A methodology for deriving a reduced kinetic mechanism for alkane oxidation is described, inspired by n-heptane oxidation. The model is based on partitioning the species of the skeletal kinetic mechanism into lights, defined as those having a carbon number smaller than 3, and heavies, which are the complement of the species ensemble. For modeling purposes, the heavy species are mathematically decomposed into constituents, which are similar but not identical to groups in the group additivity theory. From analysis of the n-heptane LLNL skeletal mechanism in conjunction with CHEMKIN II, it is shown that a similarity variable can be formed such that the appropriately non-dimensionalized global constituent molar density exhibits a self-similar b...
A detailed chemical kinetic mechanism has been developed and used to study the oxidation of iso-octa...
A mechanism generator code to automatically generate mechanisms for the oxidation and combustion of ...
A model of steady, quasi one-dimensional premixed laminar jet flame developing unopposed into a unif...
A methodology for deriving a reduced kinetic mechanism for alkane oxidation is described, inspired b...
A methodology for deriving a reduced kinetic mechanism for alkane oxidation is described and applied...
The reduction of elementary or skeletal oxidation kinetics to a subgroup of tractable reactions for ...
A chemical kinetics reduction model is proposed for alkane oxidation in air that is baaed on a paral...
A previously described methodology for deriving a reduced kinetic mechanism for alkane oxidation and...
A model of local and full or partial self similarity is developed for situations in which a phenomen...
A simplified model is proposed for the kinetics of alkane oxidation in air, based on a decomposition...
This paper presents a semi-detailed kinetic scheme for n-heptane oxidation. Both the low and high te...
When it comes to handling large hydrocarbon molecules and describing the pyrolysis and combustion be...
The aim of this work is to generate a detailed mechanism for the oxidation of a mixture of n-heptane...
Alkanes are key components in gasoline, jet and diesel fuels and considerably influence the combusti...
The low- and high-temperature oxidation mechanisms of n-heptane have been extensively studied in rec...
A detailed chemical kinetic mechanism has been developed and used to study the oxidation of iso-octa...
A mechanism generator code to automatically generate mechanisms for the oxidation and combustion of ...
A model of steady, quasi one-dimensional premixed laminar jet flame developing unopposed into a unif...
A methodology for deriving a reduced kinetic mechanism for alkane oxidation is described, inspired b...
A methodology for deriving a reduced kinetic mechanism for alkane oxidation is described and applied...
The reduction of elementary or skeletal oxidation kinetics to a subgroup of tractable reactions for ...
A chemical kinetics reduction model is proposed for alkane oxidation in air that is baaed on a paral...
A previously described methodology for deriving a reduced kinetic mechanism for alkane oxidation and...
A model of local and full or partial self similarity is developed for situations in which a phenomen...
A simplified model is proposed for the kinetics of alkane oxidation in air, based on a decomposition...
This paper presents a semi-detailed kinetic scheme for n-heptane oxidation. Both the low and high te...
When it comes to handling large hydrocarbon molecules and describing the pyrolysis and combustion be...
The aim of this work is to generate a detailed mechanism for the oxidation of a mixture of n-heptane...
Alkanes are key components in gasoline, jet and diesel fuels and considerably influence the combusti...
The low- and high-temperature oxidation mechanisms of n-heptane have been extensively studied in rec...
A detailed chemical kinetic mechanism has been developed and used to study the oxidation of iso-octa...
A mechanism generator code to automatically generate mechanisms for the oxidation and combustion of ...
A model of steady, quasi one-dimensional premixed laminar jet flame developing unopposed into a unif...