Publication:
Mixed-dimensional geometric multigrid methods for single-phase flow in fractured porous media

Date

2019

Authors

Director

Publisher

SIAM
Acceso abierto / Sarbide irekia
Artículo / Artikulua
Versión publicada / Argitaratu den bertsioa

Project identifier

ES/1PE/MTM2016-75139-R
European Commission/Horizon 2020 Framework Programme/705402openaire

Abstract

This paper deals with the efficient numerical solution of single-phase flow problems in fractured porous media. A monolithic multigrid method is proposed for solving two-dimensional arbitrary fracture networks with vertical and/or horizontal possibly intersecting fractures. The key point is to combine two-dimensional multigrid components (smoother and intergrid transfer operators) in the porous matrix with their one-dimensional counterparts within the fractures, giving rise to a mixed-dimensional geometric multigrid method. This combination seems to be optimal since it provides an algorithm whose convergence matches the multigrid convergence factor for solving the Darcy problem. Several numerical experiments are presented to demonstrate the robustness of the monolithic mixed-dimensional multigrid method with respect to the permeability of the fractures, the grid size, and the number of fractures in the network.

Description

Keywords

Fracture network, Fractured porous media, Monolithic multigrid method, Single-phase flow, Vanka smoother

Department

Estadística, Informática y Matemáticas / Estatistika, Informatika eta Matematika

Faculty/School

Degree

Doctorate program

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© 2019 Society for Industrial and Applied Mathematics

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