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DEMONSTRATION OF THE INTELLIGENT MOORING SYSTEM FOR FLOATING OFFSHORE WIND TURBINES

机译:漂浮式海上风轮机智能系泊系统的演示

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Existing mooring systems for floating offshore wind turbines are largely based on designs from the oil and gas industry. Even though these can ensure the safe station keeping of the floating wind platform, the design of the mooring system is currently largely conservative, leading to additional expense in an industry striving to achieve cost reduction. Recent interest in the usage of mooring materials with non-linear stiffness has shown that they have the potential to reduce peak line loads, ultimately reducing cost. This paper reports on the combined physical testing and numerical modeling of a hydraulic-based mooring component with these characteristics. The results suggest that the inclusion of the component as part of the OC4 semi-submersible platform can reduce the peak line loads by 10%. The paper also discusses a number of challenges associated with modeling and testing dynamic mooring materials.
机译:用于浮动海上风力涡轮机的现有系泊系统主要基于石油和天然气工业的设计。尽管这些可以确保浮动风平台的安全站位,但系泊系统的设计目前在很大程度上是保守的,导致在努力降低成本的行业中产生了额外的费用。最近对使用具有非线性刚度的系泊材料的兴趣表明,它们具有降低峰值线路载荷,最终降低成本的潜力。本文报告了具有这些特性的基于液压的系泊部件的组合物理测试和数值模拟。结果表明,将组件作为OC4半潜式平台的一部分包含在内,可使峰值线路负载降低10%。本文还讨论了与动态系泊材料的建模和测试相关的许多挑战。

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