[1] We simulated spontaneous rupture processes on a vertical, bending strike slip fault in a three-dimensional half space, using a finite-difference method. Rupture area and overall slip distribution on the fault vary with the initial stress field, which depends on strike change at the bend. Rupture velocity and detailed slip distribution around the bend, on the other hand, are affected by time-dependent normal stress change caused by rupture. This dynamic stress change plays an important role in the rupture process ahead of the bend, as well as in the resulting ground motion. The numerical simulation method demonstrated here in a simplified geometry is equally applicable to modeling strong ground motion from geometrically complex ruptures ...
Abstract Recent ground-motion observations suggest that surface-rupturing earth-quakes generate weak...
In this work we present a 3D Finite Difference numerical method to model the dynamic spontaneous pro...
We report results of foam-rubber modeling of the effect of a shallow weak layer on ground motion fro...
Computer simulation of the strong ground motion generated from the earthquake rupture process on a s...
A 3-D finite difference method is applied in this study to investigate a spontaneous rupture within ...
In this work we present a 3D Finite Difference numerical method to model the dynamic spontaneous pro...
This thesis discusses simulations of earthquake ground motions using prescribed ruptures and dynamic...
The rupture process occurring during an earthquake is described here in terms of one of the few know...
Abstract Using 3D dynamic models, we investigate the effect of fault stepovers on near-source ground...
Faults are complex structures: they are geometrically complex, and have variable stress conditions a...
We investigate the ground motion produced by rupture propagation through circular barriers and asper...
Abstract We study dynamic rupture propagation on flat faults using 2D plane strain models featuring ...
In this work we present a 3D Finite Difference numerical method to model the dynamic spontaneous pro...
In this work we present a 3D Finite Difference numerical method to model the dynamic spontaneous pro...
Recent ground-motion observations suggest that surface-rupturing earthquakes generate weaker near-fa...
Abstract Recent ground-motion observations suggest that surface-rupturing earth-quakes generate weak...
In this work we present a 3D Finite Difference numerical method to model the dynamic spontaneous pro...
We report results of foam-rubber modeling of the effect of a shallow weak layer on ground motion fro...
Computer simulation of the strong ground motion generated from the earthquake rupture process on a s...
A 3-D finite difference method is applied in this study to investigate a spontaneous rupture within ...
In this work we present a 3D Finite Difference numerical method to model the dynamic spontaneous pro...
This thesis discusses simulations of earthquake ground motions using prescribed ruptures and dynamic...
The rupture process occurring during an earthquake is described here in terms of one of the few know...
Abstract Using 3D dynamic models, we investigate the effect of fault stepovers on near-source ground...
Faults are complex structures: they are geometrically complex, and have variable stress conditions a...
We investigate the ground motion produced by rupture propagation through circular barriers and asper...
Abstract We study dynamic rupture propagation on flat faults using 2D plane strain models featuring ...
In this work we present a 3D Finite Difference numerical method to model the dynamic spontaneous pro...
In this work we present a 3D Finite Difference numerical method to model the dynamic spontaneous pro...
Recent ground-motion observations suggest that surface-rupturing earthquakes generate weaker near-fa...
Abstract Recent ground-motion observations suggest that surface-rupturing earth-quakes generate weak...
In this work we present a 3D Finite Difference numerical method to model the dynamic spontaneous pro...
We report results of foam-rubber modeling of the effect of a shallow weak layer on ground motion fro...