To simulate the dynamics of earthquakes, a mechanical prototype was constructed that was inspired by the Burridge-Knopoff model and equipped with accurate instrumental devices. The data obtained by the prototype appeared to be consistent with seismic data from the San Andreas Fault, California, USA, which were analyzed using two different methodologies: seismology and modern developments of chaos theory. Perspectives for future work are also presented
Advances in observational, laboratory, and modeling techniques open the way to the development of ph...
International audienceWe analyze frictional motion for a laboratory fault as it passes through the s...
International audienceWe analyze frictional motion for a laboratory fault as it passes through the s...
To simulate the dynamics of earthquakes, a mechanical prototype was constructed that was inspired by...
<p>To simulate the dynamics of earthquakes, a mechanical prototype was constructed that was in...
Today, it is impractical work modelling the dynamics of failure, given the high complexity of the sy...
The authors present an overview of ongoing studies of the rich dynamical behavior of the uniform, de...
We investigate the emergent dynamics when the nonlinear Dieterich-Ruina rate and state friction law ...
A simple model of earthquake nucleation that may account for the onset of chaotic dynamics is propos...
We discuss the relation between scaling laws and dynamical behavior for earthquakes in the framework...
Conditions under which a single oscillator model coupled with Dieterich-Ruina's rate and state depen...
Conditions under which a single oscillator model coupled with Dieterich-Ruina's rate and state ...
Based on the geodynamics, an earthquake does not take place until the momentum-energy excess a fault...
International audienceWe analyze frictional motion for a laboratory fault as it passes through the s...
We analyze frictional motion for a laboratory fault as it passes through the stability transition fr...
Advances in observational, laboratory, and modeling techniques open the way to the development of ph...
International audienceWe analyze frictional motion for a laboratory fault as it passes through the s...
International audienceWe analyze frictional motion for a laboratory fault as it passes through the s...
To simulate the dynamics of earthquakes, a mechanical prototype was constructed that was inspired by...
<p>To simulate the dynamics of earthquakes, a mechanical prototype was constructed that was in...
Today, it is impractical work modelling the dynamics of failure, given the high complexity of the sy...
The authors present an overview of ongoing studies of the rich dynamical behavior of the uniform, de...
We investigate the emergent dynamics when the nonlinear Dieterich-Ruina rate and state friction law ...
A simple model of earthquake nucleation that may account for the onset of chaotic dynamics is propos...
We discuss the relation between scaling laws and dynamical behavior for earthquakes in the framework...
Conditions under which a single oscillator model coupled with Dieterich-Ruina's rate and state depen...
Conditions under which a single oscillator model coupled with Dieterich-Ruina's rate and state ...
Based on the geodynamics, an earthquake does not take place until the momentum-energy excess a fault...
International audienceWe analyze frictional motion for a laboratory fault as it passes through the s...
We analyze frictional motion for a laboratory fault as it passes through the stability transition fr...
Advances in observational, laboratory, and modeling techniques open the way to the development of ph...
International audienceWe analyze frictional motion for a laboratory fault as it passes through the s...
International audienceWe analyze frictional motion for a laboratory fault as it passes through the s...