Comparison of pore-scale capillary pressure to macroscale capillary pressure using direct numerical simulations of drainage under dynamic and quasi-static conditions

Author:

Konangi Santosh,Palakurthi Nikhil K.,Karadimitriou Nikolaos K.,Comer Ken,Ghia Urmila

Funder

Deutsche Forschungsgemeinschaft

Publisher

Elsevier BV

Subject

Water Science and Technology

Reference53 articles.

1. Simulation of micro-flow dynamics at low capillary numbers using adaptive interface compression R;Aboukhedr;Comput. Fluids,2018

2. Linking pore-scale interfacial curvature to column-scale capillary pressure;Armstrong;Adv. Water Res.,2012

3. Movement of a liquid droplet within a fibrous layer: direct pore-scale modeling and experimental observations;Aslannejad;Chem. Eng. Sci.,2018

4. Dynamics of fluids in porous media;Bear;Soil Sci.,1972

5. Berberovic, E. (2010). Investigation of free-surface flow associated with drop impact: numerical simulations and theoretical modeling, 179.

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