Relatori
Jean-Pau Ampuero
Jean-Paul Ampuero
IRD & Université Côte d'Azur
Francia
IRD & Université Côte d'Azur
Francia
6 lectures on:
Dynamic earthquake rupture, from slow to supershear earthquakes. Phenomenology of earthquake rupture speeds from seismological observations. Theoretical and simulation results on admissible rupture speeds. Unusual earthquake speeds and proposed models.
Ugo Galvanetto
Ugo Galvanetto
University of Padua
Italia
University of Padua
Italia
6 lectures on:
Peridynamics for shear and mixed rupture in saturated media, hydromechanical coupling, PD theory, bond and state based models, numerical implementation, failure criteria, hybrid 2 D FEM/PD modeling, and realistic applications.
Peridynamics for shear and mixed rupture in saturated media, hydromechanical coupling, PD theory, bond and state based models, numerical implementation, failure criteria, hybrid 2 D FEM/PD modeling, and realistic applications.
Amir Khoei
Amir Khoei
Sharif University of Technology, Tehran
Iran
Sharif University of Technology, Tehran
Iran
6 lectures on:
XFEM for hydraulic fracture in heterogeneous reservoirs, covering enrichment functions, variational forms, THM equations, XFEM discretization, fracture propagation, and case study applications.
XFEM for hydraulic fracture in heterogeneous reservoirs, covering enrichment functions, variational forms, THM equations, XFEM discretization, fracture propagation, and case study applications.
Bernhard A. Schrefler
Bernhard A. Schrefler
Università di Padova
Italia
Università di Padova
Italia
3 lectures on:
Dynamic fracturing with FEM, lattice models (mode I and II), forerunning, and hydrodemolition.
Dynamic fracturing with FEM, lattice models (mode I and II), forerunning, and hydrodemolition.
Jianfu Shao
Jianfu Shao
Université de Lille
Francia
Université de Lille
Francia
4 lectures on:
Phase field modelling on shear and mixed rupture in saturated media, covering THM coupling, variational and thermodynamic foundations, crack initiation and propagation, hydromechanical effects, and applications to fault activation and sliding.
Phase field modelling on shear and mixed rupture in saturated media, covering THM coupling, variational and thermodynamic foundations, crack initiation and propagation, hydromechanical effects, and applications to fault activation and sliding.
Ilya Svetlizky
Ilya Svetlizky
Technion, Israel Institute of Technology, Haifa
Israele
Technion, Israel Institute of Technology, Haifa
Israele
4 lectures on:
Sub-Rayleigh rupture fronts, strain fields and equation of motion - experiments and theory, supershear rupture fronts, and strain fields and equation of motion - experiments, theory, and FEM simulations.
Sub-Rayleigh rupture fronts, strain fields and equation of motion - experiments and theory, supershear rupture fronts, and strain fields and equation of motion - experiments, theory, and FEM simulations.
Ni Tao
Ni Tao
Chengdu University of Technology
Cina
Chengdu University of Technology
Cina
4 lectures on:
Hydromechanical effects in Mode II shear rupture in dams, covering saturated media fracture, coupled dam–foundation–reservoir response, fluid driven weakening, and multiphysics FEM–peridynamic simulation of rupture initiation and acceleration.
Hydromechanical effects in Mode II shear rupture in dams, covering saturated media fracture, coupled dam–foundation–reservoir response, fluid driven weakening, and multiphysics FEM–peridynamic simulation of rupture initiation and acceleration.