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Low-frequency two-dimensional linear instability of plane detonation
Mark Short,
D. Scott Stewart
Mechanical Science and Engineering
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Keyphrases
Acoustic Disturbance
12%
Acoustic Waves
12%
Activation Energy
37%
Analytical Description
12%
Arrhenius Kinetics
12%
Chapman-Jouguet Detonation
12%
Chapman-Jouguet Velocity
12%
Compatibility Conditions
12%
Detonation
100%
Detonation Velocity
12%
Detonation Wave
100%
Dimensional Stability
12%
Dispersion Relation
50%
Disturbed Behaviour
12%
Energy Conservation
12%
Entropy Waves
12%
Equilibrium Zone
12%
Finite Wavenumber
12%
Fire Front
12%
Fire Zone
25%
Growth Rate
25%
High Activation Energy
12%
Induction Zone
12%
Jump Conditions
12%
Large Activation Energy
12%
Linear Disturbance
12%
Linear Instability
100%
Linear Stability
25%
Low-frequency Disturbance
12%
Maximum Growth Rate
12%
Monotonic Increase
12%
Newtonian Limit
25%
Numerical Solution
12%
Physical Mechanism
12%
Piston
12%
Rate Decay
12%
Reaction Chemistry
12%
Specific Heat Ratio
12%
Stability Problem
12%
Steady State
12%
Two Dimensional
100%
Wave number
37%
Wave Propagation
12%
Wave Traveling
12%
Engineering
Activation Energy
62%
Arrhenius
12%
Detonation Wave
100%
Dimensional Disturbance
37%
Dimensional Stability
12%
Dispersion Relation
50%
Imposition
12%
Jump Condition
12%
Linearized Stability
25%
Newtonian Limit
25%
Normal Modes
12%
Numerical Solution
12%
One Dimensional
37%
One Step
12%
Oscillatory
12%
Two Dimensional
100%