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Unsteady combustion of solid propellants: Simplified kinetics modeling
M. Q. Brewster
Mechanical Science and Engineering
Research output
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peer-review
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Dive into the research topics of 'Unsteady combustion of solid propellants: Simplified kinetics modeling'. Together they form a unique fingerprint.
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Keyphrases
Kinetic Model
100%
Solid Propellant
100%
Simplified Kinetics
100%
Unsteady Combustion
100%
Quasi-steady
75%
Peak Response
50%
Propellant
50%
University Research
50%
Burning Rate
50%
Composite Propellant
50%
Solid Propellant Combustion
50%
Multidisciplinary University
50%
Non-dimensional Frequency
50%
Condensed Phase
25%
Predictive Ability
25%
Energetic Materials
25%
High Spectral Resolution
25%
Macroscopic Behavior
25%
Solid Phase
25%
Frequency Response Function
25%
Generic Features
25%
Lack of Understanding
25%
Computational Simulation
25%
Thermal Relaxation
25%
Steady-state Conditions
25%
De Facto Standard
25%
Relaxation Response
25%
Rate Sensitivity
25%
Combustion Model
25%
Phase Decomposition
25%
Steady Burning
25%
Pressure Response
25%
Quasi-steady-state Approximation
25%
Modeling Approximation
25%
T-burner
25%
Reasonable Expectations
25%
Coupling Frequency
25%
Combustion Instability
25%
Engineering
Mols
100%
Burning Rate
100%
Review Article
50%
Thermal Relaxation
50%
Energetics
50%
Reactant
50%
Review Paper
50%
High Spectral Resolution
50%
Macroscopic Behavior
50%
Initial Temperature
50%
Measuring Pressure
50%
Predictive Capability
50%
Rate Sensitivity
50%
Pressure Response
50%
Frequency Response Function
50%