We present a new computational fluid dynamics approach for simulating two-phase flow in hybrid systems containing solid-free regions and deformable porous matrices. Our approach is based on the derivation of a unique set of volume-averaged partial differential equations that asymptotically approach the Navier-Stokes Volume-of-Fluid equations in solid-free regions and multiphase Biot Theory in porous regions. The resulting equations extend our recently developed Darcy-Brinkman-Biot framework to multiphase flow. Through careful consideration of interfacial dynamics (relative permeability and capillary effects) and extensive benchmarking, we show that the resulting model accurately captures the strong two-way coupling that is often exhibited b...
A fully coupled numerical model has been developed which describes multiphase fluid flow through soi...
The aim of this work is to present a reduced mathematical model for describing fluid flow in porous ...
The simultaneous flow of immiscible fluids in porous media occurs in a wide variety of applications....
A multiphase Darcy-Brinkman approach is proposed to simulate two-phase flow in hybrid systems conta...
In this paper, a fully coupled finite volume-finite element model for a deforming porous medium inte...
Flow of incompressible fluids through porous media plays a crucial role in many technological applic...
Detailed understanding of the couplings between fluid flow and solid deformation in porous media is ...
Rough a global coarse problem. Although these techniques are usually employed for problems in which ...
In the present paper, a fully coupled numerical model is developed for the hydromechanical analysis ...
We present a new numerical model for macroscale two-phase flow in porous media which is based on a p...
International audienceWe address the discretization of two-phase Darcy flows in a fractured and defo...
A fully coupled flow-deformation model for two-phase fluid flow through deformable fractured porous ...
International audienceWe propose an immiscible two phase flow fracture model, based on phase-field f...
International audienceWe propose an immiscible two phase flow fracture model, based on phase-field f...
The aim of this work is to present a reduced mathematical model for describing fluid flow in porous ...
A fully coupled numerical model has been developed which describes multiphase fluid flow through soi...
The aim of this work is to present a reduced mathematical model for describing fluid flow in porous ...
The simultaneous flow of immiscible fluids in porous media occurs in a wide variety of applications....
A multiphase Darcy-Brinkman approach is proposed to simulate two-phase flow in hybrid systems conta...
In this paper, a fully coupled finite volume-finite element model for a deforming porous medium inte...
Flow of incompressible fluids through porous media plays a crucial role in many technological applic...
Detailed understanding of the couplings between fluid flow and solid deformation in porous media is ...
Rough a global coarse problem. Although these techniques are usually employed for problems in which ...
In the present paper, a fully coupled numerical model is developed for the hydromechanical analysis ...
We present a new numerical model for macroscale two-phase flow in porous media which is based on a p...
International audienceWe address the discretization of two-phase Darcy flows in a fractured and defo...
A fully coupled flow-deformation model for two-phase fluid flow through deformable fractured porous ...
International audienceWe propose an immiscible two phase flow fracture model, based on phase-field f...
International audienceWe propose an immiscible two phase flow fracture model, based on phase-field f...
The aim of this work is to present a reduced mathematical model for describing fluid flow in porous ...
A fully coupled numerical model has been developed which describes multiphase fluid flow through soi...
The aim of this work is to present a reduced mathematical model for describing fluid flow in porous ...
The simultaneous flow of immiscible fluids in porous media occurs in a wide variety of applications....