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On intrinsic oscillation in radiation-affected diffusion flames
H. Y. Wang
,
C. K. Law
Mechanical & Aerospace Engineering
High Meadows Environmental Institute
Princeton Materials Institute
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Contribution to journal
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Conference article
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peer-review
5
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Keyphrases
Activation-energy Asymptotics
20%
Diffusion Flame
100%
Extinction Limit
20%
Flame Oscillation
100%
Intrinsic Oscillations
100%
Kinetic Limit
80%
Lewis number
40%
Linear Stability Analysis
20%
Near-limit Flames
20%
Oscillation Frequency
20%
Oscillatory Instability
20%
Parametric Dependence
20%
Planar Flames
20%
Radiation Effects
20%
Radiative Heat Loss
20%
Radiative Limit
80%
Radiative Loss
100%
Range Limits
20%
Stoichiometry
20%
Temperature Difference
20%
Thermal Diffusivity
20%
Mathematics
Asymptotics
33%
Heat Loss
33%
Intrinsic Property
100%
Linearized Stability
33%
Parametric
33%
Reactant
100%
Stability Analysis
33%
Thermal Diffusivity
33%
Physics
Activation Energy
50%
Diffusion
50%
Diffusion Flame
100%
Lewis Number
100%
Stoichiometry
50%
Chemistry
Chemical Kinetics Characteristics
100%
Diffusion Flame
100%
Lewis Number
50%
Reaction Activation Energy
25%
Reaction Stoichiometry
25%
Thermal Diffusivity
25%