Journal of Combustion · 2014 · 26 citations · 12 references
Numerical AnalysisLaminar FlameEngineeringCombustion ScienceConvergence BehaviorNumerical SimulationCombustion TheoryComputer EngineeringCombustion EngineeringSystems EngineeringBatch SimulationsModeling And SimulationTurbulent FlameCounterflow Flame SimulationsMultiphase FlowComputational MechanicsNonpremixed Counterflow FlamesPremixed Turbulent Flame
A method is presented to significantly improve the convergence behavior of batch nonpremixed counterflow flame simulations with finite-rate chemistry. The method is applicable to simulations with varying pressure or strain rate, as it is, for example, necessary for the creation of flamelet tables or the computation of the extinction point. The improvement is achieved by estimating the solution beforehand. The underlying scaling rules are derived from theory, literature, and empirical observations. The estimate is used as an initialization for the actual solver. This enhancement leads to a significantly improved robustness and acceleration of batch simulations. The extinction point can be simulated without cumbersome code extensions. The method is demonstrated on two test cases and the impact is discussed.
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An updated comprehensive kinetic model of hydrogen combustion
Juan Li, Zhenwei Zhao, Andrei F. Kazakov et al. · International Journal of Chemical Kinetics · 2004 · 1.2K citations
Hiroshi Tsuji · Progress in Energy and Combustion Science · 1982 · 379 citations