Cyclic overlay model of py curves for laterally loaded monopiles in cohesionless soil

IF 3.6 Q3 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Junnan Song, Martin Achmus
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引用次数: 0

Abstract

Abstract. The bearing behaviour of large-diameter monopile foundations for offshore wind turbines under lateral cyclic loads in cohesionless soil is an issue of ongoing research. In practice, mostly the p–y approach is applied in the design of monopiles. Recently, modifications of the original p–y approach for monotonic loading stated in the API regulations have been proposed to account for the special bearing behaviour of large-diameter piles with small length-to-diameter ratios. However, cyclic loading for horizontally loaded piles predominates the serviceability of the offshore wind converters, and the actual number of load cycles cannot be considered by the cyclic p–y approach of the API regulations. This research therefore focuses on the effects of cyclic loading on the p–y curves along the pile shaft and aims to develop a cyclic overlay model to determine the cyclic p–y curves valid for a lateral load with a given number of load cycles. A stiffness degradation method (SDM) is applied in a three-dimensional finite element model to determine the effect of the cyclic loading by degrading the secant soil stiffness according to the magnitude of cyclic loading and number of load cycles based on the results of cyclic triaxial tests. Thereby, the numerical simulation results are used to develop a cyclic overlay model, i.e. an analytical approach to adapt the monotonic (or static) p–y curve to the number of load cycles. The new model is applied to a reference system and compared to the API approach for cyclic loads.
无黏性土中单桩横向加载p-y曲线的循环叠加模型
摘要海上风力发电机组大直径单桩基础在无粘性土中横向循环荷载作用下的承载性能是一个正在研究的问题。在实践中,p-y方法大多应用于单桩的设计。最近,为了考虑长径比小的大直径桩的特殊承载行为,提出了对API规范中规定的单调荷载的原始p-y方法的修改。然而,水平加载桩的循环荷载在海上风力变流器的使用性能中占主导地位,API规范的循环p-y方法不能考虑实际的荷载循环次数。因此,本研究侧重于循环荷载对沿桩轴p-y曲线的影响,并旨在建立一个循环覆盖模型,以确定在给定荷载循环次数的水平荷载下有效的循环p-y曲线。在三维有限元模型中,采用刚度退化法(SDM),根据循环荷载的大小和循环三轴试验结果,对割线土刚度进行退化,以确定循环荷载的影响。因此,数值模拟结果用于建立循环叠加模型,即一种使单调(或静态)p-y曲线适应荷载循环次数的解析方法。将新模型应用于一个参考系统,并与循环荷载的API方法进行了比较。
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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来源期刊
Wind Energy Science
Wind Energy Science GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
6.90
自引率
27.50%
发文量
115
审稿时长
28 weeks
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