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首页> 外文期刊>Coastal Engineering Journal >Optimization of Mooring Systems for Floating Offshore Wind Turbines
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Optimization of Mooring Systems for Floating Offshore Wind Turbines

机译:漂浮式海上风力涡轮机系泊系统的优化

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The paper deals with the optimum design of mooring systems, with chain cable catenary line configuration, for Floating Offshore Wind Turbines with tri-floater support structure in deep waters. Operational and extreme climate conditions are assessed for a candidate location in southern Tyrrhenian Sea, determining wind, wave and current loads. The platform response is assessed in terms of static loads due to turbine thrust, wind, current and steady drift forces. The platform dynamic offset is determined considering both wave-frequency linear and low-frequency second-order motions. Two different mooring systems with 9 (equally spaced) and 11 non-uniformly spaced) lines are selected in order to minimize the total mass; the incidence of both line number and pattern is appreciable and there is wide space to achieve considerable weight reductions, so increasing the overall wind farm cost-performance trade-off.
机译:本文针对具有深水三支撑结构的浮式海上风轮机,采用链式悬链线结构进行了系泊系统的优化设计。对第勒尼安海南部的候选地点的运营和极端气候条件进行了评估,确定了风,浪和潮流负荷。平台响应是根据由涡轮推力,风,电流和稳定漂移力引起的静载荷评估的。平台动态偏移是在考虑波频线性运动和低频二阶运动的情况下确定的。为了使总质量最小化,选择了两个具有9条(等距)和11条非等距线的不同系泊系统。线数和线型的发生率都是可观的,并且存在很大的空间来实现轻量化,因此增加了整个风电场的性价比。

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