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Simplified load estimation and sizing of suction anchors for spar buoy type floating offshore wind turbines

机译:浮标式浮式海上风力发电机的简化的负荷估算和吸力锚的尺寸

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摘要

Floating offshore wind turbines are complex dynamic structures, and detailed analysis of their loads require coupled aero-servo-hydro-elasto-dynamic simulations. However, time domain approach used for such analysis is slow, computationally expensive and requires detailed data about the wind turbine. Therefore, simplified approaches are necessary for feasibility studies, front-end engineering design (FEED) and the early phases of detailed design. This paper aims to provide a methodology with which the designer of the anchors can easily and quickly assess the expected ultimate loads on the foundations. For this purpose, a combination of a quasi-static wind load analysis and Morison's equation for wave load estimation using Airy waves is employed. Dynamic amplification is also considered and design load cases are established for ultimate limit state (ULS) design. A simple procedure is also presented for sizing suction caisson anchors. All steps are demonstrated through an example problem and the Hywind case study is considered for such purpose.
机译:浮动式海上风力涡轮机是复杂的动态结构,对其负载的详细分析需要耦合的航空-伺服-水-弹力动力学模拟。但是,用于这种分析的时域方法缓慢,计算量大,并且需要有关风力涡轮机的详细数据。因此,对于可行性研究,前端工程设计(FEED)和详细设计的早期阶段,必须采用简化的方法。本文旨在提供一种方法,锚杆的设计者可以使用该方法轻松快速地评估地基上的预期极限载荷。为此,采用了准静态风荷载分析和莫里森方程的组合,以使用艾里波估算波浪荷载。还考虑了动态放大,并为最终极限状态(ULS)设计建立了设计载荷工况。还提出了一个简单的步骤,用于确定沉箱锚的尺寸。通过一个示例问题演示了所有步骤,并且为此目的考虑了Hywind案例研究。

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