Simple Numerical Model to Simulate Penetration Testing in Unsaturated Soils

Cone penetration test in unsaturated sand is modelled numerically using Finite Element Method. Simple elastic-perfectly plastic Mohr-Coulomb constitutive model is modified with an apparent cohesion to incorporate the effect of suction on cone resistance. The Arbitrary Lagrangian-Eulerian (ALE) remes...

Full description

Bibliographic Details
Main Authors: Jarast S. Pegah, Ghayoomi Majid
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:E3S Web of Conferences
Online Access:http://dx.doi.org/10.1051/e3sconf/20160908011
id doaj-f2b81030980e44029f45b56d3e30c068
record_format Article
spelling doaj-f2b81030980e44029f45b56d3e30c0682021-02-02T02:13:25ZengEDP SciencesE3S Web of Conferences2267-12422016-01-0190801110.1051/e3sconf/20160908011e3sconf_eunsat2016_08011Simple Numerical Model to Simulate Penetration Testing in Unsaturated SoilsJarast S. Pegah0Ghayoomi Majid1Department of Civil and Environmental Engineering, University of New HampshireDepartment of Civil and Environmental Engineering, University of New HampshireCone penetration test in unsaturated sand is modelled numerically using Finite Element Method. Simple elastic-perfectly plastic Mohr-Coulomb constitutive model is modified with an apparent cohesion to incorporate the effect of suction on cone resistance. The Arbitrary Lagrangian-Eulerian (ALE) remeshing algorithm is also implemented to avoid mesh distortion problem due to the large deformation in the soil around the cone tip. The simulated models indicate that the cone resistance was increased consistently under higher suction or lower degree of saturation. Sensitivity analysis investigating the effect of input soil parameters on the cone tip resistance shows that unsaturated soil condition can be adequately modelled by incorporating the apparent cohesion concept. However, updating the soil stiffness by including a suction-dependent effective stress formula in Mohr-Coulomb material model does not influence the cone resistance significantly.http://dx.doi.org/10.1051/e3sconf/20160908011
collection DOAJ
language English
format Article
sources DOAJ
author Jarast S. Pegah
Ghayoomi Majid
spellingShingle Jarast S. Pegah
Ghayoomi Majid
Simple Numerical Model to Simulate Penetration Testing in Unsaturated Soils
E3S Web of Conferences
author_facet Jarast S. Pegah
Ghayoomi Majid
author_sort Jarast S. Pegah
title Simple Numerical Model to Simulate Penetration Testing in Unsaturated Soils
title_short Simple Numerical Model to Simulate Penetration Testing in Unsaturated Soils
title_full Simple Numerical Model to Simulate Penetration Testing in Unsaturated Soils
title_fullStr Simple Numerical Model to Simulate Penetration Testing in Unsaturated Soils
title_full_unstemmed Simple Numerical Model to Simulate Penetration Testing in Unsaturated Soils
title_sort simple numerical model to simulate penetration testing in unsaturated soils
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2016-01-01
description Cone penetration test in unsaturated sand is modelled numerically using Finite Element Method. Simple elastic-perfectly plastic Mohr-Coulomb constitutive model is modified with an apparent cohesion to incorporate the effect of suction on cone resistance. The Arbitrary Lagrangian-Eulerian (ALE) remeshing algorithm is also implemented to avoid mesh distortion problem due to the large deformation in the soil around the cone tip. The simulated models indicate that the cone resistance was increased consistently under higher suction or lower degree of saturation. Sensitivity analysis investigating the effect of input soil parameters on the cone tip resistance shows that unsaturated soil condition can be adequately modelled by incorporating the apparent cohesion concept. However, updating the soil stiffness by including a suction-dependent effective stress formula in Mohr-Coulomb material model does not influence the cone resistance significantly.
url http://dx.doi.org/10.1051/e3sconf/20160908011
work_keys_str_mv AT jarastspegah simplenumericalmodeltosimulatepenetrationtestinginunsaturatedsoils
AT ghayoomimajid simplenumericalmodeltosimulatepenetrationtestinginunsaturatedsoils
_version_ 1724310250707746816