FEM-based calculation of soil mass with the impact of dilatancy

There are a lot of papers about dilatancy, it is typical for the majority of highly concentrated dispersed systems. A three-dimensional deformation in the active zone of such systems is contraction and deformation by dilatancy. An increase is called dilatancy, a decrease is called negative dilatancy...

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Main Authors: L.U. Sultanov, D.V. Berezhnoi, A.V. Karamov
Format: Article
Language:English
Published: Peter the Great St. Petersburg Polytechnic University 2014-06-01
Series:Инженерно-строительный журнал
Subjects:
FEM
Online Access:http://engstroy.spb.ru/eng/index_2014_04/01.html
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spelling doaj-9dc4959ae27b4bff9f09be82d2ded5132020-11-25T02:10:03ZengPeter the Great St. Petersburg Polytechnic UniversityИнженерно-строительный журнал2071-47262071-03052014-06-014843910.5862/MCE.48.1FEM-based calculation of soil mass with the impact of dilatancyL.U. Sultanov0D.V. Berezhnoi1A.V. Karamov2Kazan (Volga region) Federal UniversityKazan (Volga region) Federal UniversityKazan (Volga region) Federal UniversityThere are a lot of papers about dilatancy, it is typical for the majority of highly concentrated dispersed systems. A three-dimensional deformation in the active zone of such systems is contraction and deformation by dilatancy. An increase is called dilatancy, a decrease is called negative dilatancy or contraction. The violation of soil strength due to a shift in one of the ground on the other is the most common fracture in the construction of excavation slopes. In this paper, we use a model similar to the model of a perfectly plastic body. The construction of a computational algorithm is based on sampling the computational domain in the finite element method. The modeling of soil is based on specific strength properties which determine its bearing capacity. They include the cohesion coefficient, the angle of internal friction coefficient and dilatancy coefficient, which characterizes soil loosening or compaction under deviatoric loads. The paper considered a number of model problems of elastic-plastic deformation of a dirt mound, studied the convergence of the solutions. It may be noted that the inclusion of the dilatancy decelerates the mound transition to the limiting state, and thereby a second band slip is forming. The implemented methodology allows the calculation of elastic-plastic deformation of soil masses, complying with the law of dry friction with and without dilatancy.http://engstroy.spb.ru/eng/index_2014_04/01.htmlsoilplasticitydilatancyFEM
collection DOAJ
language English
format Article
sources DOAJ
author L.U. Sultanov
D.V. Berezhnoi
A.V. Karamov
spellingShingle L.U. Sultanov
D.V. Berezhnoi
A.V. Karamov
FEM-based calculation of soil mass with the impact of dilatancy
Инженерно-строительный журнал
soil
plasticity
dilatancy
FEM
author_facet L.U. Sultanov
D.V. Berezhnoi
A.V. Karamov
author_sort L.U. Sultanov
title FEM-based calculation of soil mass with the impact of dilatancy
title_short FEM-based calculation of soil mass with the impact of dilatancy
title_full FEM-based calculation of soil mass with the impact of dilatancy
title_fullStr FEM-based calculation of soil mass with the impact of dilatancy
title_full_unstemmed FEM-based calculation of soil mass with the impact of dilatancy
title_sort fem-based calculation of soil mass with the impact of dilatancy
publisher Peter the Great St. Petersburg Polytechnic University
series Инженерно-строительный журнал
issn 2071-4726
2071-0305
publishDate 2014-06-01
description There are a lot of papers about dilatancy, it is typical for the majority of highly concentrated dispersed systems. A three-dimensional deformation in the active zone of such systems is contraction and deformation by dilatancy. An increase is called dilatancy, a decrease is called negative dilatancy or contraction. The violation of soil strength due to a shift in one of the ground on the other is the most common fracture in the construction of excavation slopes. In this paper, we use a model similar to the model of a perfectly plastic body. The construction of a computational algorithm is based on sampling the computational domain in the finite element method. The modeling of soil is based on specific strength properties which determine its bearing capacity. They include the cohesion coefficient, the angle of internal friction coefficient and dilatancy coefficient, which characterizes soil loosening or compaction under deviatoric loads. The paper considered a number of model problems of elastic-plastic deformation of a dirt mound, studied the convergence of the solutions. It may be noted that the inclusion of the dilatancy decelerates the mound transition to the limiting state, and thereby a second band slip is forming. The implemented methodology allows the calculation of elastic-plastic deformation of soil masses, complying with the law of dry friction with and without dilatancy.
topic soil
plasticity
dilatancy
FEM
url http://engstroy.spb.ru/eng/index_2014_04/01.html
work_keys_str_mv AT lusultanov fembasedcalculationofsoilmasswiththeimpactofdilatancy
AT dvberezhnoi fembasedcalculationofsoilmasswiththeimpactofdilatancy
AT avkaramov fembasedcalculationofsoilmasswiththeimpactofdilatancy
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