This paper examines the role of momentum transfer across fluid-fluid interfaces in two-phase flow. A volume-of-fluid finite-volume numerical method is used to solve the Navier-Stokes equations for two-phase flow at the micro-scale. The model is applied to investigate viscous coupling effects as a function of the viscosity ratio, the wetting phase saturation and the wettability, for different fluid configurations in simple pore geometries. It is shown that viscous coupling effects can be significant for certain pore geometries such as oil layers sandwiched between water in the corner of mixed wettability capillaries. A simple parametric model is then presented to estimate general mobility terms as a function of geometric properties and visco...
We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube wi...
In this work, we provide a physically-consistent modeling approach for two-phase porous media flow, ...
In this work, we provide a physically-consistent modeling approach for two-phase porous media flow, ...
We present a numerical scheme to model two-phase flow in porous media where capillary forces dominat...
International audienceHypothesisThe effects of mutual transfer of momentum between two immiscible fl...
International audienceHypothesisThe effects of mutual transfer of momentum between two immiscible fl...
A microvisual flow cell was used to observe the effects of fluid viscosity ratio and of pore size di...
International audienceHypothesisThe effects of mutual transfer of momentum between two immiscible fl...
This study presents a simple and robust numerical scheme to model two-phase flow in porous media whe...
Predicting three-phase relative permeability by network models requires reliable models for hydrauli...
Predicting three-phase relative permeability by network models requires reliable models for hydrauli...
\u3cp\u3eIn this paper we quantify the effect of capillary number (Ca), contact angle (θ) and viscos...
We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube wi...
We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube wi...
We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube wi...
We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube wi...
In this work, we provide a physically-consistent modeling approach for two-phase porous media flow, ...
In this work, we provide a physically-consistent modeling approach for two-phase porous media flow, ...
We present a numerical scheme to model two-phase flow in porous media where capillary forces dominat...
International audienceHypothesisThe effects of mutual transfer of momentum between two immiscible fl...
International audienceHypothesisThe effects of mutual transfer of momentum between two immiscible fl...
A microvisual flow cell was used to observe the effects of fluid viscosity ratio and of pore size di...
International audienceHypothesisThe effects of mutual transfer of momentum between two immiscible fl...
This study presents a simple and robust numerical scheme to model two-phase flow in porous media whe...
Predicting three-phase relative permeability by network models requires reliable models for hydrauli...
Predicting three-phase relative permeability by network models requires reliable models for hydrauli...
\u3cp\u3eIn this paper we quantify the effect of capillary number (Ca), contact angle (θ) and viscos...
We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube wi...
We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube wi...
We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube wi...
We analyze three-phase flow of immiscible fluids taking place within an elementary capillary tube wi...
In this work, we provide a physically-consistent modeling approach for two-phase porous media flow, ...
In this work, we provide a physically-consistent modeling approach for two-phase porous media flow, ...