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Publications by Magnus Aa. Gjennestad
Pore Network Modeling of the Effects of Viscosity Ratio and Pressure Gradient on Steady-State Incompressible Two-Phase Flow in Porous Media
Transport in Porous Media
Catalysis
Chemical Engineering
Related publications
Pore-Scale Insights Into Transport and Mixing in Steady-State Two-Phase Flow in Porous Media
International Journal of Multiphase Flow
Transfer Processes
Fluid Flow
Astronomy
Physics
Mechanical Engineering
Steady-State, Simultaneous Two-Phase Flow in Porous Media: An Experimental Study
Physical Review E
Steady-State Two-Phase Flow in Porous Media: Laboratory Validation of Flow-Dependent Relative Permeability Scaling
E3S Web of Conferences
Earth
Energy
Planetary Sciences
Environmental Science
Pore-Scale Modeling of Transient and Steady-State Vapor Diffusion in Partially-Saturated Porous Media
Pore-Network Modeling of Solute Transport and Biofilm Growth in Porous Media
Transport in Porous Media
Catalysis
Chemical Engineering
Capillary Effects in Drainage in Heterogeneous Porous Media: Continuum Modeling, Experiments and Pore Network Simulations
Fronts in Two‐phase Porous Media Flow Problems: The Effects of Hysteresis and Dynamic Capillarity
Studies in Applied Mathematics
Applied Mathematics
Mesoscopic Simulation of Incompressible Fluid Flow in Porous Media
International Journal of Research in Engineering and Technology
Dynamic Effects in Capillary Pressure–saturations Relationships for Two-Phase Flow in 3D Porous Media: Implications of Micro-Heterogeneities
Chemical Engineering Science
Applied Mathematics
Chemistry
Chemical Engineering
Manufacturing Engineering
Industrial