International audienceWe present homogenization of the viscous incompressible porous media flows under stress boundary conditions at the outer boundary. In addition to Darcy's law describing filtration in the interior of the porous medium, we derive rigorously the effective pressure boundary condition at the outer boundary. It is a linear combination of the outside pressure and the applied shear stress. We use the two-scale convergence in the sense of boundary layers, introduced by Allaire and Conca [SIAM J. Math. Anal., 29 (1997), pp. 343-379] to obtain the boundary layer structure next to the outer boundary. The approach allows establishing the strong L 2-convergence of the velocity corrector and identific
Abstract. We derive a macroscopic model for single phase, incompressible, viscous fluid flow in a po...
We homogenize stationary incompressible Stokes flow in a periodic porous medium. The fluid is assume...
Homogenization of flow in porous media is studied. The continuity equation in conjunction with Darcy...
International audienceWe present homogenization of the viscous incompressible porous media flows und...
The present thesis is devoted to derivation of Darcy’s Law for incompressible Newtonian fluid in per...
The present thesis is devoted to derivation of Darcy’s Law for incompressible Newtonian fluid in per...
The present thesis is devoted to derivation of Darcy’s Law for incompressible Newtonian fluid in per...
The present thesis is devoted to derivation of Darcy’s Law for incompressible Newtonian fluid in per...
The present thesis is devoted to the derivation of Darcy's law for incompressible viscous fluid flow...
The present thesis is devoted to the derivation of Darcy's law for incompressible viscous fluid flow...
A homogenized model of filtration of a viscous fluid in two domains with common boundary is deduced ...
A homogenized model of filtration of a viscous fluid in two domains with common boundary is deduced ...
In soil chemistry or marine microbiology (for example when dealing with marine aggregates), one ofte...
We consider an incompressible creeping flow through a 2D porous medium containing two different type...
Homogenization of flow in porous media is studied. The continuity equation in conjunction with Darcy...
Abstract. We derive a macroscopic model for single phase, incompressible, viscous fluid flow in a po...
We homogenize stationary incompressible Stokes flow in a periodic porous medium. The fluid is assume...
Homogenization of flow in porous media is studied. The continuity equation in conjunction with Darcy...
International audienceWe present homogenization of the viscous incompressible porous media flows und...
The present thesis is devoted to derivation of Darcy’s Law for incompressible Newtonian fluid in per...
The present thesis is devoted to derivation of Darcy’s Law for incompressible Newtonian fluid in per...
The present thesis is devoted to derivation of Darcy’s Law for incompressible Newtonian fluid in per...
The present thesis is devoted to derivation of Darcy’s Law for incompressible Newtonian fluid in per...
The present thesis is devoted to the derivation of Darcy's law for incompressible viscous fluid flow...
The present thesis is devoted to the derivation of Darcy's law for incompressible viscous fluid flow...
A homogenized model of filtration of a viscous fluid in two domains with common boundary is deduced ...
A homogenized model of filtration of a viscous fluid in two domains with common boundary is deduced ...
In soil chemistry or marine microbiology (for example when dealing with marine aggregates), one ofte...
We consider an incompressible creeping flow through a 2D porous medium containing two different type...
Homogenization of flow in porous media is studied. The continuity equation in conjunction with Darcy...
Abstract. We derive a macroscopic model for single phase, incompressible, viscous fluid flow in a po...
We homogenize stationary incompressible Stokes flow in a periodic porous medium. The fluid is assume...
Homogenization of flow in porous media is studied. The continuity equation in conjunction with Darcy...