Pages that link to "Item:Q723264"
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The following pages link to Convergence of iterative coupling for coupled flow and geomechanics (Q723264):
Displaying 50 items.
- Convergence of iterative coupling of geomechanics with flow in a fractured poroelastic medium (Q341519) (← links)
- Iterative coupling of flow, geomechanics and adaptive phase-field fracture including level-set crack width approaches (Q345961) (← links)
- Reactive flows in deformable, complex media. Abstracts from the workshop held September 21--27, 2014. (Q347224) (← links)
- Robust fixed stress splitting for Biot's equations in heterogeneous media (Q518484) (← links)
- Stability and convergence of sequential methods for coupled flow and geomechanics: fixed-stress and fixed-strain splits (Q653706) (← links)
- Stability and convergence of sequential methods for coupled flow and geomechanics: drained and undrained splits (Q653764) (← links)
- Numerical convergence study of iterative coupling for coupled flow and geomechanics (Q680264) (← links)
- Discrete fracture model for coupled flow and geomechanics (Q722791) (← links)
- Modeling fluid flow and compaction in sedimentary basins using mixed finite elements (Q723109) (← links)
- Well-posedness of the fully coupled quasi-static thermo-poroelastic equations with nonlinear convective transport (Q1633560) (← links)
- Scalable algorithms for three-field mixed finite element coupled poromechanics (Q1674544) (← links)
- A multiscale fixed stress split iterative scheme for coupled flow and poromechanics in deep subsurface reservoirs (Q1683824) (← links)
- Homogenized modeling for vascularized poroelastic materials (Q1696474) (← links)
- A sequential discontinuous Galerkin method for the coupling of flow and geomechanics (Q1703063) (← links)
- Optimal design of hydraulic fracturing in porous media using the phase field fracture model coupled with genetic algorithm (Q1710374) (← links)
- Convergence analysis of fixed stress split iterative scheme for anisotropic poroelasticity with tensor Biot parameter (Q1715360) (← links)
- A finite difference method for earthquake sequences in poroelastic solids (Q1715369) (← links)
- A splitting-based finite element method for the Biot poroelasticity system (Q1732492) (← links)
- A primal-dual active set method and predictor-corrector mesh adaptivity for computing fracture propagation using a phase-field approach (Q1734482) (← links)
- Evaluating linear and nonlinear solvers for density driven flow (Q1736155) (← links)
- Partitioning strategies for the interaction of a fluid with a poroelastic material based on a Nitsche's coupling approach (Q1737986) (← links)
- Modeling geomechanical impact of fluid storage in poroelastic media using precomputed response functions (Q1785134) (← links)
- Convergence and error analysis of fully discrete iterative coupling schemes for coupling flow with geomechanics (Q1785136) (← links)
- Unified thermo-compositional-mechanical framework for reservoir simulation (Q1787651) (← links)
- Network-inspired versus Kozeny-Carman based permeability-porosity relations applied to Biot's poroelasticity model (Q1980987) (← links)
- A new numerically stable sequential algorithm for coupled finite-strain elastoplastic geomechanics and flow (Q1984622) (← links)
- Unconditionally stable sequential schemes for all-way coupled thermoporomechanics: undrained-adiabatic and extended fixed-stress splits (Q1986608) (← links)
- Enriched Galerkin finite elements for coupled poromechanics with local mass conservation (Q1986622) (← links)
- New stabilized discretizations for poroelasticity and the Stokes' equations (Q1986635) (← links)
- Convergence analysis of two-grid fixed stress split iterative scheme for coupled flow and deformation in heterogeneous poroelastic media (Q1986659) (← links)
- An updated Lagrangian LBM-DEM-FEM coupling model for dual-permeability fissured porous media with embedded discontinuities (Q1986700) (← links)
- A variational phase-field model for hydraulic fracturing in porous media (Q1987867) (← links)
- Preconditioning Markov chain Monte Carlo method for geomechanical subsidence using multiscale method and machine learning technique (Q2020498) (← links)
- Comparison of fully-coupled and sequential solution methodologies for enhanced geothermal systems (Q2020878) (← links)
- Virtual element methods for the three-field formulation of time-dependent linear poroelasticity (Q2026132) (← links)
- Approximate inverse-based block preconditioners in poroelasticity (Q2027140) (← links)
- Modeling interactions of natural and two-phase fluid-filled fracture propagation in porous media (Q2027144) (← links)
- Efficient solvers for hybridized three-field mixed finite element coupled poromechanics (Q2027614) (← links)
- A new two-scale computational model for hydromechanical coupling in jointed rocks (Q2027617) (← links)
- Guaranteed and computable error bounds for approximations constructed by an iterative decoupling of the Biot problem (Q2027621) (← links)
- Gradient discretization of two-phase flows coupled with mechanical deformation in fractured porous media (Q2047606) (← links)
- Data-driven reduced order modeling of poroelasticity of heterogeneous media based on a discontinuous Galerkin approximation (Q2059122) (← links)
- Iterative splitting schemes for a soft material poromechanics model (Q2060080) (← links)
- Domain decomposition and partitioning methods for mixed finite element discretizations of the Biot system of poroelasticity (Q2065816) (← links)
- Convergence of single rate and multirate undrained split iterative schemes for a fractured Biot model (Q2085065) (← links)
- A mixed virtual element method for Biot's consolidation model (Q2094340) (← links)
- Performance studies of the fixed stress split algorithm for immiscible two-phase flow coupled with linear poromechanics (Q2130942) (← links)
- Variational interior and interface transmission conditions: multidomain mixed Darcy/Stokes control problems (Q2147920) (← links)
- A two-grid simulation framework for fast monitoring of fault stability and ground deformation in multiphase geomechanics (Q2157130) (← links)
- Finite element methods for large-strain poroelasticity/chemotaxis models simulating the formation of myocardial oedema (Q2162322) (← links)