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University of Cambridge

Sand Deformation Mechanisms and Earth Pressures Mobilised with Retaining Wall Movements

Abstract

dc:description.abstract

The conventional design of retaining walls is typically based on ultimate limit state calculations with arbitrary factors of safety, while the assessment of wall deformations is based on serviceability limit state calculations. Such an inconsistency has caused much uncertainty and hence inevitably excessive conservatism in retaining wall designs. The aim of this research is consequently to propose a design method for retaining walls in sand, considering safety and serviceability simultaneously, based on the exploration of sand deformation mechanisms and earth pressure behaviours mobilised with retaining wall movements. The first group of six centrifuge tests was conducted to investigate loose and dense Hostun sand behaviours with a complete set of rigid wall movement modes, i.e. rotation about the base, translation and rotation about the top. Sand deformations and earth pressures were measured and analysed by Particle Image Velocimetry and a Tekscan pressure mapping system, respectively. Simplified deformation mechanisms compatible with active wall movements and a simplified calculation method for the peak maximum shear strain caused by passive wall movements have been proposed based on the analysis of measured sand deformations. Observed earth pressures were quantitatively linked to sand shear strains in order to build simplified constitutive laws approximately characterising the earth pressure mobilisation with active and passive wall movements. A novel design method has subsequently been successfully proposed for flexible retaining walls in sand based on the simplified deformation mechanisms and constitutive laws, validated by the second group of three centrifuge tests involving a flexible retaining wall and two field measurements for the excavations supported by cantilever and propped retaining walls. Such an adaption from rigid wall results to flexible wall designs has completely applied the mobilisable strength design method to geotechnical projects in sand. This novel design method, for the first time, allows designers to rapidly assess the performance of different wall geometries and construction sequences in sand, providing extremely valuable contributions to practical engineering.

Degree

thesis:*
Name dc:type.qualificationname
Doctor of Philosophy (PhD)
Level dc:type.qualificationlevel
Doctoral
Grantor dc:publisher.institution
University of Cambridge
Year dc:date.issued
2020

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Deng, Chuhan
Advisor dc:contributor.advisor
  • Haigh, Stuart

Subjects

dc:subject × 5

Rights

dc:rights
Language dc:language
eng

Identifiers

dc:identifier.*
Author Identifier
0000-0003-3782-0099
OAI identifier oai:identifier
oai:www.repository.cam.ac.uk:1810/317068

Chain of custody

source
Harvested from
Cambridge University
Base URL
api.repository.cam.ac.uk/server/oai/request
Last updated
2026-07-22
Source record
OAI-PMH GetRecord
citation

Deng, Chuhan. Sand Deformation Mechanisms and Earth Pressures Mobilised with Retaining Wall Movements. Doctoral thesis, University of Cambridge, 2020. https://doi.org/10.17863/CAM.64178