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Efficient preliminary floating offshore wind turbine design and testing methodologies and application to a concrete spar design

机译:高效的海上浮式风力涡轮机初步设计和测试方法以及在混凝土梁设计中的应用

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摘要

The current key challenge in the floating offshore wind turbine industry and research is on designing economic floating systems that can compete with fixed-bottom offshore turbines in terms of levelized cost of energy. The preliminary platform design, as well as early experimental design assessments, are critical elements in the overall design process. In this contribution, a brief review of current floating offshore wind turbine platform pre-design and scaled testing methodologies is provided, with a focus on their ability to accommodate the coupled dynamic behaviour of floating offshore wind systems. The exemplary design and testing methodology for a monolithic concrete spar platform as performed within the European KIC AFOSP project is presented. Results from the experimental tests compared to numerical simulations are presented and analysed and show very good agreement for relevant basic dynamic platform properties. Extreme and fatigue loads and cost analysis of the AFOSP system confirm the viability of the presented design process. In summary, the exemplary application of the reduced design and testing methodology for AFOSP confirms that it represents a viable procedure during pre-design of floating offshore wind turbine platforms.
机译:海上浮动风力涡轮机行业和研究中当前的主要挑战是设计经济的浮动系统,就平均能源成本而言,该系统可以与固定底海上涡轮机竞争。初步的平台设计以及早期的实验设计评估是整个设计过程中的关键要素。在此贡献中,简要概述了当前的海上浮式风力涡轮机平台的预先设计和规模化测试方法,重点是其适应海上浮式风力系统耦合动态行为的能力。介绍了在欧洲KIC AFOSP项目中执行的整体式混凝土梁平台的示例性设计和测试方法。与数值模拟相比,实验测试的结果进行了介绍和分析,对于相关的基本动态平台属性显示出很好的一致性。 AFOSP系统的极限载荷和疲劳载荷以及成本分析证实了所提出设计过程的可行性。总而言之,针对AFOSP的简化设计和测试方法的示例性应用证实,它代表了浮动海上风力涡轮机平台的预设计期间的可行程序。

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