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Analysis and Design of Monopile Foundations for Offshore Wind-Turbine Structures

机译:海上风力涡轮机结构纪用基础的分析与设计

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Offshore wind turbines (OWTs) are generally supported by large-diameter monopiles, with the combination of axial forces, lateral forces, bending moments, and torsional moments generated by the OWT structure and various environmental factors resisted by earth pressures mobilized in the soil foundation. The lateral loading on the monopile foundation is essentially cyclic in nature and typically of low amplitude. This state-of-the-art review paper presents details on the geometric design, nominal size, and structural and environmental loading for existing and planned OWT structures supported by monopile foundations. Pertinent ocean-environment loading conditions, including methods of calculation using site-specific data, are described along with wave particle kinematics, focusing on correlations between the loading frequency and natural vibration frequency of the OWT structure. Existing methods for modeling soil under cyclic loading are reviewed, focusing in particular on strain accumulation models that consider pile-soil interaction under cyclic lateral loading. Inherent limitations/shortcomings of these models for the analysis and design of existing and planned OWT monopile foundations are discussed. A design example of an OWT support structure having a monopile foundation system is presented. Target areas for further research by the wind-energy sector, which would facilitate the development of improved analyses/design methods for offshore monopiles, are identified.
机译:海上风力涡轮机(OWTS)通常由大直径单岩支撑,具有由OWT结构产生的轴向力,侧向,弯矩和扭转时刻的组合,以及通过在土壤基础中动员的地球压力抵抗的各种环境因素。单披露基础上的横向装载基本上是循环的,通常是低振幅。这种最先进的审查纸质提供了关于Monopile基金会支持的现有和计划的OWT结构的几何设计,标称尺寸和结构和环境负载的详细信息。相关的海洋环境负载条件,包括使用现场数据计算方法,以及波粒子运动学,专注于OWT结构的加载频率和自然振动频率之间的相关性。综述了在循环载荷下建模土壤的现有方法,特别是在循环横向载荷下考虑桩土相互作用的应变累积模型。讨论了这些模型的固有局限/缺点,用于分析和设计现有和计划的OWT型号纪用基础。提出了具有单披肩基础系统的OWT支撑结构的设计示例。鉴定了风能部门进一步研究的目标领域,这将促进开发海上单一的改进分析/设计方法。

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