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Numerical simulation of maximum wave loads and run-up heights on offshore wind turbine foundations influenced by the instability of bichromatic wave groups

机译:近海风力涡轮机基础的最大波浪荷载与升温高度的数值模拟,受到非摩尔势的不稳定性

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摘要

In this paper, maximum wave loads and run-up heights around the columns of Offshore Wind Turbine (OWT) foundations for different types by adopting a normalized modulation parameter (delta) over cap were preliminarily analyzed. In order to simulate the evolution of modulated wave groups, bichromatic waves were selected and validated by the experimental data of Tainan Hydraulics Laboratory. The accuracy of wave-structure interaction was also examined by comparing with the model tests of wave loads for the jacket support structure in the wave flume. The quasi-static force and the dynamic force would be separated by using the band-pass filter. In terms of the quasi-static force, it can be estimated by the monochromatic wave and be calibrated in the Morison's load formula. By means of the deconvolution method, the maximum force is well calculated for further obtaining the impact coefficient. The impact coefficients subject to (delta) over cap for different OWT foundations were also summarized. Meanwhile, the normalized run-up heights around the columns of OWT foundations would be discussed qualitatively and quantitatively. Eventually, the impact coefficient and the normalized run-up height would be discussed according to the variation of the curling factor in different wave conditions.
机译:在本文中,预先分析了通过采用盖帽上的归一化调制参数(Delta)的海上风力涡轮机(OWT)基础围绕海上风力涡轮机(OWT)基础的最大波浪和升高高度。为了模拟调制波组的演变,通过台南液压实验室的实验数据选择并验证了双色波。还通过与波浪管中的夹套支撑结构的波浪载荷的模型测试进行比较,检查波结构相互作用的准确性。通过使用带通滤波器来分离准静态力和动态力。就准静态力而言,可以通过单色波估计并在摩托的负载公式中校准。借助于解卷积方法,计算最大力,以进一步获得冲击系数。还总结了对不同OWT基金会帽的(Delta)的冲击系数。同时,将定性和定量地讨论OWT基础围绕OWT基础围绕的规范化的延伸高度。最终,将根据不同波条件的卷曲因子的变化来讨论冲击系数和归一化的延伸高度。

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