An adaptive approach for coupling detailed kinetics with computational fluid dynamics (CFD) has been formulated to permit reactive flow simulations with improved computational efficiency. The approach makes use of a set of reduced mechanisms, each of which has been developed to reproduce the mixture kinetics under well-characterized thermo-chemical conditions. In the present implementation, the KIVA-3V code is used as the CFD framework, and CHEMKIN is used to formulate the detailed kinetics that arise in the source terms of the energy and species transport equations. An efficient two-stage mechanism reduction methodology was developed that combines elemental flux analysis and the Mixed Integer Nonlinear Programming method. A high-dimensiona...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Despite the onset of peta-scale computing, simulations of reacting flows with detailed chemistry is ...
This paper presents several advanced solution strategies for overcoming the CPU time barrier associa...
The main objective of this research is to develop a kinetic model reduction framework that enables i...
We discuss recent developments in the application of high-order adaptive mesh refinement constructio...
Talk given in the Department of Mechanical Engineering seminar series at the University of Connectic...
A dynamic adaptive chemistry(DAC) is developed based on the path flux analysis(PFA) model reduction ...
In this paper, an automatic method for reducing chemical mechanisms during run time based on the qua...
International audienceThe study of combustion requires the description of the thermochemistry of ele...
In this paper, an automatic method for reducing chemical mechanisms during run time based on the qua...
In this paper, an automatic method for reducing chemical mechanisms during run time based on the qua...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Despite the onset of peta-scale computing, simulations of reacting flows with detailed chemistry is ...
This paper presents several advanced solution strategies for overcoming the CPU time barrier associa...
The main objective of this research is to develop a kinetic model reduction framework that enables i...
We discuss recent developments in the application of high-order adaptive mesh refinement constructio...
Talk given in the Department of Mechanical Engineering seminar series at the University of Connectic...
A dynamic adaptive chemistry(DAC) is developed based on the path flux analysis(PFA) model reduction ...
In this paper, an automatic method for reducing chemical mechanisms during run time based on the qua...
International audienceThe study of combustion requires the description of the thermochemistry of ele...
In this paper, an automatic method for reducing chemical mechanisms during run time based on the qua...
In this paper, an automatic method for reducing chemical mechanisms during run time based on the qua...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...
Realistic numerical simulations of pyrolysis and combustion require not only accurate modeling of fl...