We introduce a new iterative method for computing solutions of elliptic equations with random rapidly oscillating coefficients. Similarly to a multigrid method, each step of the iteration involves different computations meant to address different length scales. However, we use here the homogenized equation on all scales larger than a fixed multiple of the scale of oscillation of the coefficients. While the performance of standard multigrid methods degrades rapidly under the regime of large scale separation that we consider here, we show an explicit estimate on the contraction factor of our method which is independent of the size of the domain. We also present numerical experiments which confirm the effectiveness of the method, with openly a...
Given an arbitrary elliptic partial differential equation (PDE), a procedure for obtaining its solut...
Numerical homogenization tries to approximate solutions of elliptic partial differential equations w...
Abstract — Various advanced two-level iterative methods are studied numerically and compared with ea...
We introduce a new iterative method for computing solutions of elliptic equations with random rapidl...
We introduce a new iterative method for computing solutions of elliptic equations with random rapidl...
. We propose a multiscale finite element method for solving second order elliptic equations with rap...
Abstract. We propose a multiscale finite element method for solving second order elliptic equations ...
This paper presents two methods for the numerical solution of the classical homogenization problem o...
Abstract: "Standard multigrid methods are not so effective for equations with highly oscillatory coe...
For elliptic partial differential equations with periodically oscillating coefficients (which may ha...
The recently introduced multiscale finite element method for solving elliptic equations with oscilla...
In this paper, we study a multiscale finite element method for solving a class of elliptic problems ...
Convergence of a multigrid method for elliptic equations with highly oscillatory coefficient
Abstract: "New coarse grid operators are developed for elliptic problems with highly oscillatory coe...
In this paper, we will investigate a multiscale homogenization theory for a second-order elliptic pr...
Given an arbitrary elliptic partial differential equation (PDE), a procedure for obtaining its solut...
Numerical homogenization tries to approximate solutions of elliptic partial differential equations w...
Abstract — Various advanced two-level iterative methods are studied numerically and compared with ea...
We introduce a new iterative method for computing solutions of elliptic equations with random rapidl...
We introduce a new iterative method for computing solutions of elliptic equations with random rapidl...
. We propose a multiscale finite element method for solving second order elliptic equations with rap...
Abstract. We propose a multiscale finite element method for solving second order elliptic equations ...
This paper presents two methods for the numerical solution of the classical homogenization problem o...
Abstract: "Standard multigrid methods are not so effective for equations with highly oscillatory coe...
For elliptic partial differential equations with periodically oscillating coefficients (which may ha...
The recently introduced multiscale finite element method for solving elliptic equations with oscilla...
In this paper, we study a multiscale finite element method for solving a class of elliptic problems ...
Convergence of a multigrid method for elliptic equations with highly oscillatory coefficient
Abstract: "New coarse grid operators are developed for elliptic problems with highly oscillatory coe...
In this paper, we will investigate a multiscale homogenization theory for a second-order elliptic pr...
Given an arbitrary elliptic partial differential equation (PDE), a procedure for obtaining its solut...
Numerical homogenization tries to approximate solutions of elliptic partial differential equations w...
Abstract — Various advanced two-level iterative methods are studied numerically and compared with ea...