In this study, an 18-steps, 22-species reduced global mechanism for ozone-enhanced CH4/air combustion processes was derived by coupling GRI-Mech 3.0 and a sub-mechanism for ozone decomposition. Three methods, namely, direct relation graphics with error propagation, (DRGRP), sensitivity analysis (SA), and quasi-steady-state assumption (QSSA), were used to downsize the detailed mechanism to the global mechanism. The verification of the accuracy of the skeletal mechanism in predicting the laminar flame speeds and distribution of the critical components showed that that the major species and the laminar flame speeds are well predicted by the skeletal mechanism. However, the pollutant NO was predicated inaccurately due to the precursors for gene...
RACMand the three new mechanisms described in the companion paper (the extended, reduced and small m...
In this paper, the methodology of the directed relation graph with error propagation and sensitivity...
The effects of ozone addition on the ignition and flame propagation of premixed methane/air mixtures...
In this study, an 18-steps, 22-species reduced global mechanism for ozone-enhanced CH4/air combustio...
The systematical reduction of chemical reaction mechanisms is studied by using a first-order sensiti...
The systematical reduction of chemical reaction mechanisms is studied by using a first-order sensiti...
The systematical reduction of chemical reaction mechanisms is studied by using a first-order sensiti...
The systematical reduction of chemical reaction mechanisms is studied by using a first-order sensiti...
A new method for the reduction of chemical kinetic detailed mechanisms is presented. It is based on ...
A detailed α-pinene oxidation mechanism was reduced systematically through the successive applicatio...
An updated detailed kinetic mechanism for ozone combustion is developed. The contemporary choice of ...
In this paper, a minimal skeletal mechanism involving 20 species and 56 reactions was generated for ...
A new algorithm based on Computational Singular Perturbation (CSP) is proposed to construct globa...
To achieve a reduced chemical model for comprehensive prediction of ammonia/hydrogen/methane mixture...
Chemical mechanism reduction is common practice in combustion research for accelerating numerical s...
RACMand the three new mechanisms described in the companion paper (the extended, reduced and small m...
In this paper, the methodology of the directed relation graph with error propagation and sensitivity...
The effects of ozone addition on the ignition and flame propagation of premixed methane/air mixtures...
In this study, an 18-steps, 22-species reduced global mechanism for ozone-enhanced CH4/air combustio...
The systematical reduction of chemical reaction mechanisms is studied by using a first-order sensiti...
The systematical reduction of chemical reaction mechanisms is studied by using a first-order sensiti...
The systematical reduction of chemical reaction mechanisms is studied by using a first-order sensiti...
The systematical reduction of chemical reaction mechanisms is studied by using a first-order sensiti...
A new method for the reduction of chemical kinetic detailed mechanisms is presented. It is based on ...
A detailed α-pinene oxidation mechanism was reduced systematically through the successive applicatio...
An updated detailed kinetic mechanism for ozone combustion is developed. The contemporary choice of ...
In this paper, a minimal skeletal mechanism involving 20 species and 56 reactions was generated for ...
A new algorithm based on Computational Singular Perturbation (CSP) is proposed to construct globa...
To achieve a reduced chemical model for comprehensive prediction of ammonia/hydrogen/methane mixture...
Chemical mechanism reduction is common practice in combustion research for accelerating numerical s...
RACMand the three new mechanisms described in the companion paper (the extended, reduced and small m...
In this paper, the methodology of the directed relation graph with error propagation and sensitivity...
The effects of ozone addition on the ignition and flame propagation of premixed methane/air mixtures...