An elastoplastic 1D winkler model for suction caisson foundations under combined loading
Suryasentana, S. K. and Byrne, B. W. and Burd, H. J. and Shonberg, A.; Cardoso, António S. and Borges, José L. and Costa, Pedro A. and Gomes, António T. and Marques, José C. and Vieira, Castorina S., eds. (2018) An elastoplastic 1D winkler model for suction caisson foundations under combined loading. In: Numerical methods in geotechnical engineering IX. Numerical methods in geotechnical engineering IX, 2 . CRC Press/Balkema, PRT, pp. 973-980. ISBN 9781138544468
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Abstract
Most existing Winkler models use non-linear elastic soil reactions to capture the non-linear behaviour of foundations. These models cannot easily capture phenomena such as permanent displacement, hysteresis and the influence of combined loading on the failure states. To resolve these shortcomings, an elastoplastic Winkler model for suction caisson foundations under combined loading is presented. The proposed model combines Winkler-type linear elastic soil reactions with local plastic yield surfaces to model the non-linear soil response using standard plasticity theory, albeit in a simplified One-Dimensional (1D) framework. The results demonstrate that the model reproduces the appropriate foundation behaviour, comparing closely to Three-Dimensional Finite Element (3DFE) analyses but with the advantage of rapid computation time.
ORCID iDs
Suryasentana, S. K. ORCID: https://orcid.org/0000-0001-5460-5089, Byrne, B. W., Burd, H. J. and Shonberg, A.; Cardoso, António S., Borges, José L., Costa, Pedro A., Gomes, António T., Marques, José C. and Vieira, Castorina S.-
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Item type: Book Section ID code: 76044 Dates: DateEvent27 June 2018Published30 July 2017AcceptedSubjects: Technology > Engineering (General). Civil engineering (General)
Science > MathematicsDepartment: Faculty of Engineering > Civil and Environmental Engineering Depositing user: Pure Administrator Date deposited: 08 Apr 2021 10:43 Last modified: 13 Nov 2024 07:18 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/76044