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Two-Dimensional Physical and Numerical Modeling of a Pile-Supported Earth Platform over Soft Soil
Authors:Orianne Jenck  Daniel Dias  Richard Kastner
Affiliation:1Postdoctoral Research Fellow, Civil Engineering Research Laboratory, INSA de Lyon, Bat. JCA Coulomb, Domaine Scientifique de la Doua, 69621 Villeurbanne Cedex, France. E-mail: orianne.jenck@insa-lyon.fr
2Professor Assistant, Civil Engineering Research Laboratory, INSA de Lyon (corresponding author). E-mail: daniel.dias@insa-lyon.fr
3Professor, Civil Engineering Research Laboratory, INSA de Lyon. E-mail: richard.kastner@insa-lyon.fr
Abstract:This paper focuses on the mechanisms occurring in a granular earth platform over soft ground improved by rigid piles. Two-dimensional physical model experiments were performed using the Schneebeli’s analogical soil to investigate the load transfer mechanisms by arching and the settlement reduction and homogenization. Experimental outputs are compared to results obtained on a numerical model using a plane strain continuum approach. The impact of the constitutive model complexity to simulate the platform material behavior was first assessed, but no large difference was recorded. As far as the proposed model, which takes the main features of the observed behavior satisfactorily into account, the numerical procedure could be validated and the parametric studies extended numerically. Both approaches of this study underlined the main geometrical and geotechnical parameters which should inevitably be taken into account in a simplified design method, namely the capping ratio, the platform height, and the platform material shear strength.
Keywords:Piles  Soil stabilization  Granular materials  Numerical models  Scale models  Two-dimensional models  Soft soils  
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