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A multi-spring model for monopile analysis in soft clays

机译:软粘土中的单升性分析多弹簧模型

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The offshore wind industry in China has seen a rapid development in recent years and is projected to account for half of global yearly installed capacity in the years to come. Monopiles are a popular foundation solution for supporting offshore wind turbines. However, due to challenging seabed soil conditions, which often feature thick normally consolidated soft clays and harsh environmental loading (i.e. frequent occurrence of typhoons), extremely long monopiles are often designed. The large monopiles are costly to fabricate and install and sometimes kills the viability of the concept in cases where the bedrock is relatively shallow and expensive piling in rock is otherwise required. However, the state-of-practice for designing these monopiles in clays is typically by using the API p-y springs, which are widely known to underestimate soil-pile interaction stiffness and capacity for large diameter monopiles. Improvement to the design method can therefore have significant economic implications to the industry. The paper presents an effort toward this direction. A multi-spring beam-column model suitable for monopile design in soil conditions in China is proposed. The model features three soil spring components, namely the lateral p-y spring, the pile tip base shear s-y spring and rotational m-theta springs along the pile shaft. The validity of the model is verified by a comprehensive suite finite element parametric analyses. Guidance for incorporating the cyclic loading effect into design is also provided. The model proposed in this paper has large potentials for application in design practice.
机译:近年来,中国的海上风力行业迅速发展,并预计将在未来几年占全球年度装运能力的一半。单储物是一种热门的基础解决方案,用于支撑近海风力涡轮机。然而,由于海底土壤条件挑战,这通常具有厚的正常固结软粘土和苛刻的环境载荷(即频繁发生Typhoons),通常设计了极长的单一的单一。在制造和安装的情况下,大型幂厚度昂贵,并且有时需要杀死概念的概念的可行性,因为否则需要在岩石中相对较浅且昂贵的堆叠。然而,在粘土中设计这些单一的纯粹的实践通常是通过使用API​​ P-Y弹簧,这普遍众所周知,众所周知地低估了土桩相互作用刚度和大直径单不掺杂的能力。因此,对设计方法的改进可以对行业具有显着的经济影响。本文旨在朝向这个方向努力。提出了一种适用于中国土壤条件中的单升式设计的多弹簧梁柱模型。该模型具有三个土弹簧组件,即横向P-Y弹簧,桩尖剪切S-Y簧和沿桩轴旋转M-THEA弹簧。通过全面的套件有限元参数分析来验证模型的有效性。还提供了将循环加载效果的指导掺入设计。本文提出的模型在设计实践中的应用具有很大的应用。

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