AbstractThis investigation is concerned with a mathematical analysis of an elastic circular cylindrical pile embedded in a transversely isotropic half-space under lateral dynamic excitations. A combination of time-harmonic horizontal shear force and moment are applied at the top end of the pile. The boundary value problem is formulated by decomposing the pile-medium system into a fictitious pile and an extended transversely isotropic half-space. A Fredholm integral equation of the second kind governs the interaction problem, whose solution is then computed numerically. Selected results for dynamic compliance bending moment, displacement and slope profiles are presented for different transversely isotropic half-spaces to portray the influenc...
Abstract: The isolation of the vibration due to a harmonic vertical load using pile rows embedded in...
The objective of this paper is to model eccentric impacts in pile driving. A 1-D finite element mode...
International audienceTo improve the understanding of soil–pile interaction under horizontal dynamic...
AbstractThis investigation is concerned with a mathematical analysis of an elastic circular cylindri...
The dynamic response of pile embedded in layered transversely isotropic soil and subjected to arbitr...
The general time-domain boundary element in cylindrical co-ordinates developed for the study of wave...
The dynamic response of an end bearing pile embedded in transversely isotropic saturated soil and su...
The dynamic response of an end bearing pile embedded in a linear visco-elastic soil layer with hyste...
Kinematic pile–soil interaction is investigated analytically through a Beam-on-Dynamic-Winkler-Found...
Kinematic pile-soil interaction is investigated analytically through a Beam-on-Dynamic-Winkler-Found...
Kinematic pile-soil interaction is investigated analytically through a Beam-on-Dynamic-Winkler-Found...
This dissertation is concerned with the dynamic response of a finite flexible bar partially embedded...
This paper presents a new mathematical approach for the analysis of harmonically vibrating horizonta...
An analytical solution is developed for the kinematic response of a group of end-bearing fixed-head ...
The soil that the pile is embedded in is idealized by a Winkler model and is assumed to be two layer...
Abstract: The isolation of the vibration due to a harmonic vertical load using pile rows embedded in...
The objective of this paper is to model eccentric impacts in pile driving. A 1-D finite element mode...
International audienceTo improve the understanding of soil–pile interaction under horizontal dynamic...
AbstractThis investigation is concerned with a mathematical analysis of an elastic circular cylindri...
The dynamic response of pile embedded in layered transversely isotropic soil and subjected to arbitr...
The general time-domain boundary element in cylindrical co-ordinates developed for the study of wave...
The dynamic response of an end bearing pile embedded in transversely isotropic saturated soil and su...
The dynamic response of an end bearing pile embedded in a linear visco-elastic soil layer with hyste...
Kinematic pile–soil interaction is investigated analytically through a Beam-on-Dynamic-Winkler-Found...
Kinematic pile-soil interaction is investigated analytically through a Beam-on-Dynamic-Winkler-Found...
Kinematic pile-soil interaction is investigated analytically through a Beam-on-Dynamic-Winkler-Found...
This dissertation is concerned with the dynamic response of a finite flexible bar partially embedded...
This paper presents a new mathematical approach for the analysis of harmonically vibrating horizonta...
An analytical solution is developed for the kinematic response of a group of end-bearing fixed-head ...
The soil that the pile is embedded in is idealized by a Winkler model and is assumed to be two layer...
Abstract: The isolation of the vibration due to a harmonic vertical load using pile rows embedded in...
The objective of this paper is to model eccentric impacts in pile driving. A 1-D finite element mode...
International audienceTo improve the understanding of soil–pile interaction under horizontal dynamic...