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Journal ArticleDOI

Driven piles in clay - the effects of installation and subsequent consolidation

Mark Randolph, +2 more
- 01 Dec 1979 - 
- Vol. 29, Iss: 4, pp 361-393
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TLDR
In this article, the effects of installing a driven pile on the strength of the soil were investigated using a work-hardening elasto-plastic soil model, which has the unique feature of allowing the strength to change as the water content changes, thus it is possible to calculate the new intrinsic soil strength at any stage during consolidation.
Abstract
This paper describes the results of numerical analysis of the effects of installing a driven pile. The geometry of the problem has been simplified by the assumption of plane strain conditions in addition to axial symmetry. Pile installation has been modelled as the undrained expansion of a cylindrical cavity. The excess pore pressures generated in this process have subsequently been assumed to dissipate by means of outward radial flow of pore water. The consolidation of the soil has been studied using a work-hardening elasto–plastic soil model which has the unique feature of allowing the strength of the soil to change as the water content changes. Thus it is possible to calculate the new intrinsic soil strength at any stage during consolidation. In particular the long-term shaft capacity of a driven pile may be estimated from the final effective stress state and intrinsic strength of the soil adjacent to the pile. A parametric study has been made of the effect of the past consolidation history of the soil...

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Citations
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Journal ArticleDOI

Undrained semi-analytical solution for cylindrical cavity expansion in anisotropic soils under biaxial stress conditions

TL;DR: In this paper , an undrained semi-analytical elastoplastic solution for cylindrical cavity expansion in anisotropic soil under the biaxial stress conditions is presented.
Journal ArticleDOI

Solution for spherical cavity expansion in state-dependent soils

TL;DR: In this paper, a spherical cavity expansion solution based on the state-dependent critical state constitutive model is proposed to predict the resistance of cone penetration and ground movements associated with static pipe bursting in sand.
Proceedings ArticleDOI

Comparison Between Model and Full Scale Pile Capacity Gain in the Boston Area

TL;DR: In this paper, the authors examined the use of the Multiple Deployment Model Pile (MDMP) and a full-scale instrumented pre-stressed concrete pile to examine time dependent pile capacity gain in Boston Blue Clay.
Journal ArticleDOI

Shear Zone around Jacked Piles in Clay

TL;DR: In this article, the authors conducted a field test in silt deposit to observe the physical phenomenon of shear zone after installation and investigated soil parameter differences from undisturbed soil through laboratory tests.
References
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Book

Theoretical Soil Mechanics

Karl Terzaghi

On the generalized stress-strain behavior of wet clay

K. H. Roscoe
TL;DR: The theory of the three-dimensional stress-strain behavior of WET CLAYs was introduced by BURLAND as discussed by the authors, who showed that WETCLAYs are subject to three dimensions of stress and strain.
Journal ArticleDOI

Skin Friction between Various Soils and Construction Materials

J. G. Potyondy
- 01 Dec 1961 - 
TL;DR: In this article, the authors used several hundred experiments to determine the magnitude of skin friction, in which the following variables were considered: (1) Various construction materials: steel, wood, concrete; (2) For each material two surface conditions were used: smooth and rough; which are described in such a way that they may be reproduced by anyone with a reasonable degree of accuracy.
Journal ArticleDOI

The Sensitivity of Clays

A. W. Skemption, +1 more
- 01 Mar 1952 - 
TL;DR: The sensitivity of clays is defined as the ratio of their undisturbed and remoulded strengths, and varies from about 1·O for heavily overconsolidated clays to values of over 100 for the so-called extrasensitive or quick clays.
Journal Article

Bearing capacity and settlement of pile foundations

TL;DR: In this paper, the authors point out further aspects of limit point bearing capacity of piles in sand as well as the overlayered stratum and critical depth, and propose a relationship between the critical depth D sub c and p sub c, or 1 sub 1.