Verification benchmarks for single-phase flow in three-dimensional fractured porous media

02/17/2020
by   Inga Berre, et al.
0

Flow in fractured porous media occurs in the earth's subsurface, in biological tissues, and in man-made materials. Fractures have a dominating influence on flow processes, and the last decade has seen an extensive development of models and numerical methods that explicitly account for their presence. To support these developments, we present a portfolio of four benchmark cases for single-phase flow in three-dimensional fractured porous media. The cases are specifically designed to test the methods' capabilities in handling various complexities common to the geometrical structures of fracture networks. Based on an open call for participation, results obtained with 17 numerical methods were collected. This paper presents the underlying mathematical model, an overview of the features of the participating numerical methods, and their performance in solving the benchmark cases.

READ FULL TEXT
research
03/31/2020

Numerical Methods for Flow in Fractured Porous Media

In this work we present the mathematical models for single-phase flow in...
research
05/19/2020

A mathematical model for thermal single-phase flow and reactive transport in fractured porous media

In this paper we present a mathematical model and a numerical workflow f...
research
01/15/2020

Reactive flow in fractured porous media

In this work we present a model reduction procedure to derive a hybrid-d...
research
08/14/2020

Comparison and Application of non-Conforming Mesh Models for Flow in Fractured Porous Media using dual Lagrange multipliers

Geological settings with reservoir characteristics include fractures wit...
research
06/24/2021

Free surface flow through rigid porous media – An overview and comparison of formulations

In many applications free surface flow through rigid porous media has to...
research
12/01/2020

Comparison of cell- and vertex-centered finite-volume schemes for flow in fractured porous media

Flow in fractured porous media is of high relevance in a variety of geot...

Please sign up or login with your details

Forgot password? Click here to reset