The one-directional three-component wave propagation in a T-shaped soil domain (1DT-3C) is a numerical modeling technique, in a finite element scheme, to investigate dynamic soil-structure interaction (SSI) coupled with seismic site effects, under the assumption of vertical propagation of three-component seismic motion along a horizontal multilayered soil. A three-dimensional elasto-plastic model is adopted for soils, characterized using their shear modulus reduction curve. In this research, the 1DT-3C wave propagation modeling technique is proposed as an efficient tool for bridge design to take into account directly the spatial variability of seismic loading. This approach, in the preliminary phase of bridge study and design, allows the re...
International audienceStrong seismic motions in soils generally lead to both a stiffness reduction a...
Strong seismic motions in soils generally lead to both a stiffness reduction and an increase of the ...
This paper presents a three-dimensional non-linear finite element (FE) approach to analyse the dynam...
The one-directional three-component wave propagation in a T-shaped soil domain (1DT-3C) is a numeric...
International audienceThe soil-structure interaction (SSI) is generally neglected for seismic design...
International audienceIn this paper, a model of one-directional propagation of three-component seism...
International audienceLocal wave amplification due to strong seismic motions in surficial multilayer...
This thesis presents the development of the displacement-unit-impulse-response-based modelling of un...
In this paper the soil-structure interaction problem is addressed by three-dimensional numerical sim...
Bridge designers have adopted simple approximate methods to take into account soil-structure-interac...
Presented here is a numerical investigation of the influence of non-uniform soil conditions on a pro...
The influence of pore water pressure has to be taken into account when the propagation of seismic wa...
A hybrid method based on three-dimensional finite element idealization in the near field and a semi-...
International audienceThe influence of pore water pressure has to be taken into account when the pro...
In this contribution we present a strategy to investigate the vibrations of build ings subjected to...
International audienceStrong seismic motions in soils generally lead to both a stiffness reduction a...
Strong seismic motions in soils generally lead to both a stiffness reduction and an increase of the ...
This paper presents a three-dimensional non-linear finite element (FE) approach to analyse the dynam...
The one-directional three-component wave propagation in a T-shaped soil domain (1DT-3C) is a numeric...
International audienceThe soil-structure interaction (SSI) is generally neglected for seismic design...
International audienceIn this paper, a model of one-directional propagation of three-component seism...
International audienceLocal wave amplification due to strong seismic motions in surficial multilayer...
This thesis presents the development of the displacement-unit-impulse-response-based modelling of un...
In this paper the soil-structure interaction problem is addressed by three-dimensional numerical sim...
Bridge designers have adopted simple approximate methods to take into account soil-structure-interac...
Presented here is a numerical investigation of the influence of non-uniform soil conditions on a pro...
The influence of pore water pressure has to be taken into account when the propagation of seismic wa...
A hybrid method based on three-dimensional finite element idealization in the near field and a semi-...
International audienceThe influence of pore water pressure has to be taken into account when the pro...
In this contribution we present a strategy to investigate the vibrations of build ings subjected to...
International audienceStrong seismic motions in soils generally lead to both a stiffness reduction a...
Strong seismic motions in soils generally lead to both a stiffness reduction and an increase of the ...
This paper presents a three-dimensional non-linear finite element (FE) approach to analyse the dynam...