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Pressure rise in confined gas explosions
Risto Lautkaski
VTT Technical Research Centre of Finland
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INIS
approximations
100%
hydrogen
100%
gases
100%
explosions
100%
values
66%
overpressure
66%
energy conservation
66%
expansion
33%
concentration
33%
water vapor
33%
equations
33%
combustion
33%
air
33%
velocity
33%
oxygen
33%
humidity
33%
time dependence
33%
dissociation
33%
flames
33%
pressure dependence
33%
Keyphrases
Pressure Rise
100%
Gas Explosion
100%
Confined Gas
100%
Energy Conservation
66%
Overpressure
66%
Pressure Ratio
66%
Combustion
33%
Humid Air
33%
Humidity
33%
Dry Air
33%
Algebraic Equation
33%
Water Vapor
33%
Gasses
33%
Expansion Factor
33%
Burning Velocity
33%
Pressure Dependence
33%
Pressure Front
33%
Water Dissociation
33%
Flame Front
33%
Adiabatic System
33%
Engineering
Pressure Rise
100%
Gaseous Explosion
100%
Isothermal
66%
Pressure Ratio
66%
Function of Time
33%
Algebraic Equation
33%
Constant Temperature
33%
Dry Air
33%
Flame Front
33%
Expansion Factor
33%
Earliest Time
33%
Humid Air
33%
Relative Humidity
33%
Burned Gas
33%
Earth and Planetary Sciences
Gas Explosion
100%
Relative Humidity
50%
Pressure Dependence
50%
Chemical Engineering
Gaseous Explosion
100%