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Evaluation of vertically and laterally loaded bucket foundation in clay using a three-dimensional displacement approach
Authors:Hiroyoshi Hirai
Institution:1. Applied Geotechnical Institute, Inc., Hokuto, Yamanashi, Japanojiken@eps4.comlink.ne.jp
Abstract:ABSTRACT

An investigation is made to present analytical solutions provided by a three-dimensional displacement approach for analysis of bucket foundations subjected to vertical and lateral loads in cohesive soils. The nonlinear vertical and lateral stiffness coefficients along the skirt of the bucket foundation in nonhomogeneous soil are presented using three-dimensional solutions for vertical and lateral loads and taking into account the dependence of stiffness coefficients on the shear strain. The vertical, lateral, and rocking stiffness coefficients on the base of the skirt of a bucket foundation are obtained from the solutions of hollow rigid cylindrical punch acting on the surface of a soil. The ultimate vertical stress of a soil under the base of a bucket foundation subjected to vertical and moment loads is presented analytically by considering only compression and ignoring tension on the base. The vertical and lateral yields along the skirt and the compression and shear failures on the base are taken into account in analysis of ultimate load capacities. Envelopes of the combined ultimate horizontal and moment load capacities of a bucket foundation in clay are shown. Relationships between ultimate lateral and moment load capacities and the embedment ratio (skirt length to diameter) are presented.
Keywords:Behavior up to failure  bucket foundation  clay  envelope of ultimate load capacities  nonhomogeneity  three-dimensional analytical solutions  vertical  lateral  and moment loads
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