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机译:海洋工程

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摘要

Geotechnical design of offshore shallow foundations is generally based on a cyclically degraded shear strength, typically determined from a shear strain or pore pressure accumulation procedure based on contour diagrams derived from laboratory tests. The procedure was initially developed for gravity-based structures and is now used for a wider range of offshore applications including shallow foundations for subsea structures that are subjected to different cyclic loading regimes. The applicability of the traditional equivalent cyclic shear strength approach based on the accumulation procedure is investigated for a specific type of subsea structure, the Zero-Radius Bend (ZRB) trigger. A series of centrifuge tests have been performed on a shallow skirted foundation on normally consolidated kaolin clay under a range of horizontal cyclic load sequences typical of those applied to foundations of ZRB triggers during pipe-laying. The observed performance from the centrifuge tests is compared with predictions of foundation performance using the traditional strain accumulation procedure. It is shown that the traditional procedure over predicts strength degradation at the end of the particular cyclic load sequences. The findings indicate that a performance-based approach may be more appropriate for the geotechnical design of these foundations and other foundations with a high tolerance to displacement.
机译:海上浅层基础的岩土工程设计通常基于周期性降低的抗剪强度,通常是根据基于实验室测试的轮廓图根据剪应变或孔隙压力累积程序确定的。该程序最初是针对基于重力的结构而开发的,现在已用于更广泛的海上应用,包括承受不同循环载荷方式的海底结构的浅基础。研究了基于累积过程的传统等效循环抗剪强度方法对特定类型的海底结构零半径弯曲(ZRB)触发器的适用性。在正常固结的高岭土上的浅裙边基础上,在一系列水平循环荷载序列下进行了一系列离心试验,这些水平荷载序列典型地是在管道铺设过程中应用于ZRB触发器基础上的那些荷载。使用传统的应变累积程序,将离心测试中观察到的性能与基础性能的预测值进行比较。结果表明,传统方法过高地预测了特定循环载荷序列结束时的强度下降。研究结果表明,基于性能的方法可能更适合这些地基以及其他对位移具有较高承受力的地基的岩土工程设计。

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  • 来源
    《Oceanographic Literature Review》 |2019年第8期|1875-1879|共5页
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