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Modeling of unsteady two-phase reactive flow in porous beds of propellant
Sadanand S. Gokhale
,
Herman Krier
Mechanical Science and Engineering
Research output
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Contribution to journal
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Review article
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peer-review
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Dive into the research topics of 'Modeling of unsteady two-phase reactive flow in porous beds of propellant'. Together they form a unique fingerprint.
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Keyphrases
Deflagration
100%
Propellant
100%
Porous Bed
100%
Two-phase Reactive Flow
100%
Governing Equation
50%
Constitutive Law
50%
Solid Propellant
50%
Numerical Methods
50%
Granular Bed
50%
High Mass Loading
50%
Finite Difference Method
50%
Gas-solid Mixture
50%
Pressure Front
50%
Unsteady Flow
50%
Modeling Effort
50%
Combustion Process
50%
Shock Capturing
50%
Separated Flows
50%
Hyperbolic Partial Differential Equations
50%
Flow Process
50%
Deflagration-to-detonation Transition
50%
Convective Mode
50%
Nonlinear Coupled
50%
Reactive Two-phase Flow
50%
Engineering
Deflagration
100%
Porous Bed
100%
Transients
33%
Energetics
33%
Convective
33%
Numerical Methods
33%
Granular Bed
33%
Final Stage
33%
Two-Phase Flow
33%
Unsteady Flow
33%
Separated Flow
33%
Transition to Detonation
33%
Partial Differential Equation
33%
Chemical Engineering
Deflagration
100%
Transition to Detonation
33%