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Theoretical modeling of horizontal-vertical loading of circular foundation in the offshore Niger Delta of Nigeria

机译:尼日利亚近海尼日尔三角洲圆形基础水平竖向荷载的理论模型

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摘要

Theoretical modeling on the performance of offshore circular foundation installed on clay and subjected to combined horizontal-vertical load in the Niger Delta has been attempted. Analytical methods of Skempton, Brinch Hanson, and Vesic were used to evaluate concentric vertical loads on offshore piles. Horizontal forces, H were evaluated for varying wave heights on circular piles of 1.0 to 2.0 m diameters using available meteorological and oceanographic offshore records. The results revealed that sliding failure commenced when the ratio of vertical load to footing area and undrained shear strength, V/As_u assumed negative values (i.e. at H > 0.082 As_u). The maximum mean vertical load is 6.107 As_u, and to guide against the occurrence of bearing capacity failure by sliding, V > 0.75H for cases where the ratio of footing depth to breadth ratio is lesser than one, (D/B < 1.0) and V > 0.70H when footing depth to breadth ratio is greater than one (D/B > 1.0).
机译:已尝试对尼日尔三角洲中安装在粘土上并承受水平-垂直荷载的海上圆形基础的性能进行理论建模。 Skempton,Brinch Hanson和Vesic的分析方法用于评估海上桩上的同心垂直载荷。使用可获得的气象和海洋学近海记录,评估了直径为1.0至2.0 m的圆形桩上水平波动力H的变化波高。结果表明,当竖向荷载与立足面积之比与不排水抗剪强度V / As_u取负值(即H> 0.082 As_u)时,滑动破坏开始。最大平均垂直载荷为6.107 As_u,并且为了防止发生滑动引起的承载能力故障,对于立足深度与宽度之比小于1(D / B <1.0)和V小于0.75H的情况,当立足深度与宽度之比大于1(D / B> 1.0)时,V> 0.70H。

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