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Model Uncertainties for Soil-Structure Interaction in Offshore Wind Turbine Monopile Foundations

机译:海上风力涡轮机单桩基础中土与结构相互作用的模型不确定性

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Monopiles are the most common type of foundation used for bottom-fixed offshore wind turbines. This investigation concerns the influence of uncertainty related to soil–structure interaction models used to represent monopile–soil systems. The system response is studied for a severe sea state. Three wave-load cases are considered: (i) irregular waves assuming linearity; (ii) highly nonlinear waves that are merged into the irregular wave train; (iii) slamming loads that are included for the nonlinear waves. The extreme response and Fourier amplitude spectra for external moments and mudline bending moments are compared for these load cases where a simpler static pile-cap stiffness and a lumped-parameter model (LPM) are both considered. The fundamental frequency response of the system is well represented by the static pile-cap stiffness model; however, the influence of higher modes (i.e., the second and third modes with frequencies of about 1 Hz and 2 Hz, respectively) is significantly overestimated with the static model compared to the LPM. In the analyzed case, the differences in the higher modes are especially pronounced when slamming loads are not present.
机译:单桩是用于底部固定式海上风力发电机的最常见基础类型。这项研究涉及不确定性的影响,不确定性与用于表示单桩-土壤系统的土壤-结构相互作用模型有关。研究了针对严重海况的系统响应。考虑了三种波浪载荷情况:(i)假定线性的不规则波浪; (ii)高度非线性的波合并到不规则波列中; (iii)冲击非线性波所包含的载荷。在这些考虑了更简单的静力桩帽刚度和集总参数模型(LPM)的荷载工况下,比较了外部力矩和泥线弯曲力矩的极限响应和傅立叶振幅谱。静态桩帽刚度模型很好地表示了系统的基本频率响应。但是,与LPM相比,静态模型会明显高估较高模式的影响(即分别具有大约1 Hz和2 Hz频率的第二和第三模式)。在分析的情况下,当不存在冲击载荷时,较高模式下的差异尤为明显。

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