Simplification of chemical kinetics description through dimensional reduction is particularly important to achieve an accurate numerical treatment of complex reacting systems, especially when stiff kinetics are considered and a comprehensive picture of the evolving system is required. To this aim several tools have been proposed in the past decades, such as sensitivity analysis, lumping approaches, and exploitation of time scales separation. In addition, there are methods based on the existence of the so-called slow manifolds, which are hyper-surfaces of lower dimension than the one of the whole phase-space and in whose neighborhood the slow evolution occurs after an initial fast transient. On the other hand, all tools contain to some ext...
The paper has two goals: (1) It presents basic ideas, notions, and methods for reduction of reaction...
By bringing together various ideas and methods for extracting the slow manifolds the authors show th...
In dissipative ordinary differential equation systems different time scales cause anisotropic phase ...
Simplification of chemical kinetics description through dimensional reduction is particularly import...
In the preceding paper of this series (Part I, P. Nicolini and D. Frezzato, J. Chem. Phys. 138, 2341...
In the preceding paper of this series (Part I [P. Nicolini and D. Frezzato, J. Chem. Phys. 138, 2341...
In the preceding paper of this series (Part I [P. Nicolini and D. Frezzato, J. Chem. Phys. 138, 2341...
Much of the effort in the modern chemical and physical sciences is devoted to the study of complex d...
Much of the effort in the modern chemical and physical sciences is devoted to the study of complex d...
Chemical reaction systems, including those in combustion, often exhibit a large range of time-scales...
Recasting the rate equations of mass-action chemical kinetics into universal formats s a potentially...
In dissipative ordinary differential equation systems different time scales cause anisotropic phase ...
In this work, we deal with general reactive systems involving N species and M elementary reactions ...
Many common kinetic model reduction approaches are explicitly based on inherent multiple time scales...
Abstract. Chemical kinetic models in terms of ordinary differential equations correspond to finite d...
The paper has two goals: (1) It presents basic ideas, notions, and methods for reduction of reaction...
By bringing together various ideas and methods for extracting the slow manifolds the authors show th...
In dissipative ordinary differential equation systems different time scales cause anisotropic phase ...
Simplification of chemical kinetics description through dimensional reduction is particularly import...
In the preceding paper of this series (Part I, P. Nicolini and D. Frezzato, J. Chem. Phys. 138, 2341...
In the preceding paper of this series (Part I [P. Nicolini and D. Frezzato, J. Chem. Phys. 138, 2341...
In the preceding paper of this series (Part I [P. Nicolini and D. Frezzato, J. Chem. Phys. 138, 2341...
Much of the effort in the modern chemical and physical sciences is devoted to the study of complex d...
Much of the effort in the modern chemical and physical sciences is devoted to the study of complex d...
Chemical reaction systems, including those in combustion, often exhibit a large range of time-scales...
Recasting the rate equations of mass-action chemical kinetics into universal formats s a potentially...
In dissipative ordinary differential equation systems different time scales cause anisotropic phase ...
In this work, we deal with general reactive systems involving N species and M elementary reactions ...
Many common kinetic model reduction approaches are explicitly based on inherent multiple time scales...
Abstract. Chemical kinetic models in terms of ordinary differential equations correspond to finite d...
The paper has two goals: (1) It presents basic ideas, notions, and methods for reduction of reaction...
By bringing together various ideas and methods for extracting the slow manifolds the authors show th...
In dissipative ordinary differential equation systems different time scales cause anisotropic phase ...