Computational Methods for Fracture
Material type:
ArticlePublication details: MDPI - Multidisciplinary Digital Publishing Institute 2019Description: 1 electronic resource (404 p.)Content type: - text
- computer
- online resource
- 9783039216864
- 9783039216871
- Economics, Finance, Business and Management
- Industry & industrial studies
- Media, entertainment, information and communication industries
- Information technology industries
- ABAQUS UEL
- Brittle Fracture
- Discontinuous Galerkin
- EPB shield machine
- FE analysis
- FSDT
- GFEM
- HSDT
- LEFM
- Mindlin
- Mohr-Coulomb
- Phase-field model
- SBFEM
- XFEM
- anisotropic
- brittle fracture
- brittle material
- bulk damage
- cell-based smoothed-finite element method (CS-FEM)
- compressive stress
- concrete creep
- conditioned sandy pebble
- crack shape change
- cracking risk
- cracks
- dam stress zones
- damage
- damage-healing mechanics
- damage-plasticity model
- ductility
- elastoplastic behavior
- extended scaled boundary finite element method (X-SBFEM)
- fatigue
- fatigue crack growth
- finite element analysis
- finite element simulations
- fluid–structure interaction
- force transfer
- fracture
- fracture network modeling
- fracture process zone (FPZ)
- geometric phase
- gradient-enhanced model
- grouting
- implicit gradient-enhancement
- incompatible approximation
- loss of key components
- metallic glass matrix composite
- microstructure
- moderate fire
- numerical simulation
- overall stability
- parameters calibration
- particle element model
- peridynamics
- phase field
- photonic orbi
Open Access Unrestricted online access star
This book offers a collection of 17 scientific papers about the computational modeling of fracture. Some of the manuscripts propose new computational methods and/or how to improve existing cutting edge methods for fracture. These contributions can be classified into two categories: 1. Methods which treat the crack as strong discontinuity such as peridynamics, scaled boundary elements or specific versions of the smoothed finite element methods applied to fracture and 2. Continuous approaches to fracture based on, for instance, phase field models or continuum damage mechanics. On the other hand, the book also offers a wide range of applications where state-of-the-art techniques are employed to solve challenging engineering problems such as fractures in rock, glass, concrete. Also, larger systems such as fracture in subway stations due to fire, arch dams, or concrete decks are studied.
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eng
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