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Determination of depth-of-fixity point for laterally loaded vertical offshore piles: A new approach

机译:确定横向装载的垂直海上桩的密度点的确定:一种新方法

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摘要

Offshore piles are used as foundations for various marine structures such as quay walls, dolphins, and offshore platforms. Offshore piles are primarily subjected to lateral loads from wind, waves and currents, which is particularly challenging for piles with substantial free length above the seabed. This paper presents a new approach to determine the depth-to-fixity and the depth of the apparent plastic hinge of offshore piles considering the pile head condition, type of soil below, and the soil nonlinearity employing the p-y curve method. A comprehensive numerical investigation was conducted covering a wide range of key parameters governing the lateral response of offshore piles. The results of the parametric analysis were used to establish numerical equations to determine the depth-to-fixity and the depth of the apparent plastic hinge for free and fixed head piles embedded either in sand or in clay. In addition, a closed form solution has been developed utilizing the equivalent cantilever fixed-base model to estimate the lateral capacity of an offshore pile at specified lateral deflection and the corresponding maximum bending moment. The new approach was verified by field load test results conducted on partially embedded piles in sand and clay.
机译:海上堆被用作各种海洋结构的基础,如码头墙,海豚和海上平台。海上桩主要受到风,波浪和电流的横向载荷,这对于海底上方具有大大自由长度的桩特别具有挑战性。本文提出了一种新方法,以确定考虑桩头状况,下面的土壤类型的近海桩的深度塑料铰链的深度和深度,以及采用P-Y曲线法的土壤非线性。进行了综合数值调查,涵盖了控制海上桩的​​侧向响应的广泛关键参数。参数分析的结果用于建立数值方程,以确定用于嵌入沙子或粘土中的自由和固定头部堆的表观塑料铰链的深度和深度。另外,利用等效悬臂固定基础模型开发了封闭的形式解决方案,以估计在特定横向偏转和相应的最大弯矩下的离岸桩的横向容量。通过在砂和粘土的部分嵌入桩上进行的现场负荷测试结果验证了新方法。

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