Local and global uncertainty analyses of a flat, premixed, stationary, laminar methane flame model were carried out using the Leeds methane oxidation mechanism at lean (� ) 0.70), stoichiometric (� ) 1.00), and rich (� ) 1.20) equivalence ratios. Uncertainties of laminar flame velocity, maximal flame temperature, and maximal concentrations of radicals H, O, OH, CH, and CH2 were investigated. Global uncertainty analysis methods included the Morris method, the Monte Carlo analysis with Latin hypercube sampling, and an improved version of the Sobol’ method. Assumed probability density functions (pdf’s) were assigned to the rate coefficients of all the 175 reactions and to the enthalpies of formation of the 37 species. The ana...
Statistical rate theory calculations, in particular formulations of the chemical master equation, ar...
Detailed reaction models such as detailed soot models, describing complex phenomena in combustion ar...
Four alternative ways to describe methane oxidation that all can be used in computational fluid dyna...
Local and global uncertainty analyses of a flat, premixed, stationary, laminar methane flame model w...
Uncertainty analysis was used to back the development of H2/air and wet CO/air combustion mechanisms...
A global uncertainty analysis is performed for three current mechanisms describing the low-temperatu...
ABSTRACT: Local and Monte Carlo uncertainty analyses of NO production during methane combustion were...
International audienceSimplified chemistry models are commonly used in reactive computational fluid ...
A spectral formalism has been developed for the “non-intrusive ” analysis of parametric uncertainty ...
Detailed chemical kinetic investigations on dimethylether oxidation in one-dimensional premixed flat...
Complex-chemistry direct numerical simulation (DNS) data obtained from lean methane-air turbulent fl...
Laminar flame speed measurements were carried for mixture of air with eight C3-4 hydrocarbons (prope...
This work concerns the uncertainties arising from the derivation of global chemistry models and thei...
A detailed reaction mechanism for methanol combustion that is capable of describing ignition, flame ...
The present work investigates the accuracy of laminar flame speeds measured from outwardly propagati...
Statistical rate theory calculations, in particular formulations of the chemical master equation, ar...
Detailed reaction models such as detailed soot models, describing complex phenomena in combustion ar...
Four alternative ways to describe methane oxidation that all can be used in computational fluid dyna...
Local and global uncertainty analyses of a flat, premixed, stationary, laminar methane flame model w...
Uncertainty analysis was used to back the development of H2/air and wet CO/air combustion mechanisms...
A global uncertainty analysis is performed for three current mechanisms describing the low-temperatu...
ABSTRACT: Local and Monte Carlo uncertainty analyses of NO production during methane combustion were...
International audienceSimplified chemistry models are commonly used in reactive computational fluid ...
A spectral formalism has been developed for the “non-intrusive ” analysis of parametric uncertainty ...
Detailed chemical kinetic investigations on dimethylether oxidation in one-dimensional premixed flat...
Complex-chemistry direct numerical simulation (DNS) data obtained from lean methane-air turbulent fl...
Laminar flame speed measurements were carried for mixture of air with eight C3-4 hydrocarbons (prope...
This work concerns the uncertainties arising from the derivation of global chemistry models and thei...
A detailed reaction mechanism for methanol combustion that is capable of describing ignition, flame ...
The present work investigates the accuracy of laminar flame speeds measured from outwardly propagati...
Statistical rate theory calculations, in particular formulations of the chemical master equation, ar...
Detailed reaction models such as detailed soot models, describing complex phenomena in combustion ar...
Four alternative ways to describe methane oxidation that all can be used in computational fluid dyna...