An Improvement of Vermeer-de Borst Constitutive Model for Numerical Simulation of the Shear Behavior of Rockfills

The most important features and phenomena of the deformation behavior of rockfills are stress-dependent stiffness, hardening and dilative (or contractive) behaviors, as well as breakage, rotation and redistribution of particle size. An elasto-plastic constitutive model has been suggested by Vermeer...

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Main Authors: M. Salari, A. Akhtarpour
Format: Article
Language:fas
Published: Isfahan University of Technology 2018-03-01
Series:Ravish/hā-yi ̒adadī dar Muhandisī
Subjects:
Online Access:http://jcme.iut.ac.ir/browse.php?a_code=A-10-1-41&slc_lang=en&sid=1
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spelling doaj-4cda31f7c9e24672a2fb8c7d8088a8182020-11-24T22:10:34ZfasIsfahan University of Technology Ravish/hā-yi ̒adadī dar Muhandisī2228-76982423-57412018-03-013624962An Improvement of Vermeer-de Borst Constitutive Model for Numerical Simulation of the Shear Behavior of RockfillsM. Salari0A. Akhtarpour1 Department of Civil Engineering, Ferdowsi University of Mashhad, Mashhad, Iran Department of Civil Engineering, Ferdowsi University of Mashhad, Mashhad, Iran The most important features and phenomena of the deformation behavior of rockfills are stress-dependent stiffness, hardening and dilative (or contractive) behaviors, as well as breakage, rotation and redistribution of particle size. An elasto-plastic constitutive model has been suggested by Vermeer and de Borst to simulate the shear behavior of soils, concretes and rocks. This research has tried to improve this model for numerical simulation of the shear behavior of rock fills. The improvement of the model has been performed through proposing new mobilized dilation and friction angles functions and new relationships for some parameters. For validation, a series of large-scale triaxial tests performed on the rockfill shell of Masjed-e-Soleyman dam have been simulated with the improved model. The results show that the improved Vermeer-De Borst model has a good accuracy to simulate the shear behavior of rockfills numerically.http://jcme.iut.ac.ir/browse.php?a_code=A-10-1-41&slc_lang=en&sid=1Rockfill material Constitutive model Particle breakage Dilative behavior Hardening behavior
collection DOAJ
language fas
format Article
sources DOAJ
author M. Salari
A. Akhtarpour
spellingShingle M. Salari
A. Akhtarpour
An Improvement of Vermeer-de Borst Constitutive Model for Numerical Simulation of the Shear Behavior of Rockfills
Ravish/hā-yi ̒adadī dar Muhandisī
Rockfill material
Constitutive model
Particle breakage
Dilative behavior
Hardening behavior
author_facet M. Salari
A. Akhtarpour
author_sort M. Salari
title An Improvement of Vermeer-de Borst Constitutive Model for Numerical Simulation of the Shear Behavior of Rockfills
title_short An Improvement of Vermeer-de Borst Constitutive Model for Numerical Simulation of the Shear Behavior of Rockfills
title_full An Improvement of Vermeer-de Borst Constitutive Model for Numerical Simulation of the Shear Behavior of Rockfills
title_fullStr An Improvement of Vermeer-de Borst Constitutive Model for Numerical Simulation of the Shear Behavior of Rockfills
title_full_unstemmed An Improvement of Vermeer-de Borst Constitutive Model for Numerical Simulation of the Shear Behavior of Rockfills
title_sort improvement of vermeer-de borst constitutive model for numerical simulation of the shear behavior of rockfills
publisher Isfahan University of Technology
series Ravish/hā-yi ̒adadī dar Muhandisī
issn 2228-7698
2423-5741
publishDate 2018-03-01
description The most important features and phenomena of the deformation behavior of rockfills are stress-dependent stiffness, hardening and dilative (or contractive) behaviors, as well as breakage, rotation and redistribution of particle size. An elasto-plastic constitutive model has been suggested by Vermeer and de Borst to simulate the shear behavior of soils, concretes and rocks. This research has tried to improve this model for numerical simulation of the shear behavior of rock fills. The improvement of the model has been performed through proposing new mobilized dilation and friction angles functions and new relationships for some parameters. For validation, a series of large-scale triaxial tests performed on the rockfill shell of Masjed-e-Soleyman dam have been simulated with the improved model. The results show that the improved Vermeer-De Borst model has a good accuracy to simulate the shear behavior of rockfills numerically.
topic Rockfill material
Constitutive model
Particle breakage
Dilative behavior
Hardening behavior
url http://jcme.iut.ac.ir/browse.php?a_code=A-10-1-41&slc_lang=en&sid=1
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