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An assessment of steady-state scale-up for small-scale geological models
G. E. Pickup,
K. D. Stephen
Institute for GeoEnergy Engineering
School of Energy, Geoscience, Infrastructure and Society
Research output
:
Contribution to journal
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Article
›
peer-review
63
Citations (Scopus)
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Earth and Planetary Sciences
Steady State
100%
Flow Velocity
44%
Model
33%
Simulation
33%
Region
22%
Permeability
22%
Ratio
22%
Trapping
22%
Heterogeneity
11%
Scale Model
11%
Oil
11%
Water
11%
Assessment
11%
Calculation
11%
Accuracy
11%
Show
11%
Block
11%
Rate
11%
Physics
Steady State
100%
Flow Velocity
44%
Model
33%
Simulation
33%
Region
22%
Ratios
22%
Heterogeneity
11%
Sedimentary Structure
11%
Scale Model
11%
Water
11%
Calculation
11%
Assessments
11%
Engineering
Flow Rate
44%
Models
33%
Simulation
33%
Small Scale
33%
Low Permeability
33%
Fine Scale
22%
Scale Model
11%
Relative Permeability
11%
Dynamic Method
11%
Oil Relative Permeability
11%
Flood Front
11%
Bed Boundary
11%
Oil
11%
Water
11%
Accuracy
11%
Large Distance
11%
Flow Level
11%
Chemistry
Flow Kinetics
44%
Procedure
33%
Simulation
33%
Permeability
22%
Trapping
22%
Flood Reaction
22%
Equilibrium
22%
Heterogeneity
11%
Flow
11%
Oil
11%
Block Like Crystal
11%
Water Type
11%
Rate
11%
Medicine and Dentistry
Steady State
100%
Capillary
33%
Oil
22%
Water
11%
Assessment
11%
Accuracy
11%