Super structures like offshore platforms, tall buildings, transition towers, skyscrapers and bridges are normally designed to resist compression, uplift and lateral forces from wind waves, negative skin friction, ship impact and other applied loads. Better understanding and the precise simulation of the response of batter piles under the action of independent uplift loads is a vital topic and an area of active research in the field of geotechnical engineering. This paper investigates the use of finite element code (FEC) to examine the behaviour of model batter piles penetrated in dense sand, subjected to pull-out pressure by means of numerical modelling. The concept of the Winkler Model (beam on elastic foundation) has been used in which th...
This contribution describes a preliminary parametric analysis of the factors affecting the pull-out ...
Many engineering structures both above ground and under the ground surface are subject to forces tha...
Pile foundation developed in offshore platforms must be able to resist the lateral loadings due to w...
Superstructures like offshore platforms, tall buildings, transition towers, skyscrapers and bridges ...
Batter or raker piles are piles driven at an inclination with a vertical to resist large inclined or...
Batter or raker piles are piles driven at an inclination with a vertical to resist large inclined or...
Batter or raker piles are piles driven at an inclination with a vertical to resist large inclined or...
Pile foundations are slender elements, underneath a major structure, frequently used for many decade...
AbstractMany offshore structures are subjected to overturning moments due to wind load, wave pressur...
Many offshore structures are subjected to overturning moments due to wind load, wave pressure, and s...
Understanding the behaviour of the piles under the action of the independent lateral loads and the p...
AbstractMany offshore structures are subjected to overturning moments due to wind load, wave pressur...
Abstract: Deep foundations are slender pile elements used to transfer loads from structures into de...
Pile foundations are usually recommended when soil capacity is not sufficient for the expected loads...
Deep foundations are slender pile elements used to transfer loads from structures into deeper soil s...
This contribution describes a preliminary parametric analysis of the factors affecting the pull-out ...
Many engineering structures both above ground and under the ground surface are subject to forces tha...
Pile foundation developed in offshore platforms must be able to resist the lateral loadings due to w...
Superstructures like offshore platforms, tall buildings, transition towers, skyscrapers and bridges ...
Batter or raker piles are piles driven at an inclination with a vertical to resist large inclined or...
Batter or raker piles are piles driven at an inclination with a vertical to resist large inclined or...
Batter or raker piles are piles driven at an inclination with a vertical to resist large inclined or...
Pile foundations are slender elements, underneath a major structure, frequently used for many decade...
AbstractMany offshore structures are subjected to overturning moments due to wind load, wave pressur...
Many offshore structures are subjected to overturning moments due to wind load, wave pressure, and s...
Understanding the behaviour of the piles under the action of the independent lateral loads and the p...
AbstractMany offshore structures are subjected to overturning moments due to wind load, wave pressur...
Abstract: Deep foundations are slender pile elements used to transfer loads from structures into de...
Pile foundations are usually recommended when soil capacity is not sufficient for the expected loads...
Deep foundations are slender pile elements used to transfer loads from structures into deeper soil s...
This contribution describes a preliminary parametric analysis of the factors affecting the pull-out ...
Many engineering structures both above ground and under the ground surface are subject to forces tha...
Pile foundation developed in offshore platforms must be able to resist the lateral loadings due to w...