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Buoyancy Effect on Downward Flame Spread Over PMMA Cylinders
Maria Thomsen
, Carlos Fernandez-Pello
, Xinyan Huang
, Sandra Olson
, Paul Ferkul
Faculty of Engineering and Science
Research output
:
Contribution to journal
›
Article
›
peer-review
19
Scopus citations
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Keyphrases
Poly(methyl methacrylate)
100%
Ambient Pressure
100%
Oxygen Concentration
100%
Microgravity Data
100%
Buoyancy Effect
100%
Normal Gravity
100%
Gravity Data
100%
Low Pressure
100%
Fire Safety
66%
Flame Spread
66%
Modified Gravity
66%
Space Facilities
66%
Pressure Effect
33%
Flow Velocity
33%
Cylindrical Sample
33%
Forced Flow
33%
Burning Behavior
33%
Safety Applications
33%
Spreading Process
33%
Material Flammability
33%
Microgravity
33%
Flame Spread Rate
33%
Low-speed Flow
33%
Gravity Level
33%
Buoyancy
33%
Low Gravity
33%
International Space Station
33%
INIS
gravitation
100%
cylinders
100%
methacrylates
100%
flames
100%
buoyancy
100%
data
75%
environment
37%
concentration
37%
oxygen
37%
low pressure
37%
comparative evaluations
25%
space
25%
fires
25%
safety
25%
space vehicles
25%
levels
12%
applications
12%
testing
12%
information
12%
correlations
12%
design
12%
reduction
12%
velocity
12%
heat
12%
flow rate
12%
convection
12%
flammability
12%
slowdown
12%
Earth and Planetary Sciences
Microgravity
100%
Combustibility
14%
Spacecraft
14%
Spacecraft Environment
14%
Flow Velocity
14%
Space Station
14%
Engineering
Space Station
33%