IPACS: integrated phase-field advanced crack propagation simulator. An adaptive, parallel, physics-based-discretization phase-field framework for fracture propagation in porous media
From MaRDI portal
Publication:2186886
DOI10.1016/j.cma.2020.113124zbMath1442.74216OpenAlexW3030773880MaRDI QIDQ2186886
Sanghyun Lee, Mary Fanett Wheeler, Thomas Wick
Publication date: 10 June 2020
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2020.113124
Brittle fracture (74R10) Fluid-solid interactions (including aero- and hydro-elasticity, porosity, etc.) (74F10)
Related Items (17)
An adaptive phase-field model based on bilinear elements for tensile-compressive-shear fracture ⋮ Comparison of cell- and vertex-centered finite-volume schemes for flow in fractured porous media ⋮ Adaptive and Pressure-Robust Discretization of Incompressible Pressure-Driven Phase-Field Fracture ⋮ A comparative review of peridynamics and phase-field models for engineering fracture mechanics ⋮ On poroelastic strain energy degradation in the variational phase-field models for hydraulic fracture ⋮ Phase-field modeling of drying-induced cracks: choice of coupling and study of homogeneous and localized damage ⋮ A high-accuracy framework for phase-field fracture interface reconstructions with application to Stokes fluid-filled fracture surrounded by an elastic medium ⋮ Second-order optimality conditions for an optimal control problem governed by a regularized phase-field fracture propagation model ⋮ A framework to model the hydraulic fracturing with thermo-hydro-mechanical coupling based on the variational phase-field approach ⋮ Projection-based reduced order modeling of an iterative scheme for linear thermo-poroelasticity ⋮ Using poro-elasticity to model the large deformation of tissue during subcutaneous injection ⋮ Bayesian inversion for anisotropic hydraulic phase-field fracture ⋮ Modeling interactions of natural and two-phase fluid-filled fracture propagation in porous media ⋮ A global-local approach for hydraulic phase-field fracture in poroelastic media ⋮ A phase-field multirate scheme with stabilized iterative coupling for pressure driven fracture propagation in porous media ⋮ Finite element simulation of quasi-static tensile fracture In nonlinear strain-limiting solids with the phase-field approach ⋮ IPACS
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Goal functional evaluations for phase-field fracture using PU-based DWR mesh adaptivity
- The \texttt{deal.II} library, version 8.4
- Iterative coupling of flow, geomechanics and adaptive phase-field fracture including level-set crack width approaches
- Quasi-static crack growth in hydraulic fracture
- An augmented-Lagrangian method for the phase-field approach for pressurized fractures
- Robust fixed stress splitting for Biot's equations in heterogeneous media
- Closed-loop reservoir management on the Brugge test case
- Stability and convergence of sequential methods for coupled flow and geomechanics: fixed-stress and fixed-strain splits
- Stability and convergence of sequential methods for coupled flow and geomechanics: drained and undrained splits
- A phase field model for rate-independent crack propagation: robust algorithmic implementation based on operator splits
- Adaptive enriched Galerkin methods for miscible displacement problems with entropy residual stabilization
- Numerical convergence study of iterative coupling for coupled flow and geomechanics
- Multirate time integration for coupled saturated/unsaturated porous medium and free flow systems
- Convergence of iterative coupling for coupled flow and geomechanics
- Regularized formulation of the variational brittle fracture with unilateral contact: numerical experiments
- An implicit algorithm for the propagation of a hydraulic fracture with a fluid lag
- Approximation of free-discontinuity problems
- Numerical experiments in revisited brittle fracture
- Phase-field modeling of a fluid-driven fracture in a poroelastic medium
- A discontinuous Galerkin method for two-phase flow in a porous medium enforcing \(H(\operatorname{div})\) velocity and continuous capillary pressure
- Optimal design of hydraulic fracturing in porous media using the phase field fracture model coupled with genetic algorithm
- A primal-dual active set method and predictor-corrector mesh adaptivity for computing fracture propagation using a phase-field approach
- Phase-field modeling of fracture in variably saturated porous media
- An approximation result for special functions with bounded deformation
- Revisiting brittle fracture as an energy minimization problem
- Enriched Galerkin finite elements for coupled poromechanics with local mass conservation
- A variational phase-field model for hydraulic fracturing in porous media
- Phase-field modeling of fluid-driven dynamic cracking in porous media
- Phase-field modeling of hydraulic fracture
- A phase-field description for pressurized and non-isothermal propagating fractures
- Stability of multirate explicit coupling of geomechanics with flow in a poroelastic medium
- Three-way coupling of multiphase flow and poromechanics in porous media
- A phase field approach to pressurized fractures using discontinuous Galerkin methods
- The deal.II library, Version 9.1
- Phase-field modeling of proppant-filled fractures in a poroelastic medium
- A phase-field method for computational modeling of interfacial damage interacting with crack propagation in realistic microstructures obtained by microtomography
- Modified Newton methods for solving fully monolithic phase-field quasi-static brittle fracture propagation
- Phase-field modeling through iterative splitting of hydraulic fractures in a poroelastic medium
- Phase-field modeling of ductile fracture
- Coupling fluid-structure interaction with phase-field fracture
- Phase field modeling of fracture in multi-physics problems. III: Crack driving forces in hydro-poro-elasticity and hydraulic fracturing of fluid-saturated porous media
- Pressure and fluid-driven fracture propagation in porous media using an adaptive finite element phase field model
- Enriched Galerkin methods for two-phase flow in porous media with capillary pressure
- On adaptive refinement techniques in multi-field problems including cohesive fracture
- A Locally Conservative Enriched Galerkin Approximation and Efficient Solver for Elliptic and Parabolic Problems
- Optimal approximations by piecewise smooth functions and associated variational problems
- Thermodynamically consistent phase-field models of fracture: Variational principles and multi-field FE implementations
- p4est: Scalable Algorithms for Parallel Adaptive Mesh Refinement on Forests of Octrees
- Approximation of functional depending on jumps by elliptic functional via t-convergence
- A monolithic phase-field model of a fluid-driven fracture in a nonlinear poroelastic medium
- Discontinuous Galerkin Methods for Solving Elliptic and Parabolic Equations
- deal.II—A general-purpose object-oriented finite element library
- A Locally Conservative Finite Element Method Based on Piecewise Constant Enrichment of the Continuous Galerkin Method
- The Primal-Dual Active Set Strategy as a Semismooth Newton Method
- Phase-Field Modeling of Two Phase Fluid Filled Fractures in a Poroelastic Medium
- VI. The phenomena of rupture and flow in solids
- Discontinuous Galerkin method for solving the black‐oil problem in porous media
- A quasi-static phase-field approach to pressurized fractures
- A Phase-Field Method for Propagating Fluid-Filled Fractures Coupled to a Surrounding Porous Medium
- An Error-Oriented Newton/Inexact Augmented Lagrangian Approach for Fully Monolithic Phase-Field Fracture Propagation
- Computational Methods for Multiphase Flows in Porous Media
This page was built for publication: IPACS: integrated phase-field advanced crack propagation simulator. An adaptive, parallel, physics-based-discretization phase-field framework for fracture propagation in porous media