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Numerical Simulation of the Lateral Loading Capacity of a Bucket Foundation

机译:桶形基础横向承载力的数值模拟

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Bucket foundation has been used extensively in offshore facilities to resist combined lateral and moment loading. The lateral loading capacity and interaction between the soil and foundation is of great interest to geotechnical engineers. In this paper, finite element models of a bucket foundation with two aspect ratios {LID, where L is the skirt length and D is the foundation diameter) of 0.5, 1.33, were created using the ABAQUS program. Centrifuge model tests were also conducted on the two models. The load-displacement curves of the numerical analysis and test results had good agreement, which verified the reliability of the finite element analysis method for this type of problem. In addition, several 3D numerical models of aspect ratio varied from 0.2 to 2.0 were built to evaluate the effect of the aspect ratio on the lateral loading capacity. The development and distribution of stress and plastic strain were used to study the failure mechanism of bucket foundation for different LID ratios. The influence of the position of the lateral load applied was analyzed. Sensitivity analysis for the parameters of material properties such as the internal friction angle, the Young's Modulus, and the friction coefficient between the bucket and soil were performed using non-linear analysis with the Mohr-Coulomb soil model.
机译:桶形基础已广泛用于海上设施,以抵抗侧向和弯矩的组合载荷。岩土工程师对侧向承载能力以及土与地基之间的相互作用非常感兴趣。在本文中,使用ABAQUS程序创建了两个纵横比(LID,其中L为裙边长度,D为基础直径)为0.5、1.33的桶形基础的有限元模型。还在两个模型上进行了离心模型测试。数值分析与试验结果的荷载-位移曲线吻合良好,验证了有限元分析方法对这类问题的可靠性。此外,建立了几个纵横比从0.2到2.0的3D数值模型,以评估纵横比对侧向承载能力的影响。利用应力和塑性应变的发展和分布,研究了不同LID比的桶形基础的破坏机理。分析了施加的横向载荷的位置的影响。使用Mohr-Coulomb土体模型进行非线性分析,对材料特性参数(例如内摩擦角,杨氏模量以及铲斗与土壤之间的摩擦系数)进行敏感性分析。

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