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Effect of kinematic interaction on seismic response of offshore wind turbines on monopiles

机译:运动相互作用对近海风力涡轮机对单岩抗震反应的影响

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摘要

Interest in renewable energy over the past decade has motivated a remarkable research on offshore wind energy. Due to the environmental loading conditions in the early developments of offshore wind farms, the focus of the research and engineering has been on aerodynamic and hydrodynamic subjects. However, earthquake has turned out to be a major design concern in seismic areas such as East Asia, Southern Europe, and United States. The topics include, among others, nonlinear response of foundations, soil liquefaction, and their impacts on foundation performance. An important topic in seismic soil-structure interaction (SSI) analysis is the kinematic seismic response of foundations. This information is crucial for analyses based on the substructuring approach where both kinematic response and foundation impedances are key parameters. While considerable research has been spent on the latter topic, very little has been reported on the kinematic interaction. Large monopoles with low aspect ratios tend to rotate much more than regular piles in pile group foundations due to seismic waves. The rotation leads to additional load on the tower and the turbine. This article uses a rigorous numerical model for monopole-soil interaction in layered soil and computes both rotational and horizontal responses at the pile head (seabed) as functions of frequency. A suite of generic homogeneous and heterogeneous soil profiles with shear moduli representative of clay (generally linear) and sand (generally parabolic) are considered in these analyses. Through representative analyses, both in frequency domain and time domain, it is illustrated how the kinematic interaction influences the earthquake loads imparted to an offshore wind turbine (OWT).
机译:过去十年中对可再生能源的兴趣是对海上风能的显着研究。由于海上风电场早期发展的环境负荷条件,研究和工程的重点是空气动力学和流体动力学受试者。然而,地震已成为东亚,欧洲和美国等地震领域的重大设计问题。主题包括基础,土壤液化的非线性反应,以及对基础性能的影响。地震土 - 结构相互作用(SSI)分析的一个重要课题是基础的运动地震响应。此信息对于基于基于子结构方法的分析至关重要,其中运动响应和基础阻抗都是关键参数。虽然在后一题已经花了相当大的研究,但在运动互动上报告了很少。由于地震波引起的桩基基础,具有低宽高比的大量垄断往往旋转超过普通桩。旋转导致塔架和涡轮机上的额外负载。本文对分层土壤中的单极土相互作用使用严格的数值模型,并计算桩头(海底)作为频率函数的旋转和水平响应。在这些分析中考虑了一种具有粘土(通常是线性的)和砂(通常是线性)和砂(通常是抛物线)的剪切模量的通用均匀和异质土壤曲线套件。通过频域和时域的代表性分析,示出了运动互动如何影响散发到海上风力涡轮机(OWT)的地震载荷。

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