Effect of Underlying Sand Layer on Undrained Capacity of Spudcan Foundations in Soft Clay Under Combined Loading

Yifa Wang, M. Cassidy, B. Bienen
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引用次数: 2

Abstract

During the operational phase, the spudcan foundations of a mobile jack-up rig are subjected to combined vertical, horizontal and moment loading. Although previous research has indicated a substantial increase in vertical bearing capacity when a spudcan penetrates through a soft clay layer towards a sand layer, the response of spudcan foundations subjected to combined loadings in such stratification has yet to be understood. This study investigates the effect of the underlying stronger sand layer on the undrained VHM capacity of a spudcan foundation using three-dimensional small-strain finite element analysis. Results show the significant increase in vertical and moment capacity, whereas the horizontal capacity is minimally affected. The soil failure mechanisms are identified and changes in the size and shape of failure envelopes, accounting for the sand layer underneath, are quantified. An analytical expression is proposed to predict the combined capacity of a spudcan foundation in clay overlying sand.
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下垫砂层对软土铲底不排水能力的影响
在作业阶段,移动式自升式钻井平台的分离管基础要承受垂直、水平和力矩的综合载荷。虽然先前的研究表明,当铲球穿过软粘土层向砂层渗透时,垂直承载力会大幅增加,但在这种分层中,铲球基础在组合载荷下的响应尚不清楚。采用三维小应变有限元分析方法,研究了下伏较强砂层对铲式地基不排水VHM能力的影响。结果表明,竖向承载力和弯矩承载力显著增加,而水平承载力受影响最小。确定了土壤破坏机制,并量化了破坏包络层的大小和形状的变化,其中包括下面的砂层。提出了一种预测粘土上覆砂地基综合承载力的解析表达式。
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