Fluid pressurization of critically stressed sheared zones can trigger slip mechanisms at play in many geological rupture processes, including earthquakes or landslides. The increasing fluid pressure reduces the effective stress, giving possibility to the shear zone to reactivate. Nonetheless, the mechanisms that dictate the mode of slip, from aseismic steady creep to seismic dynamic rupture, remain poorly understood. By using discrete element modeling, we simulate pore-pressure-step creep test experiments on a sheared granular layer under a sub-critical stress state. The goal is to investigate the micromechanical processes at stake during fluid induced reactivation. The global simulated response is consistent with both laboratory and in sit...
The strength properties of fault rocks at shearing rates spanning the transition from crystal-plasti...
Laboratory and theoretical studies provide insight into the mechanisms that control earthquake nucle...
International audienceFluid pressure has significant effects on the mechanical behaviour of fault zo...
International audienceFluid pressurization of critically stressed sheared zones can trigger slip mec...
It is widely recognized that the significant increase of M > 3.0 earthquakes in Western Canada and t...
Currently, it is unknown how seismic and aseismic slip influences the recurrence and magnitude of ea...
Seismic stress drop is one of the most important earthquake source parameters, playing a key role in...
Currently, it is unknown how seismic and aseismic slip influences the recurrence and magnitude of ea...
[1] We simulate a range of fault slip behaviors using the discrete element method (DEM) to examine t...
In many natural granular systems, the interstitial pores are filled with a fluid. Deformation of thi...
International audienceThe physics of deformation of fluid-filled granular media controls many geophy...
Earthquake simulation and hazard prediction are strongly hampered by insufficient physical knowledge...
The strength properties of fault rocks at shearing rates spanning the transition from crystal-plasti...
Laboratory and theoretical studies provide insight into the mechanisms that control earthquake nucle...
International audienceFluid pressure has significant effects on the mechanical behaviour of fault zo...
International audienceFluid pressurization of critically stressed sheared zones can trigger slip mec...
It is widely recognized that the significant increase of M > 3.0 earthquakes in Western Canada and t...
Currently, it is unknown how seismic and aseismic slip influences the recurrence and magnitude of ea...
Seismic stress drop is one of the most important earthquake source parameters, playing a key role in...
Currently, it is unknown how seismic and aseismic slip influences the recurrence and magnitude of ea...
[1] We simulate a range of fault slip behaviors using the discrete element method (DEM) to examine t...
In many natural granular systems, the interstitial pores are filled with a fluid. Deformation of thi...
International audienceThe physics of deformation of fluid-filled granular media controls many geophy...
Earthquake simulation and hazard prediction are strongly hampered by insufficient physical knowledge...
The strength properties of fault rocks at shearing rates spanning the transition from crystal-plasti...
Laboratory and theoretical studies provide insight into the mechanisms that control earthquake nucle...
International audienceFluid pressure has significant effects on the mechanical behaviour of fault zo...