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Nonsteady burning phenomena of solid propellants - theory and experiments
H. Krier
, J. S. T’ien
, W. A. Sirignano
, M. Summerfield
Research output
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Contribution to journal
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Article
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peer-review
Overview
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Dive into the research topics of 'Nonsteady burning phenomena of solid propellants - theory and experiments'. Together they form a unique fingerprint.
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Engineering
One Dimensional
100%
Isothermal
100%
Nonlinear Effect
100%
Ignition
100%
State Solution
100%
Dimensional Model
100%
Observables
100%
Dynamic Condition
100%
Digital Computer
100%
Pressurization
100%
Burning Rate
100%
Flame Temperature
100%
Isentropic
100%
Combustor
100%
Depressurization
100%
Combustion Zone
100%
Burnt Gas
100%
Combustion Chamber
100%
Keyphrases
Solid Propellant
100%
Non-steady
100%
Pressure Variation
66%
Gasses
66%
Ignition
33%
Oscillation
33%
Nonlinear Effects
33%
Solid Phase
33%
One-dimensional Model
33%
Digital Computers
33%
Steady-state Solution
33%
Propellant
33%
Pressure Oscillation
33%
Pressurization
33%
Flame Temperature
33%
Combustion Chamber
33%
Isentropic
33%
Steady Burning
33%
Combustor
33%
Flame Burns
33%
Depressurization
33%
Dynamic Burning Rate
33%
Burning Characteristics
33%
Combustion Instability
33%
Heat Evolution
33%
Flame Behavior
33%
Transient Burning
33%
Oscillating Combustion
33%
Fourier Equation
33%
Near-isothermal
33%
Combustion Zone
33%
Physics
Solid Propellant
100%
Entropy
100%
Steady State
50%
Nonlinear Effect
50%
Combustion Chamber
50%
Flame Temperature
50%
Combustion Stability
50%
Burning Rate
50%
Pressure Oscillation
50%