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Journal ArticleDOI

Finite element analysis of couple effect of soil displacement and axial load on single inclined pile

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TLDR
In this article, the couple effect of soil displacement and axial load on the single inclined pile in cases of surcharge load and uniform soil movement is discussed in detail with the methods of full-scale field tests and finite element method.
Abstract
The couple effect of soil displacement and axial load on the single inclined pile in cases of surcharge load and uniform soil movement is discussed in detail with the methods of full-scale field tests and finite element method. Parametric analyses including the degree of inclination and the distance between soil and pile are carried out herein. When the displacement of soil on the left side and right side of a pile is identical, deformation of a vertical pile and an inclined pile is highly close in both cases of surcharge load and uniform soil movement. When the couple effect of soil displacement and axial load occurs, settlement of an inclined pile is greater than that of a vertical pile under the same axial load, and bearing capacity of an inclined pile is smaller than that of a vertical pile. This is quite different from the case when the inclined pile is not affected by soil displacement. For inclined piles, P-Δ effect of axial load would lead to a large increase in bending moment, however, for the vertical pile, P-Δ effect of axial load can be neglected. Although the direction of inclination of piles is reverse, deformation of piles caused by uniform soil movement is totally the same. For the inclined piles discussed herein, bending moment (−8 m to −17 m under the ground) relies heavily on uniform soil movement and does not change during the process of applying axial load. When the thickness of soil is less than the pile length, the greater the thickness of soil, the larger the bending moment at lower part of the inclined pile. When the thickness of soil is larger than the pile length, bending moment at lower part of the inclined pile is zero.

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Citations
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Journal ArticleDOI

Experimental investigation of batter pile groups behaviour subjected to lateral soil movement in sand

TL;DR: In this article, a series of laboratory model tests on batter pile groups embedded in the sand was carried out in a specially designed testing box, where the effect of pile group arrangement and batter angle on the bending moment, shear force, soil reaction, pile rotation and deflection behavior of the passive batter group groups were studied.
Dissertation

Behaviour of single batter piles and pile groups under lateral soil movement in sand

TL;DR: In this article, a series of model tests on a single batter pile subjected to a soil movement profile (triangular or rectangular) was performed to study the effect of a number of parameters on the behaviour of single batter piles.
Journal ArticleDOI

Response of Inclined Loaded Pile in Layered Foundation Based on Principle of Minimum Potential Energy

TL;DR: In this article , a generalized solution based on the principle of minimum potential energy was proposed to investigate the responses of inclined loaded piles in layered foundations, and the results indicated that the analytical solution proposed in this study can provide consistent predictions with experimental results.
Journal ArticleDOI

A Study on the Seismic Response Characteristics of an Oblique Pile Group-Soil-Structure with Different Pile Caps

TL;DR: In this paper, a numerical model of obliquely pile groups of the pile-soil-structure with low cap and high cap was established, and the variation of pore pressure, the moment, the displacement of piles, and displacement of pier was analyzed.
References
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Book

Foundation analysis and design

TL;DR: In this paper, Fondation de soutenagement et al. presented a reference record for Dimensionnement Reference Record created on 2004-09-07, modified on 2016-08-08.
Journal ArticleDOI

Model tests on single piles subjected to lateral soil movement

TL;DR: In this article, the authors describe a series of laboratory tests on single instrumented model piles embedded in calcareous sand undergoing lateral movement and identify key parameters influencing the maximum bending moment in the pile for a constant soil density.
Journal ArticleDOI

Raked Piles—Virtues and Drawbacks

TL;DR: In this paper, the authors examined the characteristics of pile groups containing raked piles, via a simplified and hypothetical example, and found that the effect of pile rake on typical behavioral characteristics (group settlement, lateral deflection and rotation, and pile loads and moments) was examined.
Journal ArticleDOI

Behaviour of flexible batter piles under inclined loads in layered soil

TL;DR: In this paper, the behavior of single free-head model flexible vertical and batter piles under central inclined loads in two-layered soil is investigated, and the bearing capacity of the piles is found to depend on bearing capacity.
Journal ArticleDOI

Shaft Resistance of Single Vertical and Batter Piles Driven in Sand

TL;DR: In this article, a prototype laboratory setup was designed for testing relatively large model piles, inclined at an angle that varied between zero and 30° with the vertical, and two model piles having diameters of 38 and 76 mm were tested at a ratio of the pile length to diameter up to 40.
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