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Non-Darcian behavior of pyrolysis gas in a thermal protection system
Alexandre Martin
, Iain D. Boyd
Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
53
Scopus citations
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Dive into the research topics of 'Non-Darcian behavior of pyrolysis gas in a thermal protection system'. Together they form a unique fingerprint.
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Engineering
Ablation
33%
Ablation Rate
33%
Darcy's Law
33%
Energy Engineering
33%
Ergun Equation
33%
Forchheimer Law
66%
Heat Rate
33%
Kinetic
33%
Macroscopic Quantity
33%
Material Response
33%
Models
100%
Parametric Study
33%
Phenolics
33%
Porous Medium
33%
Pyrolysis
33%
Pyrolysis Gas
100%
Surfaces
33%
System Protection
100%
Thermal Protection
100%
Trajectories
33%
Physics
Ablation
50%
Darcy Law
25%
Gaseous State
100%
Heat
25%
Independent Variables
25%
Media
25%
Model
75%
Parameter
25%
Porosity
25%
Protection System
100%
Reentry Trajectories
25%
Reentry Vehicle
25%
Responses
25%
Computer Science
Inertial Parameter
33%
Kinetic Energy
33%
Macroscopic Quantity
33%
Modeling
33%
Models
100%
Protection
100%