We simulate an earthquake rupture through a 3 - D Finite Difference algorithm using the traction at split - nodes fault boundary condition. The dynamic rupture propagation is governed by an assigned constitutive law, which controls the breakdown processes within the cohesive zone. Our numerical procedure allows the use either of time - and slip - weakening or rate - and state - dependent (R & S) friction laws. Seismic slip on faults produces temperature perturbations. Fault heating is controlled by the mechanical properties of the fault surface and by the rheological properties of the gouge layer. We model the temperature evolution on the fault through the heat flow equation and we couple these thermal variations with the fluid pressure...
The mechanical response of a fault zone during an earthquake may be controlled by the diffusion of e...
The mechanical response of a fault zone during an earthquake may be controlled by the diffusion of e...
International audienceWe numerically investigate the effect of thermal pressurization (TP) on fault ...
We simulate an earthquake rupture through a 3 - D Finite Difference algorithm using the traction a...
We investigate the role of frictional heating and thermal pressurization on earthquake ruptures by m...
We investigate the role of frictional heating and thermal pressurization on earthquake ruptures by ...
We investigate the dynamic traction evolution within the cohesive zone during the spontaneous propa...
We investigate the role of frictional heating and thermal pressurization on earthquake ruptures by m...
We investigate the dynamic traction evolution during the spontaneous propagation of a 3-D earthquake...
We investigate the dynamic traction evolution during the spontaneous propagation of a 3-D earthquak...
We investigate the dynamic traction evolution within the cohesive zone during the spontaneous propag...
A new methodology for three-dimensional (3-D) simulations of earthquake sequences is presented that ...
Accepted for publication in Journal of Geophysical Research. Copyright (2010) American Geophysical U...
We present a physical model that describes the behavior of spontaneous earthquake ruptures dynamical...
Thermal perturbations associated with seismic slip on faults may significantly affect the dynamic fr...
The mechanical response of a fault zone during an earthquake may be controlled by the diffusion of e...
The mechanical response of a fault zone during an earthquake may be controlled by the diffusion of e...
International audienceWe numerically investigate the effect of thermal pressurization (TP) on fault ...
We simulate an earthquake rupture through a 3 - D Finite Difference algorithm using the traction a...
We investigate the role of frictional heating and thermal pressurization on earthquake ruptures by m...
We investigate the role of frictional heating and thermal pressurization on earthquake ruptures by ...
We investigate the dynamic traction evolution within the cohesive zone during the spontaneous propa...
We investigate the role of frictional heating and thermal pressurization on earthquake ruptures by m...
We investigate the dynamic traction evolution during the spontaneous propagation of a 3-D earthquake...
We investigate the dynamic traction evolution during the spontaneous propagation of a 3-D earthquak...
We investigate the dynamic traction evolution within the cohesive zone during the spontaneous propag...
A new methodology for three-dimensional (3-D) simulations of earthquake sequences is presented that ...
Accepted for publication in Journal of Geophysical Research. Copyright (2010) American Geophysical U...
We present a physical model that describes the behavior of spontaneous earthquake ruptures dynamical...
Thermal perturbations associated with seismic slip on faults may significantly affect the dynamic fr...
The mechanical response of a fault zone during an earthquake may be controlled by the diffusion of e...
The mechanical response of a fault zone during an earthquake may be controlled by the diffusion of e...
International audienceWe numerically investigate the effect of thermal pressurization (TP) on fault ...