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Dive into the research topics where Daniel Barreto is active.

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Featured researches published by Daniel Barreto.


International Conference on Discrete Element Methods | 2016

The Influence of Particles’ Aspect Ratio on the Shear Behaviour of Granular Materials

Y. H. Xie; Z. X. Yang; Daniel Barreto

The mechanical response of granular material depends both on the material properties (e.g. stiffness, anisotropy, permeability, etc.) and particle geometry (shape, roughness, etc.). This paper presents a study of the effect of particle shape (i.e. aspect ratio) on the mechanical behaviour of a granular assembly using DEM (discrete element method). In this study, the numerical simulations employ samples with different particle aspect ratios but identical particle size distribution (PSD). Conventional triaxial compression DEM simulations are carried out under both ‘drained’ and ‘undrained’ (constant volume) conditions. The shear behaviour of the assemblies and the evolution of their microstructure under shearing are examined in detail. At the macroscopic level, the test results show that the particle aspect ratio has a significant effect on the stress-strain curve, peak strength, dilatancy characteristics and critical state behaviour. In particular, the samples with lower aspect ratios can lead to higher peak/residual shear strengths, and higher angles of shearing resistance. The critical state occurs at a higher position in a void ratio versus mean normal stress plot for lowest particle aspect ratio. The results from numerical analysis compare reasonably well with the available experimental data. At the microscopic level, the fabric evolution is greatly affected by the aspect ratio, and the critical state fabric is also examined.


Granular Matter | 2012

The influence of inter-particle friction and the intermediate stress ratio on soil response under generalised stress conditions

Daniel Barreto; Catherine O'Sullivan


Geotechnique | 2013

Use of DEM and elastic stability analysis to explain the influence of the intermediate principal stress on shear strength

Catherine O'Sullivan; M. A. Wadee; Hanley Kj; Daniel Barreto


Acta Geotechnica | 2013

Particle loss and volume change on dissolution: experimental results and analysis of particle size and amount effects

John McDougall; Darren J. Kelly; Daniel Barreto


Geotechnique | 2013

Quantifying stress-induced anisotropy using inter-void constrictions

Tom Shire; Catherine O'Sullivan; Daniel Barreto; G Gaudray


Granular Matter | 2017

The influence of particle geometry and the intermediate stress ratio on the shear behavior of granular materials

Y. H. Xie; Z. X. Yang; Daniel Barreto; M. D. Jiang


Geotechnique | 2013

Volumetric consequences of particle loss by grading entropy.

John McDougall; E. Imre; Daniel Barreto; Darren J. Kelly


Archive | 2008

DEM simulations of granular materials involving principal stress rotation.

Daniel Barreto; Catherine O'Sullivan; L. Zdravkovic


Archive | 2008

Specimen generation approaches for DEM simulations.

Catherine O'Sullivan; Daniel Barreto; L. Zdravkovic


Archive | 1999

Effect of particle loss on soil behaviour.

Darren J. Kelly; John McDougall; Daniel Barreto

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John McDougall

Edinburgh Napier University

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Darren J. Kelly

St. Vincent's Health System

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A Ivanovic

University of Aberdeen

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Aoife Brennan

University of Strathclyde

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