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  4. Theoretical solutions of laterally loaded fixed-head piles in elastoplastic soil considering pile-head flexural yielding
 
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Theoretical solutions of laterally loaded fixed-head piles in elastoplastic soil considering pile-head flexural yielding

Journal
Canadian Geotechnical Journal
Journal Volume
57
Journal Issue
5
Pages
650-660
Date Issued
2020
Author(s)
Chiou, J.-S.
You, J.-Q.
JIUNN-SHYANG CHIOU  
DOI
10.1139/cgj-2018-0593
URI
https://www.scopus.com/inward/record.url?eid=2-s2.0-85084268006&partnerID=40&md5=a4e5f8da229624a6a50dab62a4e1ecb9
https://scholars.lib.ntu.edu.tw/handle/123456789/547292
Abstract
Group piles with a cap under lateral loading behave like fixed-head piles because of the rotational restraint of the pile cap. They are susceptible to flexural yielding at the pile head due to high bending strains. In addition to soil nonlinearity, the pile-head flexural nonlinearity also significantly contributes to nonlinear responses of the piles, which is not covered in most existing analytical solutions. For a fixed-head pile buried in uniform elastoplastic soils, this study derives analytical solutions for the lateral responses to account for soil yielding, and flexural yielding and failure of the pile section at the pile head. The model assumes elastoplastic Winkler-type soil with constant subgrade stiffness and yield strength and a nonlinear moment�Vcurvature curve for the pile section. Examples are provided to apply the solutions to determine the complete capacity curves (moment and horizontal load) of a fixed-head pile and the derived analytical capacity curves are in good agreement with those from numerical analyses that use nonlinear beam elements to reflect the nonlinear flexural behavior of the pile section. The solutions are also applied to evaluate the influences of the yield displacement of the soil and different forms of simplified nonlinear moment�Vcurvature curves of the pile section on the lateral load�Vdisplacement curves.
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[SDGs]SDG11

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Type
journal article

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