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Vertical bearing capacity of bucket foundations in sand

机译:沙子中桶形基础的竖向承载力

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摘要

Bucket foundations are widely used to support offshore structures. The vertical capacity of bucket foundations in clays has been extensively studied. However, the unique load transfer characteristics of bucket foundations in sands are not well documented. We perform a series of two-dimensional axisymmetric finite element analyses using the Mohr-Coulomb model following a non-associated flow rule. Because the depth-to-diameter ratio of a bucket foundation is much lower compared with that of a pile, a higher level of arching is shown to occur in the soil. A pronounced increase in the horizontal stress and a corresponding increase in the shaft resistance (Q(s)) are observed. The arching also causes the failure surface to widen due to additional vertical stress imposed on the soil. Based on numerical results, predictive equations for Q(s) and a combined shape and depth factor for the base capacity (Q(b)) are proposed for bucket foundations in sands that follow a non-associated flow rule. (C) 2016 Elsevier Ltd. All rights reserved.
机译:桶形基础被广泛用于支撑海上结构。桶形基础在粘土中的垂直承载能力已得到广泛研究。但是,沙子中桶形基础的独特载荷传递特性尚未得到充分证明。我们遵循非关联流规则使用Mohr-Coulomb模型执行一系列二维轴对称有限元分析。由于桶形基础的深径比比桩基的深径比低得多,因此表明在土壤中会出现较高的拱形度。观察到水平应力明显增加,轴电阻(Q(s))相应增加。由于施加在土壤上的附加垂直应力,该拱形还会导致破坏面扩大。基于数值结果,提出了遵循非关联流法则的砂土桶形基础中Q(s)的预测方程以及基础容量(Q(b))的组合形状和深度因子。 (C)2016 Elsevier Ltd.保留所有权利。

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