summary:We consider applications, illustration and concrete numerical treatments of some homogenization results on Stokes flow in porous media. In particular, we compute the global permeability tensor corresponding to an unidirectional array of circular fibers for several volume-fractions. A 3-dimensional problem is also considered
In this dissertation we study multiscale methods for slowly varying porous media, fluid and solid co...
A numerical approach is proposed to model the flow in porous media using homogenization theory. The ...
In this paper we present a framework for computational homogenization of the fluid-solid interaction...
Porous materials are present in many natural as well as engineered structures. Engineering examples ...
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...
Multiscale homogenization represents a powerful tool to treat certain fluid-structure interaction pr...
International audienceMean field homogenization schemes are formulated for the Stokes to Darcy upsca...
In this paper we provide a general framework for model reduction methods applied to fluid flow in po...
Seepage through a strongly heterogeneous material, consisting of open saturated pores, is modeled as...
The modelization of mass transfer through biconnected fractured porous media is studied by homogeniz...
This is the final report of a three-year, Laboratory-Directed Research and Development (LDRD) projec...
This research is aimed to develop a homogenized model for practical applications of the fluid flow o...
In this dissertation we study multiscale methods for slowly varying porous media, fluid and solid co...
A numerical approach is proposed to model the flow in porous media using homogenization theory. The ...
In this paper we present a framework for computational homogenization of the fluid-solid interaction...
Porous materials are present in many natural as well as engineered structures. Engineering examples ...
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...
Multiscale homogenization represents a powerful tool to treat certain fluid-structure interaction pr...
International audienceMean field homogenization schemes are formulated for the Stokes to Darcy upsca...
In this paper we provide a general framework for model reduction methods applied to fluid flow in po...
Seepage through a strongly heterogeneous material, consisting of open saturated pores, is modeled as...
The modelization of mass transfer through biconnected fractured porous media is studied by homogeniz...
This is the final report of a three-year, Laboratory-Directed Research and Development (LDRD) projec...
This research is aimed to develop a homogenized model for practical applications of the fluid flow o...
In this dissertation we study multiscale methods for slowly varying porous media, fluid and solid co...
A numerical approach is proposed to model the flow in porous media using homogenization theory. The ...
In this paper we present a framework for computational homogenization of the fluid-solid interaction...