The kinematic bending and filtering potential of a fixed-head pile are explored when large shear strains are generated in the surrounding soil during the passage of seismic waves. The problem is treated numerically by employing a freely available 1D code to derive soil response at free-field conditions and an advanced 3D finite-difference (FD) model of the soil-pile system. Three idealized soil profiles with varying stiffness and strength and a real layered site are considered under earthquake excitations of increasing intensity, allowing investigation of the pile's non-linear kinematic response under shear strains exceeding the threshold of an equivalent-linear approximation. Simple analytical solutions are revisited in the context of soil...
Pile-soil kinematic interaction arises because of the soil deformations induced by seismic actions. ...
Large superstructures such as tall buildings, important structures and bridges sometimes are founded...
Kinematic pile-soil interaction is investigated analytically through a Beam-on-Dynamic-Winkler-Found...
The problem of kinematic bending moments imposed at the head of a single pile during the passage of ...
This paper presents the results of different types of dynamic numerical analysis performed to evalua...
We examine the kinematic response of fixed-head vertical floating piles embedded in continuously non...
Recent studies showed that kinematic interaction is relevant for the design of large-diameter concre...
We examine the kinematic response of fixed-head vertical floating piles embedded in continuously non...
The kinematic response of flexible piles in inhomogeneous soil is explored under harmonic and seismi...
Soil-pile kinematic interaction develops as a consequence of soil movements during seismic excitatio...
Piles are widely used as reinforcement structures in geotechnical engineering designs. If the settle...
The effect of soil inhomogeneity on kinematic response of single flexural elastic piles to verticall...
A non-linear finite element analysis for determining the seismic response of piles in multilayered ...
This paper presents the results of an extensive parametric study on single piles and pile groups em...
Analysis of pile foundations for earthquake loads requires the consideration of inertial loads that ...
Pile-soil kinematic interaction arises because of the soil deformations induced by seismic actions. ...
Large superstructures such as tall buildings, important structures and bridges sometimes are founded...
Kinematic pile-soil interaction is investigated analytically through a Beam-on-Dynamic-Winkler-Found...
The problem of kinematic bending moments imposed at the head of a single pile during the passage of ...
This paper presents the results of different types of dynamic numerical analysis performed to evalua...
We examine the kinematic response of fixed-head vertical floating piles embedded in continuously non...
Recent studies showed that kinematic interaction is relevant for the design of large-diameter concre...
We examine the kinematic response of fixed-head vertical floating piles embedded in continuously non...
The kinematic response of flexible piles in inhomogeneous soil is explored under harmonic and seismi...
Soil-pile kinematic interaction develops as a consequence of soil movements during seismic excitatio...
Piles are widely used as reinforcement structures in geotechnical engineering designs. If the settle...
The effect of soil inhomogeneity on kinematic response of single flexural elastic piles to verticall...
A non-linear finite element analysis for determining the seismic response of piles in multilayered ...
This paper presents the results of an extensive parametric study on single piles and pile groups em...
Analysis of pile foundations for earthquake loads requires the consideration of inertial loads that ...
Pile-soil kinematic interaction arises because of the soil deformations induced by seismic actions. ...
Large superstructures such as tall buildings, important structures and bridges sometimes are founded...
Kinematic pile-soil interaction is investigated analytically through a Beam-on-Dynamic-Winkler-Found...