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The influence of different wind and wave conditions on the energy yield and downtime of a Spar-buoy floating wind turbine

机译:不同风浪条件对Spar浮标漂浮式风力发电机的发电量和停机时间的影响

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Floating offshore wind turbines (FOWT) have been extensively proven in model tests and are reaching currently a pre-commercial phase where large scale demonstrators are being built offshore. This transition increases the need for models able to assess the performance at suitable offshore locations. A simplified model is proposed that computes the dynamic response of FOWT to different met-ocean conditions and calculates the energy production considering the behavior of the structure as well as the downtime of the turbine due to exceeding operating limits. The model is validated against FAST and applied to three offshore sites. The motions response and hub acceleration are largest for West of Barra followed by Gulf of Maine and Costa Brava. The energy generation is also the highest at West of Barra, where a capacity factor of 75% is reached. A comparison between the energy generation of a bottom-fixed and FOWT indicates a difference of less than 1% for all sites. Finally, a sensitivity analysis of hub acceleration and platform pitch limits studies the impact on the capacity factor and downtime. The model can be useful for feasibility or pre-engineering studies and can be of interest for both investigators and developers of offshore wind projects. (C) 2018 Elsevier Ltd. All rights reserved.
机译:浮式海上风力涡轮机(FOWT)已在模型测试中得到广泛验证,并且目前正进入商业化前阶段,在此阶段,大型示威者正在海上建造。这种过渡增加了对能够评估合适的海上位置的性能的模型的需求。提出了一种简化模型,该模型计算FOWT对不同海洋条件的动态响应,并考虑结构的性能以及由于超出运行极限而导致的涡轮机停机时间来计算能量产生。该模型已针对FAST进行了验证,并应用于三个海上站点。巴拉西部的运动响应和轮毂加速度最大,其次是缅因湾和布拉瓦海岸。巴拉西部的能源生产量最高,达到了75%的容量系数。底部固定和FOWT的能量产生之间的比较表明,所有位置的差异均小于1%。最后,对轮毂加速度和平台俯仰极限进行敏感性分析,以研究对容量因子和停机时间的影响。该模型可用于可行性研究或工程前研究,并且对于海上风能项目的研究人员和开发商都可能感兴趣。 (C)2018 Elsevier Ltd.保留所有权利。

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