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Pore-scale simulation of dispersion in porous media
G. Garmeh
, R. T. Johns
, L. W. Lake
John and Willie Leone Department of Energy & Mineral Engineering (EME)
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
7
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Scopus citations
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Keyphrases
Porous Media
100%
Pore-scale Modeling
100%
Asymptotic Value
66%
Dispersibility
66%
Large Grid
66%
Perkins
33%
Convection
33%
Transmission Experiment
33%
Network Model
33%
Scale Heterogeneity
33%
Miscibility
33%
Oil Recovery
33%
Miscible Gas
33%
Reliable Indicator
33%
Convection-diffusion Equation
33%
Navier-Stokes Equations
33%
Scale-dependent
33%
Dispersion Solution
33%
Slug Injection
33%
Single-phase Flow
33%
Reservoir Simulation
33%
Recovery Efficiency
33%
Perfect Mixing
33%
Tracer Test
33%
Single Well Chemical Tracer Tests (SWCTT)
33%
Travel Distance
33%
Longitudinal Dispersivity
33%
Heterogeneous Porous Media
33%
Connected Network
33%
Fluid Velocity
33%
Well Spacing
33%
Engineering
Asymptotic Value
100%
Cross Section
50%
Phase Flow
50%
Oil Recovery
50%
Network Model
50%
Recovery Efficiency
50%
Fluid Velocity
50%
Well Spacing
50%
Navier-Stokes Equation
50%
Thermodynamics
50%
Earth and Planetary Sciences
Dispersivity
100%
Pore Scale
100%
Reservoir Simulation
33%
Oil Recovery
33%
Single-Phase Flow
33%
Well Tracer
33%
Navier-Stokes Equation
33%
Thermodynamics
33%
Chemical Engineering
Thermodynamics
100%