Soil-pile kinematic interaction develops as a consequence of soil movements during seismic excitations. Severe bending strains exceeding the strain limits of the pile material can then develop. The highest kinematic bending moments occur at the interface of layered soil, characterized by consecutive layers with a high Vs2/Vs1 ratio between their shear wave velocities, or at the pile-head of fixed-head piles. Seismic design codes are generally worried about the kinematic bending developing at the interface of two layers with different stiffnesses and suggest evaluating kinematic effects on strategic buildings in seismic prone areas. Recent research has shown that the kinematic demand at the pile-head is important in the design of reinforced ...
The design of piles under seismic loads is conventionally carried out with reference to the inertial...
This paper presents the results of an extensive parametric study on single piles and pile groups em...
This research provides an insight into the previously unexplored aspects of kinematic pile bending, ...
Soil-pile kinematic interaction develops as a consequence of soil movements during seismic excitatio...
Pile-soil kinematic interaction arises because of the soil deformations induced by seismic actions. ...
Recent studies showed that kinematic interaction is relevant for the design of large-diameter concre...
In high seismicity areas it’s important to consider kinematic effects to properly design pile founda...
In high seismicity areas, it is important to consider kinematic effects to properly design pile foun...
During seismic shaking soil movements force piles to deform, resulting in a complex interplay betwee...
Kinematic effects at the head of a flexible vertical pile embedded in a two-layer soil deposit are i...
The kinematic bending and filtering potential of a fixed-head pile are explored when large shear str...
The conventional design methods for seismically loaded piles still concentrate in providing adequate...
The problem of kinematic bending moments imposed at the head of a single pile during the passage of ...
This paper reviews some aspects of pile-soil kinematic interaction in light of recent research findi...
The behaviour of a kinematically stressed pile in layered soil under the passage of vertically propa...
The design of piles under seismic loads is conventionally carried out with reference to the inertial...
This paper presents the results of an extensive parametric study on single piles and pile groups em...
This research provides an insight into the previously unexplored aspects of kinematic pile bending, ...
Soil-pile kinematic interaction develops as a consequence of soil movements during seismic excitatio...
Pile-soil kinematic interaction arises because of the soil deformations induced by seismic actions. ...
Recent studies showed that kinematic interaction is relevant for the design of large-diameter concre...
In high seismicity areas it’s important to consider kinematic effects to properly design pile founda...
In high seismicity areas, it is important to consider kinematic effects to properly design pile foun...
During seismic shaking soil movements force piles to deform, resulting in a complex interplay betwee...
Kinematic effects at the head of a flexible vertical pile embedded in a two-layer soil deposit are i...
The kinematic bending and filtering potential of a fixed-head pile are explored when large shear str...
The conventional design methods for seismically loaded piles still concentrate in providing adequate...
The problem of kinematic bending moments imposed at the head of a single pile during the passage of ...
This paper reviews some aspects of pile-soil kinematic interaction in light of recent research findi...
The behaviour of a kinematically stressed pile in layered soil under the passage of vertically propa...
The design of piles under seismic loads is conventionally carried out with reference to the inertial...
This paper presents the results of an extensive parametric study on single piles and pile groups em...
This research provides an insight into the previously unexplored aspects of kinematic pile bending, ...