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Numerical methods in laminar flame propagation

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InhaltsverzeichnisDiscussion of Test Problem A.Activation-Energy Asymptotics of the Plane Premixed Flame.Theoretical Implications of Nonequal Diffusivities of Heat and Matter on the Stability of a Plane Premixed Flame.The Effect of Lewis Number Greater than One on an Unsteady Propagating Flame with One-step Chemistry.Discussion of Test Problem B.On the Use of Adaptive Grids in Numerically Calculating Adiabatic Flame Speeds.Results of a Study of Several Trans port Algorithms for Premixed, Laminar Steady-State Flames.Influence of Transport Models and Boundary Conditions on Flame Structure.Numerical Solution of Burner-Stabilized Premixed Laminar Flames by an Efficient Boundary Value Method.Toward the Formulation of a Global Local Equilibrium Kinetics Model for Laminar Hydrocarbon Flames.Time-Dependent Simulation of Flames in Hydrogen-Oxygen-Nitrogen Mixtures.Mechanism of Flame Propagation in Hydrogen-Air and Methane-Air Systems.Flames near Rich Flammability Limits, with Particular Reference to the Hydrogen-Air and Similar Systems.Experimental Investigation of Internal Combustion of Various Fuels.

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Numerical methods in laminar flame propagation, Norbert Peters

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1982
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