Cyclic p-y Curves in Clays for Offshore Structures

Youhu Zhang, K. Andersen, P. Jeanjean
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引用次数: 4

Abstract

Pile foundations supporting offshore structures are typically subjected to lateral cyclic loading. In design, the pile response under peak design load is generally estimated using a beam-column model where soil-structure interaction is simulated with a series of uncoupled non-linearly force-displacement springs (p-y curves) along the depth of the pile. In clay, the current state-of-practice uses p-y springs derived from some limited field pile tests carried out in the 1950s at Sabine River site, where only one soil type was tested and the cyclic load history applied in the tests was intended to provide a lower bound estimate of soil reaction under cyclic loading. In this study, comprehensive analyses are carried out to investigate the pile responses under two representative storm load histories (Gulf of Mexico (GoM) hurricannes and North Sea winter storms), in three different soil conditions (Gulf of Mexico clays, North Sea soft clays and North Sea stiff clays) for two types of structures (jackets and spars). The analyses use a numerical procedure that was developed in recent years and is fundamentally based on soil response measured at element level. From the parametric analyses, cyclic p-y curves are recommended for the design of jackets under GoM and North Sea metocean and soil conditions, and for spar anchors in GoM conditions.
近海结构粘土的循环p-y曲线
支撑海上结构的桩基通常要承受侧向循环荷载。在设计中,通常采用梁柱模型来估计峰值设计荷载下的桩响应,梁柱模型通过沿桩深的一系列不耦合非线性力-位移弹簧(p-y曲线)来模拟土-结构相互作用。在粘土中,目前的实践状态使用的p-y弹簧是从1950年代在萨宾河遗址进行的一些有限的现场桩试验中得到的,在那里只测试了一种土壤类型,并且在试验中应用的循环荷载历史旨在提供循环荷载下土壤反应的下限估计。在本研究中,对两种结构(导管和梁)在三种不同的土壤条件(墨西哥湾粘土、北海软粘土和北海硬粘土)下,两种典型风暴荷载历史(墨西哥湾飓风和北海冬季风暴)下的桩响应进行了综合分析。分析使用近年来发展起来的一种数值程序,基本上是基于在元素水平上测量的土壤反应。通过参数分析,推荐循环p-y曲线用于墨西哥湾和北海海洋和土壤条件下的导管架设计,以及墨西哥湾条件下的桅杆锚杆设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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