Searched for: author%3A%22Sluys%2C+Lambertus+J.%22
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Xu, F. (author), Hajibeygi, H. (author), Sluys, Lambertus J. (author)
In fractured geological formations, as a result of the in-situ stress changes, fractures can propagate or slide. This phenomenon can be efficiently modeled by the extended finite element method (XFEM) when there are only a few fractures present. However, geological reservoirs contain many fractures which can also cross and are densely...
journal article 2023
document
Xu, F. (author), Hajibeygi, H. (author), Sluys, Lambertus J. (author)
Altering the state of the stress of the subsurface reservoirs can lead fractures to slip and extend their lengths (i.e., to propagate). This process can even be engineered, in many applications, e.g., enhanced geothermal systems. As such, accurate and efficient simulation of the mechanical deformation of the subsurface geological reservoirs,...
conference paper 2022
document
Xu, F. (author), Hajibeygi, H. (author), Sluys, Lambertus J. (author)
Deformable fractured porous media appear in many geoscience applications. While the extended finite element method (XFEM) has been successfully developed within the computational mechanics community for accurate modeling of deformation, its application in geoscientific applications is not straightforward. This is mainly due to the fact that...
journal article 2021