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Modeling of Viscous Instability in Compositional Gas and Wag Injections
P. L. K. Caetano Chang
,
A. Skauge
,
K. S. Sorbie
, V. Rios
, K. Kumar
Institute for GeoEnergy Engineering
School of Energy, Geoscience, Infrastructure and Society
Research output
:
Contribution to conference
›
Paper
›
peer-review
1
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Citation (Scopus)
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INIS
modeling
100%
gases
100%
instability
100%
injection
100%
fingers
100%
oils
57%
mobility
57%
permeability
57%
fluids
42%
gas injection
42%
recovery
28%
randomness
28%
density
28%
calibration
28%
carbon dioxide
28%
grids
28%
control
14%
size
14%
simulation
14%
interactions
14%
volume
14%
velocity
14%
simulators
14%
gravitation
14%
miscibility
14%
hysteresis
14%
viscosity
14%
segregation
14%
Engineering
Viscous Instability
100%
Relative Permeability
50%
Viscous Fingering
50%
Gas Injection
50%
Carbon Dioxide
50%
Interaction Parameter
25%
Gas-Phase
25%
Fluid Model
25%
Injected Gas
25%
Gravity Segregation
25%
Mass Exchange
25%
Hysteresis Effect
25%
Gaussians
25%
Oil Phase
25%
Initial Temperature
25%
Original Oil
25%
Initial Pressure
25%
Miscible Gas Injection
25%
Numerical Modeling
25%
Fluid Viscosity
25%
Oil Recovery
25%
Propagation Velocity
25%
Mathematics
Gaussian Distribution
100%
Viscous Fluid
100%
Vapor Phase
100%
Earth and Planetary Sciences
Finger
100%
Gas Injection
28%
Carbon Dioxide
28%
Oil Recovery
14%
Miscible Gas Injection
14%
Propagation Velocity
14%
Numerical Modeling
14%
Vapor Phase
14%
Viscous Fluid
14%
Chemical Engineering
Carbon Dioxide
100%
Pseudo-component
50%