AbstractThis work is devoted to the numerical simulation of an incompressible fluid through a porous interface, modeled as a macroscopic resistive interface term in the Stokes equations. We improve the results reported in [M.A. Fernández, J.-F. Gerbeau, V. Martin, Numerical simulation of blood flows through a porous interface, Math. Model. Num. Anal. (M2AN) 42 (6) (2008) 961–990], by showing that the standard Pressure Stabilized Petrov–Galerkin (PSPG) finite element method is stable, and optimally convergent, without the need for controlling the pressure jump across the interface
International audienceWe propose a model for a medical device, called a stent, designed for the trea...
International audienceWe propose a model for a medical device, called a stent, designed for the trea...
The solution of problems in which coupling occurs between the displacement of the soil skeleton and ...
International audienceThis work is devoted to the numerical simulation of an incompressible fluid th...
AbstractThis work is devoted to the numerical simulation of an incompressible fluid through a porous...
International audienceTransient flows through porous media can be controlled by local capillary forc...
The thesis focuses on the analysis and simulation of fluid–poroelastic structure interaction (FPSI),...
The coupled equations of Biot's poroelasticity, consisting of stress equilibrium and fluid mass bala...
The coupled equations of Biot's poroelasticity, consisting of stress equilibrium and fluid mass bala...
textWe develop and analyze a mixed finite element method for the solution of an elliptic system mod...
We propose a model for a medical device, called a stent, designed for the treatment of cerebral ane...
textWe develop and analyze a mixed finite element method for the solution of an elliptic system mod...
We propose a model for a medical device, called a stent, designed for the treatment of cerebral ane...
We propose a model for a medical device, called a stent, designed for the treatment of cerebral ane...
We construct a stabilized finite-element method to compute flow and finitestrain deformations in an ...
International audienceWe propose a model for a medical device, called a stent, designed for the trea...
International audienceWe propose a model for a medical device, called a stent, designed for the trea...
The solution of problems in which coupling occurs between the displacement of the soil skeleton and ...
International audienceThis work is devoted to the numerical simulation of an incompressible fluid th...
AbstractThis work is devoted to the numerical simulation of an incompressible fluid through a porous...
International audienceTransient flows through porous media can be controlled by local capillary forc...
The thesis focuses on the analysis and simulation of fluid–poroelastic structure interaction (FPSI),...
The coupled equations of Biot's poroelasticity, consisting of stress equilibrium and fluid mass bala...
The coupled equations of Biot's poroelasticity, consisting of stress equilibrium and fluid mass bala...
textWe develop and analyze a mixed finite element method for the solution of an elliptic system mod...
We propose a model for a medical device, called a stent, designed for the treatment of cerebral ane...
textWe develop and analyze a mixed finite element method for the solution of an elliptic system mod...
We propose a model for a medical device, called a stent, designed for the treatment of cerebral ane...
We propose a model for a medical device, called a stent, designed for the treatment of cerebral ane...
We construct a stabilized finite-element method to compute flow and finitestrain deformations in an ...
International audienceWe propose a model for a medical device, called a stent, designed for the trea...
International audienceWe propose a model for a medical device, called a stent, designed for the trea...
The solution of problems in which coupling occurs between the displacement of the soil skeleton and ...