In this paper, we develop a mass conservative multiscale method for coupled flow and transport in heterogeneous porous media. We consider a coupled system consisting of a convection-dominated transport equation and a flow equation. We construct a coarse grid solver based on the Generalized Multiscale Finite Element Method (GMsFEM) for a coupled system. In particular, multiscale basis functions are constructed based on some snapshot spaces for the pressure and the concentration equations and some local spectral decompositions in the snapshot spaces. The resulting approach uses a few multiscale basis functions in each coarse block (for both the pressure and the concentration) to solve the coupled system. We use the mixed framework, which allo...
textWe use Darcy's law and conservation of mass to model the flow of a fluid through a porous medium...
In this Thesis, we develop and analyze a heterogeneous multiscale model for coupled fluid flow and s...
In this thesis, we develop and analyze a heterogeneous multiscale model for coupled fluid flow and s...
In this paper, we develop a mass conservative multiscale method for coupled flow and transport in he...
In this paper, we present a mixed Generalized Multiscale Finite Element Method (GMsFEM) for solving ...
Many problems of fundamental and practical importance have multiple scale solutions. The direct nume...
The multiscale hybrid mixed finite element method (MHM-H(div)), previously developed for Darcy's pr...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
In this paper, we combine discrete empirical interpolation techniques, global mode decompo-sition me...
Many problems of fundamental and practical importance have multiscale solutions. Direct numerical si...
In this paper we propose a modified multiscale finite element method for two-phase flow simulations ...
Multiscale phenomena are ubiquitous to flow and transport in porous media. They manifest themselves ...
Several multiscale methods for elliptic problems that provide high resolution velocity fields at low...
A multiscale gradient computation method for multiphase flow in heterogeneous porous media is develo...
The Mixed Multiscale Finite Element method (MMsFE) is a promising alternative to traditional upscali...
textWe use Darcy's law and conservation of mass to model the flow of a fluid through a porous medium...
In this Thesis, we develop and analyze a heterogeneous multiscale model for coupled fluid flow and s...
In this thesis, we develop and analyze a heterogeneous multiscale model for coupled fluid flow and s...
In this paper, we develop a mass conservative multiscale method for coupled flow and transport in he...
In this paper, we present a mixed Generalized Multiscale Finite Element Method (GMsFEM) for solving ...
Many problems of fundamental and practical importance have multiple scale solutions. The direct nume...
The multiscale hybrid mixed finite element method (MHM-H(div)), previously developed for Darcy's pr...
Accurate and efficient simulation of multiphase flow in heterogeneous porous media motivates the dev...
In this paper, we combine discrete empirical interpolation techniques, global mode decompo-sition me...
Many problems of fundamental and practical importance have multiscale solutions. Direct numerical si...
In this paper we propose a modified multiscale finite element method for two-phase flow simulations ...
Multiscale phenomena are ubiquitous to flow and transport in porous media. They manifest themselves ...
Several multiscale methods for elliptic problems that provide high resolution velocity fields at low...
A multiscale gradient computation method for multiphase flow in heterogeneous porous media is develo...
The Mixed Multiscale Finite Element method (MMsFE) is a promising alternative to traditional upscali...
textWe use Darcy's law and conservation of mass to model the flow of a fluid through a porous medium...
In this Thesis, we develop and analyze a heterogeneous multiscale model for coupled fluid flow and s...
In this thesis, we develop and analyze a heterogeneous multiscale model for coupled fluid flow and s...