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  4. Numerical modeling and neural networks to identify model parameters from piezocone tests: I. FEM analysis of penetration in two-phase continuum
 
research article

Numerical modeling and neural networks to identify model parameters from piezocone tests: I. FEM analysis of penetration in two-phase continuum

Obrzud, Rafal F.
•
Truty, Andrzej
•
Vulliet, Laurent  
2011
International Journal For Numerical And Analytical Methods In Geomechanics

This study presents a numerical approach designed for material parameter identification for the coupled hydro-mechanical boundary value problem (BVP) of the piezocone test (CPTU) in normally and lightly overconsolidated clayey soils. The study is presented in two related papers and it explores the possibility of using neural networks (NNs) to solve the complex inverse problem of the penetration test, including partially drained conditions. It has been demonstrated that the development of NN-based inverse models can be based on training data sets that consist of pseudo-experimental measurements derived from numerical simulations of the piezocone test. The first paper presents the development of the FE model of the studied problem, which can be used to generate a training data population corresponding to typical piezocone measurements that are obtained for clayey soils. The paper contains a detailed description of the numerical model with a sensitivity analysis with respect to different model parameters including the effect of partial drainage. The analysis also includes the model verification by means of a comparative analysis with numerical models of penetration proposed in the literature, as well as experimental evidence. Finally, owing to the loss of accuracy observed when applying a 'rough' frictional interface in the Updated Lagrangian formulation, an equivalent semi-numerical model for the piezocone test is proposed, taking into account a possible occurrence of partial drainage during penetration. Copyright (C) 2010 John Wiley & Sons, Ltd.

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Type
research article
DOI
10.1002/nag.972
Web of Science ID

WOS:000296133400001

Author(s)
Obrzud, Rafal F.
Truty, Andrzej
Vulliet, Laurent  
Date Issued

2011

Publisher

Wiley-Blackwell

Published in
International Journal For Numerical And Analytical Methods In Geomechanics
Volume

35

Start page

1703

End page

1730

Subjects

parameter identification

•

penetration

•

piezocone

•

Modified Cam clay

•

soft clay

•

Finite-Element-Analysis

•

Undrained Cavity Expansion

•

Cone Penetration

•

Constitutive Model

•

Cohesionless Soil

•

Driven Piles

•

Clay

•

Resistance

•

Mechanics

•

Cpt

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMS  
Available on Infoscience
December 16, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/73391
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