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The structure of premixed methane-air flames with large activation energy
J. K. Bechtold
,
C. K. Law
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peer-review
10
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Dive into the research topics of 'The structure of premixed methane-air flames with large activation energy'. Together they form a unique fingerprint.
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Keyphrases
Fuel Consumption
100%
Large Activation Energy
100%
Burning Rate
100%
Premixed Methane/air Flame
100%
Eigenvalues
50%
Premixed
50%
Flame Structure
50%
Reaction Rate
50%
Nonlinear Reaction
50%
Large Activation Energy Asymptotics
50%
Temperature Profile
50%
Activation Energy
50%
Equivalence Ratio
50%
Chain Mechanism
50%
Termination Reaction
50%
Small Perturbation
50%
Methane-air Flame
50%
Rate Ratio
50%
Steady-state Equilibrium
50%
Equilibrium Assumption
50%
Partial Equilibrium
50%
Four-step
50%
Asymptotic Study
50%
Intermediate Reactions
50%
Ratio Analysis
50%
Burning Regime
50%
Perturbation Parameter
50%
Reduction Kinetics
50%
Structured Problems
50%
Species Profile
50%
Parametric Dependence
50%
Branching Reaction
50%
Engineering
Activation Energy
100%
Methane
100%
Burning Rate
66%
Limiting Case
33%
Starting Point
33%
Eigenvalue
33%
Equivalence Ratio
33%
Experimental Observation
33%
Chain Mechanism
33%
Termination Reaction
33%
Branching Reaction
33%
Reaction Analysis
33%
Mathematics
Asymptotics
100%
Parametric
50%
Eigenvalue
50%
Starting Point
50%
Limiting Case
50%
Stoichiometric
50%
Term Rate
50%
Ratio Analysis
50%
Chemistry
Reaction Activation Energy
100%
Methane
100%
Reaction Intermediate
33%
Reduced Reaction Mechanisms
33%
Chemical Engineering
Methane
100%
Reaction Analysis
33%