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Effect of Load Eccentricity on the Bearing Capacity of Strip Footings on Non-homogenous Clay Overlying Bedrock

机译:荷载偏心率对非均质黏土基岩带状地基承载力的影响

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摘要

In underwater infrastructure design, foundations are embedded in soft clay seabeds that exhibited non-homogeneity of cohesion, and subjected to combined actions of vertical, inclined or eccentric loads due to the environmental conditions such as self-weight, wind and wave forces acting on substructure. This paper investigates the undrained bearing capacity for surface and embedded strip footings on non-homogenous clay overlying bedrock. Elasto-plastic finite element analyses are carried out for perfectly rough strip footings on Tresca soil under vertical eccentric loads. Meyerhof’s effective width rule is examined for the cases of surface and embedded footings in non-homogeneous clay. The effect of load eccentricity on the distribution of the normal stresses under strip footings is also investigated in this study. It is found that the effective width rule provides a conservative estimate of the bearing capacity. The elasto-plastic calculations predict that tensile stresses occur for surface footings because of the full bonding at the soil-footing interfaces, while for embedded footings, there is no tensile stresses.
机译:在水下基础设施设计中,地基埋在软黏土海床中,这些海床表现出非均匀的内聚力,并由于环境条件(例如作用在下部结构上的自重,风和波浪力)而承受垂直,倾斜或偏心荷载的组合作用。本文研究了非均质粘土覆盖基岩上的表层和嵌入式条形基础的不排水承载力。在垂直偏心载荷下,对Tresca土上的完美地基进行了弹塑性有限元分析。对于非均质粘土中的表层和埋入式基础情况,研究了Meyerhof的有效宽度规则。在这项研究中,还研究了载荷偏心率对带状基础下法向应力分布的影响。发现有效宽度规则提供了对承载能力的保守估计。弹塑性计算预测,由于土壤-基础界面处的完全粘合,表面基础会产生拉应力,而对于嵌入式基础则没有拉伸应力。

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