduced chemical kinetic mechanisms for combustion of ethylene and n-heptane have been generated using CARM (Computer Aided Reduction Method), a computer program that automates the mechanism-reduction process. The method uses a set of input test problems to rank species by the error introduced by assuming they are in quasi-steady state. The reduced mechanisms have been compared to detailed chemistry calculations in simple homogeneous reactors and experiments. Reduced mechanisms for combustion of ethylene having as few as 10 species were found to give reasonable agreement with detailed chemistry over a range of stoichiometries. Much better agreement with detailed chemistry was found for ethylene ignition delay when the reduced mechan...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
The chemical kinetics of hydrocarbon fuels determines the combustion characteristics and pollutant e...
A single detailed kinetic mechanism for the oxidation and combustion of n-decane and n-heptane has b...
Combustion process are used to improve modern society, but it comes with problems, like global warmi...
The combustion of hydrocarbon is a main energy resource for transportation. It is easy to start but ...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
Employing comprehensive chemical kinetics mechanisms in predictive models results in the high demand...
Reduced mechanisms for n-heptane combustion have been constructed using the novel ACR method, with t...
A new technique of reduction of detailed mechanisms for autoignition, which is based on two analysis...
Development of a new reduced chemical kinetic reaction mechanism for kerosene-air combustion is pres...
The present paper introduces an approach for the automatic development of reducedreactionmechanisms ...
The present paper introduces an approach for the automatic development of reducedreactionmechanisms ...
The detailed combustion mechanism can be coupled with the computational fluid dynamics (CFD) softwar...
A reduced chemical kinetic reaction mechanism that could be used in computational fluid dynamics (CF...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
The chemical kinetics of hydrocarbon fuels determines the combustion characteristics and pollutant e...
A single detailed kinetic mechanism for the oxidation and combustion of n-decane and n-heptane has b...
Combustion process are used to improve modern society, but it comes with problems, like global warmi...
The combustion of hydrocarbon is a main energy resource for transportation. It is easy to start but ...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
Employing comprehensive chemical kinetics mechanisms in predictive models results in the high demand...
Reduced mechanisms for n-heptane combustion have been constructed using the novel ACR method, with t...
A new technique of reduction of detailed mechanisms for autoignition, which is based on two analysis...
Development of a new reduced chemical kinetic reaction mechanism for kerosene-air combustion is pres...
The present paper introduces an approach for the automatic development of reducedreactionmechanisms ...
The present paper introduces an approach for the automatic development of reducedreactionmechanisms ...
The detailed combustion mechanism can be coupled with the computational fluid dynamics (CFD) softwar...
A reduced chemical kinetic reaction mechanism that could be used in computational fluid dynamics (CF...
In reacting flow simulations, detailed chemical kinetics for practical fuels is important for accura...
The chemical kinetics of hydrocarbon fuels determines the combustion characteristics and pollutant e...
A single detailed kinetic mechanism for the oxidation and combustion of n-decane and n-heptane has b...