Direct numerical simulations are presented for a porous media model consisting of two immiscible fluids, an invading and defending phase, in a two-dimensional micro-geometry filled with randomly sized and randomly distributed cylinders. First, interface instability and penetration modes are studied when varying the wetting features of a single pore in the porous medium. It is found that the displacement patterns not only change with the capillary number, as previously observed, but also are a function of the contact angle, even for a viscosity ratio of unity. This is an important conclusion suggesting that capillary number and viscosity ratio alone cannot completely describe the pore-scale displacement. Second, rapid pore-scale displacement...
International audienceWe study how grain shapes impact multiphase flow in porous media in the quasi-...
Two-phase flow interfacial dynamics in rough fractures is fundamental to understanding fluid transpo...
Numerical simulation is used to study the effect of different factors on unstable miscible displacem...
AbstractWhen nonwetting fluid displaces wetting fluid in a porous rock many rapid pore-scale displac...
© 2020, Georesursy LLC. All rights reserved. This paper presents the results of numerical simulation...
© Published under licence by IOP Publishing Ltd. In this paper, we investigate the effects which are...
International audienceThe unstable fluid–fluid displacement patterns in porous media with rough inva...
International audienceWe present an interface tracking algorithm that incorporates essential pore-sc...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
International audienceWe develop an efficient computational model for simulating fluid invasion patt...
We study the influence of wettability on the morphology of fluid-fluid displacement through analog p...
International audienceThe simulation of unstable invasion patterns in porous media flow is very chal...
We study how grain shapes impact multiphase flow in porous media in the quasi-static regime using an...
We develop a novel ‘moving-capacitor’ dynamic network model to simulate immiscible fluid–fluid displ...
We develop a novel 'moving-capacitor' dynamic network model to simulate immiscible fluid-fluid displ...
International audienceWe study how grain shapes impact multiphase flow in porous media in the quasi-...
Two-phase flow interfacial dynamics in rough fractures is fundamental to understanding fluid transpo...
Numerical simulation is used to study the effect of different factors on unstable miscible displacem...
AbstractWhen nonwetting fluid displaces wetting fluid in a porous rock many rapid pore-scale displac...
© 2020, Georesursy LLC. All rights reserved. This paper presents the results of numerical simulation...
© Published under licence by IOP Publishing Ltd. In this paper, we investigate the effects which are...
International audienceThe unstable fluid–fluid displacement patterns in porous media with rough inva...
International audienceWe present an interface tracking algorithm that incorporates essential pore-sc...
Liquid invasion into a porous medium is a phenomenon of great importance in both nature and technolo...
International audienceWe develop an efficient computational model for simulating fluid invasion patt...
We study the influence of wettability on the morphology of fluid-fluid displacement through analog p...
International audienceThe simulation of unstable invasion patterns in porous media flow is very chal...
We study how grain shapes impact multiphase flow in porous media in the quasi-static regime using an...
We develop a novel ‘moving-capacitor’ dynamic network model to simulate immiscible fluid–fluid displ...
We develop a novel 'moving-capacitor' dynamic network model to simulate immiscible fluid-fluid displ...
International audienceWe study how grain shapes impact multiphase flow in porous media in the quasi-...
Two-phase flow interfacial dynamics in rough fractures is fundamental to understanding fluid transpo...
Numerical simulation is used to study the effect of different factors on unstable miscible displacem...