One-dimensional (1D) three-component (3C) spectral element modeling (SEM) of seismic wave propagation in nonlinear media with pore-pressure effects More information at https://github.com/elifo/1D3CSE
International audienceIn this paper, a model of one-directional propagation of three-component seism...
The one-directional three-component wave propagation in a T-shaped soil domain (1DT-3C) is a numeric...
Despite recent advances in High Performance Computing (HPC), numerical simulation of high frequency ...
One-dimensional (1D) three-component (3C) spectral element modeling (SEM) of seismic wave propagatio...
Numerical modelling of seismic wave propagation, considering soil nonlinearity, has becomea major to...
International audienceIt has long been recognized that the effects of superficial geological layers,...
The accurate calculation of seismograms in realistic 3-D Earth models has become a necessit y in sei...
Sent to Geophysical Journal International on July 29, 2003.This paper deals with the spectral elemen...
This paper deals with the spectral element modeling of seismic wave propagation at the global scale....
We computed the global wavefield excited by Model III using the spectral element method (SEM) (1) fo...
International audienceThe influence of pore water pressure has to be taken into account when the pro...
Abstract. We use a Spectral-Element Method implemented on the Earth Simulator in Japan to simulate b...
The influence of pore water pressure has to be taken into account when the propagation of seismic wa...
International audienceTo analyze seismic wave propagation in geological structures, it is possible t...
The Spectral-Element Method (SEM) is a finite-element method that solves the wave equa-tion in the t...
International audienceIn this paper, a model of one-directional propagation of three-component seism...
The one-directional three-component wave propagation in a T-shaped soil domain (1DT-3C) is a numeric...
Despite recent advances in High Performance Computing (HPC), numerical simulation of high frequency ...
One-dimensional (1D) three-component (3C) spectral element modeling (SEM) of seismic wave propagatio...
Numerical modelling of seismic wave propagation, considering soil nonlinearity, has becomea major to...
International audienceIt has long been recognized that the effects of superficial geological layers,...
The accurate calculation of seismograms in realistic 3-D Earth models has become a necessit y in sei...
Sent to Geophysical Journal International on July 29, 2003.This paper deals with the spectral elemen...
This paper deals with the spectral element modeling of seismic wave propagation at the global scale....
We computed the global wavefield excited by Model III using the spectral element method (SEM) (1) fo...
International audienceThe influence of pore water pressure has to be taken into account when the pro...
Abstract. We use a Spectral-Element Method implemented on the Earth Simulator in Japan to simulate b...
The influence of pore water pressure has to be taken into account when the propagation of seismic wa...
International audienceTo analyze seismic wave propagation in geological structures, it is possible t...
The Spectral-Element Method (SEM) is a finite-element method that solves the wave equa-tion in the t...
International audienceIn this paper, a model of one-directional propagation of three-component seism...
The one-directional three-component wave propagation in a T-shaped soil domain (1DT-3C) is a numeric...
Despite recent advances in High Performance Computing (HPC), numerical simulation of high frequency ...