Generalized multiscale finite element method for thermoporoelasticity problems in heterogeneous and fractured media
DOI10.1016/j.cam.2021.113995zbMath1482.74157OpenAlexW4206358149MaRDI QIDQ2075946
Eric T. Chung, Maria Vasilyeva, Dmitry Ammosov
Publication date: 16 February 2022
Published in: Journal of Computational and Applied Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cam.2021.113995
generalized multiscale finite element methodheterogeneous mediumdiscrete fracture modelfine grid approximationthermoporoelastic pressure-displacement formulation
Fluid-solid interactions (including aero- and hydro-elasticity, porosity, etc.) (74F10) Finite element methods applied to problems in solid mechanics (74S05) Thermal effects in solid mechanics (74F05) Fracture and damage (74R99)
Related Items (2)
Uses Software
Cites Work
- Unnamed Item
- Generalized multiscale finite element methods (GMsFEM)
- Automated solution of differential equations by the finite element method. The FEniCS book
- Adaptive multiscale model reduction with generalized multiscale finite element methods
- A generalized multiscale finite element method for poroelasticity problems. I: Linear problems.
- Iterative multiscale finite-volume method
- Dimensionally reduced flow models in fractured porous media: crossings and boundaries
- Computational multiscale methods for linear poroelasticity with high contrast
- Generalized multiscale finite element method for the poroelasticity problem in multicontinuum media
- Multiscale modeling of heat and mass transfer in fractured media for enhanced geothermal systems applications
- Constrained energy minimization based upscaling for coupled flow and mechanics
- Multiscale two-stage solver for Biot's poroelasticity equations in subsurface media
- Poromechanics of freezing materials
- Multiscale finite-volume method for compressible multiphase flow in porous media
- A coupling of mixed and continuous Galerkin finite element methods for poroelasticity. I: The continuous in time case
- Splitting scheme for poroelasticity and thermoelasticity problems
- Basic concepts in the theory of seepage of homogeneous liquids in fissured rocks [strata]
- Derivation of the Double Porosity Model of Single Phase Flow via Homogenization Theory
- Multiscale Finite Element Methods
- Gmsh: A 3-D finite element mesh generator with built-in pre- and post-processing facilities
- Modelling fluid flow in fractured-porous rock masses by finite-element techniques
- Green's functions for a fully coupled thermoporoelastic material
- BOUNDARY ELEMENT ANALYSIS OF LINEAR THERMOELASTIC CONSOLIDATION
- Adaptive Multiscale Finite-Volume Method for Multiphase Flow and Transport in Porous Media
- A coupled dual continuum and discrete fracture model for subsurface heat recovery with thermoporoelastic effects
- Numerical Solution of Thermoporoelasticity Problems
- A Generalized Multiscale Finite Element Method for Thermoelasticity Problems
- Modeling Fractures and Barriers as Interfaces for Flow in Porous Media
This page was built for publication: Generalized multiscale finite element method for thermoporoelasticity problems in heterogeneous and fractured media