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Numerical modeling of geosynthetic reinforced soil retaining walls with different toe restraint conditions.

Authors :
Zhang, Wan
Chen, Jian-feng
Source :
Geotextiles & Geomembranes. Feb2023, Vol. 51 Issue 1, p16-29. 14p.
Publication Year :
2023

Abstract

This paper reports numerical modeling of the prototype geosynthetic reinforced soil (GRS) walls corresponding to four centrifuge models that have different toe restraint conditions. The development of the interface stresses and displacements at wall toe during wall construction is investigated to understand how the toe carries load in the GRS walls with a practical toe structure. The numerical results show good agreement with the data from the centrifuge modeling. For the GRS walls with a leveling pad embedded in foundation soil, the shear resistance at the facing block-leveling pad interface acts as the toe resistance to counterbalance a portion of horizontal earth load, while the leveling pad-foundation soil interface play no role in wall performance because the soil passive resistance in front of the leveling pad inhibits the development of the shear stress and displacement on this interface. For the GRS walls with an exposed leveling pad, it is the leveling pad-foundation soil interface that works for carrying the earth load because the wall is more likely to slide along this weaker interface. The contribution of the toe to load capacity depends on the shear strength of the effective toe interface that contributes to the resistance against the earth load. • Paper reports numerical modeling of four prototype GRS walls corresponding to the centrifuge models at a specific centrifugal acceleration. • The effect of toe restraint conditions on the development of interface stresses and displacements at wall toe during wall construction was investigated. • How the toe carries load in the GRS walls with a practical toe structure was analyzed. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02661144
Volume :
51
Issue :
1
Database :
Academic Search Index
Journal :
Geotextiles & Geomembranes
Publication Type :
Academic Journal
Accession number :
160632746
Full Text :
https://doi.org/10.1016/j.geotexmem.2022.09.002