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dc.contributor.authorNaghibi, Farzaneh
dc.date.accessioned2014-12-15T18:20:28Z
dc.date.available2014-12-15T18:20:28Z
dc.date.issued2014-12-15
dc.identifier.urihttp://hdl.handle.net/10222/56015
dc.description.abstractAlthough the settlement of deep foundations (piles, hereafter) is not generally a concern if the piles are driven to refusal, settlement can become a design issue if no stiff substratum is encountered. The settlement of individual and pairs of floating piles founded in a three-dimensional spatially random soil model are studied using finite element methods. A probabilistic model for total and differential settlement is developed and validated by Monte Carlo simulation. Moreover, this study investigates the reliability-based design factors required for the serviceability limit state design of deep foundations and recommends the geotechnical resistance and consequence factors required to achieve specified target reliability indices against excessive settlement of deep foundations. The effect of pile redundancy on geotechnical system design is also investigated.en_US
dc.language.isoenen_US
dc.subjectdesignen_US
dc.subjectelasticity
dc.subjectfailure
dc.subjectfinite-element modelling
dc.subjectlimit state design/analysis
dc.subjectpiles
dc.subjectsettlement
dc.subjectstatistical analysis
dc.subjectredundancy
dc.subjectdifferential settlement
dc.subjectfoundations
dc.titleSERVICEABILITY LIMIT STATE DESIGN OF DEEP FOUNDATIONSen_US
dc.date.defence2014-11-21
dc.contributor.departmentDepartment of Engineering Mathematics & Internetworkingen_US
dc.contributor.degreeDoctor of Philosophyen_US
dc.contributor.external-examinerDr. Dennis E. Beckeren_US
dc.contributor.graduate-coordinatorDr. Guy C. Kemberen_US
dc.contributor.thesis-readerDr. Craig B. Lakeen_US
dc.contributor.thesis-readerDr. William J. Phillipsen_US
dc.contributor.thesis-supervisorDr. Gordon A. Fentonen_US
dc.contributor.ethics-approvalNot Applicableen_US
dc.contributor.manuscriptsNoen_US
dc.contributor.copyright-releaseNoen_US
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