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Experimental and numerical study of pseudo-2D circulating fluidized beds
Adam Klimanek
*
, Wojciech Adamczyk
,
Sirpa Kallio
, Pawel Kozolub
, Gabriel Wecel
, Andrzej Szlek
*
Corresponding author for this work
Silesian University of Technology
Amec Foster Wheeler, Poland
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
14
Citations (Scopus)
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Keyphrases
Circulating Fluidized Bed
100%
Numerical Simulation
100%
Riser
100%
Pseudo-2D
100%
Granular Temperature
66%
Particle Size Distribution
33%
Air Flow Rate
33%
2D Model
33%
3D Geometry
33%
Near-wall
33%
Sensitivity Study
33%
Euler-Euler Approach
33%
Temperature Equation
33%
Dilute Phase
33%
Solid Distribution
33%
2D Simulation
33%
3D Simulation
33%
Pressure Distribution
33%
Partial Differential Equations
33%
Turbulent Fluidization
33%
Mesh Size
33%
Particle Type
33%
Flow Variables
33%
Solid-solid
33%
Mean Pressure
33%
Algebraic Equation
33%
Diameter Size
33%
Mesh Sensitivity
33%
Real-time 3D
33%
Additional Measurement
33%
Difference in Mean
33%
Solids Velocity
33%
Solid Volume Fraction
33%
INIS
distribution
100%
circulating fluidized beds
100%
solids
100%
computerized simulation
100%
numerical analysis
100%
simulation
66%
comparative evaluations
66%
equations
66%
walls
66%
geometry
33%
size
33%
particle size
33%
experimental data
33%
sensitivity
33%
transport
33%
volume
33%
particles
33%
prediction
33%
velocity
33%
air flow
33%
investigations
33%
fluidization
33%
sensitivity analysis
33%
partial differential equations
33%
Engineering
Circulating Fluidized Bed
100%
Simulation Result
100%
Numerical Study
100%
Airflow Rate
50%
Experimental Investigation
50%
Fluidization
50%
Sensitivity Study
50%
Flow Variable
50%
Dilute Phase
50%
Temperature Equation
50%
Algebraic Equation
50%
3d Simulation
50%
Mesh Size
50%
Pressure Distribution
50%
Partial Differential Equation
50%
Particle Size Analysis
50%
Chemical Engineering
Fluidized Bed
100%
Turbulent Fluidization
100%