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Simulation of the Steckler room fire experiment by using SOFIE CFD-model
Jouni Björkman
, Olavi Keski-Rahkonen
VTT Technical Research Centre of Finland
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Keyphrases
All-solution-processed
50%
Buoyancy
50%
Calculation Grid Size
50%
CFD Model
100%
Combustion Model
100%
Computer Fluid Dynamics
50%
Cross-flow
50%
Dynamic Base
50%
Fire Experiment
100%
Fire Simulation
50%
Flow Temperature
50%
Flow Velocity
50%
Grid Density
50%
Grid Type
100%
Home Fire
100%
K-ε Turbulence Model
50%
Model Simulation
50%
PHOENICS
100%
Pressure Boundary
100%
Radiation Model
100%
Simulation Model
50%
Static Pressure
50%
Unsymmetry
50%
Virtual Wall
50%
Engineering
Centerline Plane
50%
Computational Fluid Dynamics
100%
Converged Solution
50%
Experimental Result
100%
Flow Velocity
50%
Fluid Dynamics
50%
Magnussen
50%
Original Size
50%
Simulation Model
50%
Simulation Result
100%
Static Pressure
50%
INIS
buoyancy
8%
combustion
16%
comparative evaluations
8%
computers
8%
coordinates
8%
density
8%
dimensions
8%
dynamics
8%
experimental data
8%
fires
100%
fluid mechanics
8%
grids
41%
radiations
16%
simulation
100%
size
8%
solutions
16%
symmetry
8%
turbulence
8%
velocity
8%
walls
16%
Material Science
Computational Fluid Dynamics
100%
Density
50%
Fluid Dynamics
50%