International audienceThis work addresses the macroscopic modeling of flow near porous media boundaries. This includes the vicinity with a fluid channel (i.e., a fracture), another rigid porous medium, or an impervious non-deformable solid. The analysis is carried out for one-phase, steady, incompressible, inertial, and isothermal flow of a Newtonian fluid, considering slip effects at the solid-fluid interfaces. A one-domain approach is proposed, employing a simplified version of the volume averaging method, while conceiving the system as two homogeneous regions separated by an inter-region. The upscaling procedure yields a closed macroscopic model including a divergence-free average (filtration) velocity for the mass balance equation and a...
A novel formulation for the boundary conditions to be applied at a porous surface is proposed. Inter...
International audienceThis work reports on modelling unsteady gas flow in porous media at the macros...
International audienceThis work reports on modelling unsteady gas flow in porous media at the macros...
This work addresses the macroscopic modeling of flow near porous media boundaries. This includes the...
A new one-domain approach is developed in this work yielding an operational average description of o...
International audienceA macroscopic model for unsteady incompressible isothermal non-Newtonian flow ...
International audienceA macroscopic model for unsteady incompressible isothermal non-Newtonian flow ...
Abstract-The present work analyzes the effects of a solid boundary and the inertial forces on flow a...
This work addresses the question of a pertinent macroscale model describing creeping, incompressible...
The interaction between a fluid flow and a transversely isotropic porous medium is described. A homo...
The purpose of this work is to propose a derivation of a macroscopic model for a certain class of in...
International audienceThe purpose of this work is to propose a derivation of a macroscopic model for...
Flow of incompressible fluids through porous media plays a crucial role in many technological applic...
In many transport and reaction processes of interest in chemical engineering, rapid velocity variati...
The purpose of this article is to derive a macroscopic model for a certain classof inertial two-phas...
A novel formulation for the boundary conditions to be applied at a porous surface is proposed. Inter...
International audienceThis work reports on modelling unsteady gas flow in porous media at the macros...
International audienceThis work reports on modelling unsteady gas flow in porous media at the macros...
This work addresses the macroscopic modeling of flow near porous media boundaries. This includes the...
A new one-domain approach is developed in this work yielding an operational average description of o...
International audienceA macroscopic model for unsteady incompressible isothermal non-Newtonian flow ...
International audienceA macroscopic model for unsteady incompressible isothermal non-Newtonian flow ...
Abstract-The present work analyzes the effects of a solid boundary and the inertial forces on flow a...
This work addresses the question of a pertinent macroscale model describing creeping, incompressible...
The interaction between a fluid flow and a transversely isotropic porous medium is described. A homo...
The purpose of this work is to propose a derivation of a macroscopic model for a certain class of in...
International audienceThe purpose of this work is to propose a derivation of a macroscopic model for...
Flow of incompressible fluids through porous media plays a crucial role in many technological applic...
In many transport and reaction processes of interest in chemical engineering, rapid velocity variati...
The purpose of this article is to derive a macroscopic model for a certain classof inertial two-phas...
A novel formulation for the boundary conditions to be applied at a porous surface is proposed. Inter...
International audienceThis work reports on modelling unsteady gas flow in porous media at the macros...
International audienceThis work reports on modelling unsteady gas flow in porous media at the macros...