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Assessment of the dynamic behaviour of saturated soil subjected to cyclic loading from offshore monopile wind turbine foundations

机译:海上单桩风力发电机基础循环荷载作用下饱和土动力特性评估

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摘要

The fatigue life of offshore wind turbines strongly depends on the dynamic behaviour of the structures including the underlying soil. To diminish dynamic amplification and avoid resonance, the eigenfrequen-cy related to the lowest eigenmode of the wind turbine should not coalesce with excitation frequencies related to strong wind, wave and ice loading. Typically, lateral response of monopile foundations is analysed using a beam on a nonlinear Winkler foundation model with soil-pile interaction recommended by the design regulations. However, as it will be shown in this paper, the guideline approaches consequently underestimate the eigenfrequency compared to full-scale measurements. This discrepancy leads the authors to investigate the influence of pore water pressure by utilising a numerical approach and consider the soil medium as a two-phase system consisting of a solid skeleton and a single pore fluid. In the paper, free vibration tests are analysed to evaluate the eigenfrequencies of offshore monopile wind turbine foundations. Since the stiffness of foundation and subsoil strongly affects the modal parameters, the stiffness of saturated soil due to pore water flow generated by cyclic motion of monopiles is investigated using the concept of a Kelvin model. It is found that the permeability of the subsoil has strong influence on the stiffness of the wind turbine that may to some extent explain deviations between experimental and computational eigenfrequencies.
机译:海上风力涡轮机的疲劳寿命在很大程度上取决于包括下层土壤在内的结构的动力特性。为了减少动态放大并避免共振,与风力发电机最低本征模式有关的本征频率不应与与强风,海浪和冰负荷有关的激励频率合并。通常,在设计规范建议的具有土-桩相互作用的非线性Winkler基础模型上,使用梁对单桩基础的横向响应进行分析。但是,正如本文将要显示的,与全尺寸测量相比,指南方法因此低估了本征频率。这种差异导致作者使用数值方法研究孔隙水压力的影响,并将土壤介质视为由固体骨架和单一孔隙流体组成的两相系统。在本文中,对自由振动测试进行了分析,以评估海上单桩风力涡轮机基础的特征频率。由于基础和地基的刚度会极大地影响模态参数,因此,使用开尔文模型的概念研究了由于单桩的循环运动而产生的孔隙水流所引起的饱和土的刚度。发现地下土壤的渗透性对风力涡轮机的刚度有很大的影响,这在一定程度上可以解释实验和计算本征频率之间的偏差。

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