International audienceWe present a possible approach to approximate at both the coarse and fine scales the solution to an elliptic equation with oscillatory coefficient when this coefficient consists of a “nice”, say periodic, function that is locally perturbed. The approach is based on a local profile, solution to an equation similar to the corrector equation in classical homogenization. The well-posedness of that equation is explored, in various functional settings depending upon the locality of the perturbation. Some related problems are discussed.Nous présentons une approche possible pour l'approximation, à la fois à l'échelle microscopique et à l'échelle macroscopique, de la solution d'une équation elliptique dont le coefficient oscill...
AbstractIn this paper, on basis of [O.A. Oleinik, A.S. Shamaev, G.A. Yosifian, Mathematical Problems...
In this paper, we will investigate a multiscale homogenization theory for a second-order elliptic pr...
International audienceWe consider a diffusion equation with highly oscillatory coefficients that adm...
International audienceWe present a possible approach to approximate at both the coarse and fine scal...
International audienceFollowing-up on our previous work [10], we present a general approach to appro...
International audienceNous nous posons la question de lʼapproximation dʼun problème elliptique à coe...
We present a general strategy, adapted from classical homogenization theory, to approximate at the f...
International audienceWe consider homogenization problems for linear elliptic equations in divergenc...
(Communicated by Andrea Braides) Abstract. In quasi-periodic homogenization of elliptic equations or...
This paper aims at an accurate and efficient computation of effective quantities, e.g. the homogeniz...
In this dissertation, we first provide a short introduction to qualitative homogenization of ellipti...
This paper presents two methods for the numerical solution of the classical homogenization problem o...
Abstract. We propose a multiscale finite element method for solving second order elliptic equations ...
. We propose a multiscale finite element method for solving second order elliptic equations with rap...
International audienceWe follow-up on our works devoted to homogenization theory for linear second-o...
AbstractIn this paper, on basis of [O.A. Oleinik, A.S. Shamaev, G.A. Yosifian, Mathematical Problems...
In this paper, we will investigate a multiscale homogenization theory for a second-order elliptic pr...
International audienceWe consider a diffusion equation with highly oscillatory coefficients that adm...
International audienceWe present a possible approach to approximate at both the coarse and fine scal...
International audienceFollowing-up on our previous work [10], we present a general approach to appro...
International audienceNous nous posons la question de lʼapproximation dʼun problème elliptique à coe...
We present a general strategy, adapted from classical homogenization theory, to approximate at the f...
International audienceWe consider homogenization problems for linear elliptic equations in divergenc...
(Communicated by Andrea Braides) Abstract. In quasi-periodic homogenization of elliptic equations or...
This paper aims at an accurate and efficient computation of effective quantities, e.g. the homogeniz...
In this dissertation, we first provide a short introduction to qualitative homogenization of ellipti...
This paper presents two methods for the numerical solution of the classical homogenization problem o...
Abstract. We propose a multiscale finite element method for solving second order elliptic equations ...
. We propose a multiscale finite element method for solving second order elliptic equations with rap...
International audienceWe follow-up on our works devoted to homogenization theory for linear second-o...
AbstractIn this paper, on basis of [O.A. Oleinik, A.S. Shamaev, G.A. Yosifian, Mathematical Problems...
In this paper, we will investigate a multiscale homogenization theory for a second-order elliptic pr...
International audienceWe consider a diffusion equation with highly oscillatory coefficients that adm...