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Three-phase CFD-model for trickle bed reactors
Elena Gorshkova
*
, Mikko Manninen
, Ville Alopaeus
, Helena Laavi
, Jukka Koskinen
*
Corresponding author for this work
Aalto University
Neste Engineering Solutions Oy
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
8
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Citations (Scopus)
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Keyphrases
CFD Model
100%
Trickle Bed Reactor
100%
Reactor
66%
Gas Phase
66%
Liquid Phase
66%
Porous Catalyst
66%
Catalyst Particle
66%
Local Variation
33%
Heat Transfer
33%
Ni-Al2O3
33%
Capillary
33%
Mass Transfer
33%
Condensation
33%
Gas Flow
33%
Liquid Flow
33%
Hydrodynamic Force
33%
Catalyst Bed
33%
Reactive Flow
33%
Hydrogenation
33%
Liquid Feed
33%
Fixed Bed
33%
Gasses
33%
Numerical Test
33%
Wetting Efficiency
33%
Trickle Bed
33%
Reaction Mass
33%
Fluent Software
33%
Dispersion Efficiency
33%
Porous Particles
33%
Convective Mass Transfer
33%
Octene
33%
Diffusion Mass Transfer
33%
INIS
reactors
100%
liquids
100%
particles
80%
gases
80%
catalysts
60%
porous materials
60%
mass transfer
40%
efficiency
20%
hydrogenation
20%
dispersions
20%
capillaries
20%
computer codes
20%
variations
20%
investigations
20%
heat transfer
20%
fluids
20%
drying
20%
hydrodynamics
20%
evaporation
20%
fixed beds
20%
octenes
20%
Engineering
Trickle Bed Reactor
100%
Computational Fluid Dynamics
100%
Porosity
100%
Gas-Phase
66%
Catalyst Particle
66%
Liquid Phase
66%
Convective
33%
Catalyst Bed
33%
Diffusive
33%
Fixed Bed
33%
Hydrodynamic Force
33%
Drying Bed
33%
Reaction Mass
33%
Hydrogenation
33%
Chemical Engineering
Trickle Bed Reactor
100%
Porous Catalyst
100%
Hydrogenation
50%
Trickle Bed
50%