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Dynamic analysis of offshore wind turbine in clay considering soil-monopile-tower interaction

机译:考虑土-单桩-塔相互作用的黏土海上风力发电机动态分析

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摘要

A comprehensive study is performed on the dynamic behavior of offshore wind turbine (OWT) structure supported on monopile foundation in clay. The system is modeled using a beam on nonlinear Winkler foundation model. Soil resistance is modeled using American Petroleum Institute based cyclic p-y and t-z curves. Dynamic analysis is carried out in time domain using finite element method considering wind and wave loads. Several parameters, such as soil-monopile-tower interaction, rotor and wave frequencies, wind and wave loading parameters, and length, diameter and thickness of monopile affecting the dynamic characteristics of OWT system and the responses are investigated. The study shows soil-monopile-tower interaction increases response of tower and monopile. Soil nonlinearity increases the system response at higher wind speed. Rotor frequency is found to have dominant role than blade passing frequency and wave frequency. Magnitude of wave load is important for design rather than resonance from wave frequency.
机译:对黏土单桩基础支撑的海上风力发电机(OWT)结构的动力特性进行了综合研究。该系统使用非线性Winkler基础模型上的梁进行建模。使用基于美国石油协会的循环p-y和t-z曲线对土壤阻力进行建模。考虑风浪荷载,采用有限元方法在时域内进行动力分析。研究了土壤-单桩-塔相互作用,转子和波浪频率,风和波浪载荷参数以及影响单桩系统动力特性和响应的单桩长度,直径和厚度等几个参数。研究表明,土壤-单桩-塔相互作用增加了塔和单桩的响应。土壤非线性增加了较高风速下的系统响应。发现转子频率比叶片通过频率和波动频率起主要作用。波浪荷载的大小对设计很重要,而不是波浪频率的谐振。

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