Pages that link to "Item:Q785092"
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The following pages link to A damage-based numerical manifold approach to crack propagation in rocks (Q785092):
Displaying 14 items.
- Fracture analysis of rock mass based on 3-D nonlinear finite element method (Q546619) (← links)
- Rock mechanics model capable of representing initial heterogeneities and full set of 3D failure mechanisms (Q1734468) (← links)
- Computational modelling of fracture propagation in rocks using a coupled elastic-plasticity-damage model (Q1792966) (← links)
- A zero-thickness cohesive element-based numerical manifold method for rock mechanical behavior with micro-Voronoi grains (Q1799847) (← links)
- On micromechanical damage modeling in geomechanics: influence of numerical integration scheme (Q1947556) (← links)
- A field-enriched finite element method for brittle fracture in rocks subjected to mixed mode loading (Q2040810) (← links)
- An improved grain-based numerical manifold method to simulate deformation, damage and fracturing of rocks at the grain size level (Q2058107) (← links)
- A four-way enhanced numerical manifold method for crack propagation and failure analysis of rock slopes (Q2242518) (← links)
- Modeling of an excavation-induced rock fracturing process from continuity to discontinuity (Q2325461) (← links)
- A 2D novel non-local lattice bond model for initiation and propagation of cracks in rock materials (Q2662423) (← links)
- Numerical simulation of crack propagation and coalescence in rock materials by the peridynamic method based on strain energy density theory (Q2677365) (← links)
- Brittle and ductile failure of rocks: Embedded discontinuity approach for representing mode I and mode II failure mechanisms (Q2952734) (← links)
- A mixed mode rock fracture model for the prediction of crack path (Q4243399) (← links)
- A novel damaged-based numerical manifold method to simulate the failure process of brittle rocks from damage evolution to crack initiation, propagation and coalescence (Q6539860) (← links)