We couple a node-centered finite volume method to a high order finite difference method to simulate dynamic earthquake ruptures along nonplanar faults in two dimensions. The finite volume method is implemented on an unstructured mesh, providing the ability to handle complex geometries. The geometric complexities are limited to a small portion of the overall domain and elsewhere the high order finite difference method is used, enhancing efficiency. Both the finite volume and finite difference methods are in summation-by-parts form. Interface conditions coupling the numerical solution across physical interfaces like faults, and computational ones between structured and unstructured meshes, are enforced weakly using the simultaneousapproximati...
International audienceDynamic rupture of a 3-D spontaneous crack of arbitrary shape is investigated ...
Given the scarcity of near-source recordings for large earthquakes, numerical simulations play an im...
International audienceModelling dynamic rupture for complex geometrical fault structures is performe...
We couple a node-centered finite volume method to a high order finite difference method to simulate ...
We couple a node-centered finite volume method to a high order finite dif- ference method to simulat...
We present a 2-D multi-block method for earthquake rupture dynamics in complex geometries using summ...
We develop a stable and high-order accurate finite difference method for problems in earthquake rupt...
The linear elastodynamic two-dimensional anti-plane stress problem, where deformations occur in only...
International audienceProper understanding of seismic emissions associated with the growth of comple...
Our goal is to develop scalable and adaptive (spatial and temporal) numerical methods for coupled, ...
This thesis develops numerical methods for the simulation of wave propagation in solids containing f...
This thesis discusses simulations of earthquake ground motions using prescribed ruptures and dynamic...
We present a numerical method for the simulation of earthquake cycles on a 1-D fault interface embed...
The dissertation is devoted to developments of numerical methodologies to simulate physical processe...
International audienceDynamic rupture of a 3D spontaneous crack of arbitrary shape is investigated u...
International audienceDynamic rupture of a 3-D spontaneous crack of arbitrary shape is investigated ...
Given the scarcity of near-source recordings for large earthquakes, numerical simulations play an im...
International audienceModelling dynamic rupture for complex geometrical fault structures is performe...
We couple a node-centered finite volume method to a high order finite difference method to simulate ...
We couple a node-centered finite volume method to a high order finite dif- ference method to simulat...
We present a 2-D multi-block method for earthquake rupture dynamics in complex geometries using summ...
We develop a stable and high-order accurate finite difference method for problems in earthquake rupt...
The linear elastodynamic two-dimensional anti-plane stress problem, where deformations occur in only...
International audienceProper understanding of seismic emissions associated with the growth of comple...
Our goal is to develop scalable and adaptive (spatial and temporal) numerical methods for coupled, ...
This thesis develops numerical methods for the simulation of wave propagation in solids containing f...
This thesis discusses simulations of earthquake ground motions using prescribed ruptures and dynamic...
We present a numerical method for the simulation of earthquake cycles on a 1-D fault interface embed...
The dissertation is devoted to developments of numerical methodologies to simulate physical processe...
International audienceDynamic rupture of a 3D spontaneous crack of arbitrary shape is investigated u...
International audienceDynamic rupture of a 3-D spontaneous crack of arbitrary shape is investigated ...
Given the scarcity of near-source recordings for large earthquakes, numerical simulations play an im...
International audienceModelling dynamic rupture for complex geometrical fault structures is performe...