The spreading adoption of computationally intensive techniques such as Reverse Time Migration and Full Waveform Inversion increases the need of efficiently solving the three-dimensional wave equation. Common finite-difference discretization schemes lose their accuracy and efficiency in complex geological settings with discontinuities in the material properties and topography. Finite elements on tetrahedral meshes follow the interfaces while maintaining their accuracy and can have smaller meshes if the elements are scaled with the velocity. Here, we consider two higher-order finite element methods that allow for explicit time stepping: the continuous mass-lumped finite-element method (CMLFE) and the symmetric interior penalty discontinuous G...
We analyse the dispersion properties of two types of explicit finite element methods for modelling a...
International audienceThis work pertains to numerical aspects of a finite element method based disco...
The first part of my thesis focuses on seismic modeling in fractured media. Several recent developme...
The spreading adoption of computationally intensive techniques such as Reverse Time Migration and Fu...
The finite-difference method is widely used for time-domain modelling of the wave equation because o...
We solve the three-dimensional acoustic wave equation, discretized on tetrahedral meshes. Two method...
equation Abstract. We solve the three-dimensional acoustic wave equation, discretized on tetrahe-dra...
Finite element methods are considered as the best discretization method for solving the wave equa-ti...
Modeling and imaging techniques for geophysics are extremely demanding in terms of computational res...
In this dissertation, new and more efficient finite element methods for modelling seismic wave propa...
Spectral elements with mass lumping allow for explicit time stepping and are therefore attractive fo...
We analyse the time-stepping stability for the 3-D acoustic wave equation, discretized on tetrahedra...
Finite elements with mass lumping allow for explicit time stepping when modelling wave propagation a...
Mass-lumped continuous finite elements allow for explicit time stepping with the second-order wave e...
International audienceThis monograph presents numerical methods for solving transient wave equations...
We analyse the dispersion properties of two types of explicit finite element methods for modelling a...
International audienceThis work pertains to numerical aspects of a finite element method based disco...
The first part of my thesis focuses on seismic modeling in fractured media. Several recent developme...
The spreading adoption of computationally intensive techniques such as Reverse Time Migration and Fu...
The finite-difference method is widely used for time-domain modelling of the wave equation because o...
We solve the three-dimensional acoustic wave equation, discretized on tetrahedral meshes. Two method...
equation Abstract. We solve the three-dimensional acoustic wave equation, discretized on tetrahe-dra...
Finite element methods are considered as the best discretization method for solving the wave equa-ti...
Modeling and imaging techniques for geophysics are extremely demanding in terms of computational res...
In this dissertation, new and more efficient finite element methods for modelling seismic wave propa...
Spectral elements with mass lumping allow for explicit time stepping and are therefore attractive fo...
We analyse the time-stepping stability for the 3-D acoustic wave equation, discretized on tetrahedra...
Finite elements with mass lumping allow for explicit time stepping when modelling wave propagation a...
Mass-lumped continuous finite elements allow for explicit time stepping with the second-order wave e...
International audienceThis monograph presents numerical methods for solving transient wave equations...
We analyse the dispersion properties of two types of explicit finite element methods for modelling a...
International audienceThis work pertains to numerical aspects of a finite element method based disco...
The first part of my thesis focuses on seismic modeling in fractured media. Several recent developme...