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Journal ArticleDOI

The general and congruent effects of structure in natural soils and weak rocks

S. Leroueil, +1 more
- 01 Sep 1990 - 
- Vol. 40, Iss: 3, pp 467-488
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TLDR
In this article, the engineering properties of naturally occurring sedimentary and residual deposits which are usually treated in geotechnical engineering as ‘soils’ are reviewed, and it is shown that usually they have characteristics due to bonded structure which are similar to those of porous weak rock.
Abstract
The engineering properties of naturally occurring sedimentary and residual deposits which are usually treated in geotechnical engineering as ‘soils’ are reviewed, and it is shown that usually they have characteristics due to bonded structure which are similar to those of porous weak rock. While this structure can arise from many causes, its effects follow a simple general pattern that involves stiff behaviour followed by yield. This yield can be described in a similar way to that occurring due to overconsolidation, although it is a separate phenomenon. The effects of structure are as important in determining engineering behaviour as are the effects of initial porosity and stress-history, which are the basic concepts of soil mechanics. As it can be described in a general way, it is concluded that structure and its effects should be treated as a further basic concept of equal importance. L'article passe en revue les proprietes des depots sedimentaires et residuels naturels qui sont nor-malement traites comm...

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Citations
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Journal ArticleDOI

Performance of constitutive models in predicting behavior of remolded clay

TL;DR: In this paper, the performance of several soil constitutive models was evaluated by comparing experimental results and simulated behavior of a medium plasticity clay, and sensitivity analyses were also performed in order to investigate the influence of some of the input parameters.
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New Soft Rock Pillar Strength Formula Derived Through Parametric FEA Using a Critical State Plasticity Model

TL;DR: In this paper, the authors modeled the mechanical behavior of the constituent material of a pillar according to the Modified Cam-Clay constitutive law (elasto-plastic with strain hardening).
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Consistent Class A & C predictions of the Ballina test embankment

TL;DR: A holistic methodology for incorporating advanced constitutive models in engineering design is used for the settlement prediction of the Ballina test embankment in this paper, which considers anisotropy, structural degradation and rate dependency.
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Effect of Fabric on Mechanical Behavior of Marine Clays

TL;DR: In this article, a reference void ratio is introduced as a fabric index to characterize the compression and shear behavior of marine clays, and the difference in compression and strength characteristics between undisturbed and reconstituted samples is caused only by the fabric.
References
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Journal ArticleDOI

On The Yielding of Soils

TL;DR: In this paper, Hvorslev's equation for the shear strength of clay is shown to define a surface in a space of three variables σ, e and τ. The progressive yielding of a sample defines a loading path in this space, and the paths taken by samples in differing tests can be correlated if a boundary energy correction is applied.
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Stress–strain–strain rate relation for the compressibility of sensitive natural clays

TL;DR: In this paper, four types of oedometer tests (constant rate of strain tests, controlled gradient tests, multiple-stage loading tests and creep tests) were carried out on a variety of Champlain sea clays.
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Cemented sands under static loading

TL;DR: In this paper, a test program was undertaken to define the nature of the cementation and its effect on behavior of the soils, and a total of 137 laboratory compression and tension load tests were performed on undisturbed samples of naturally and artificially prepared cemented sands.
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Ninth Laurits Bjerrum Memorial Lecture: "Small is beautiful"—the stiffness of soils at small strains

TL;DR: In this paper, the authors show how field measurements of displacement around foundations and excavations combined with numerical analysis and recent developments in laboratory techniques can be used to estimate the displacement of foundations.