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Strongly-coupled aeroelastic free-vortex wake framework for floating offshore wind turbine rotors. Part 2: Application

机译:用于浮动海上风力涡轮机转子的强耦合气动弹性自由涡旋尾流框架。第2部分:申请

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This two-part paper presents the integration of the free-vortex wake method (FVM) with an aeroelastic framework suitable to model the rotor-wake interactions engendered by floating offshore wind turbine (FOWT) rotors in operation. Part 1 of this paper introduces the numerical development and validation of an aeroelastic framework. Due to a lack of experimental aeroelastic benchmarks for FOWTs, a series of validation studies are conducted against the rotor aerodynamic and structural performance of the National Renewable Energy Laboratory (NREL) 5-MW reference wind turbine. Part 2 of this paper focuses on the modeling and simulating different aeroelastic operational conditions of FOWTs. Numerical results of the current framework capture consistently the aerodynamic rotor performance, such as power, thrust, and torque of wave-induced pitching FOWTs. In addition, the presented aeroelastic framework yields additional information about the power, thrust, and torque fluctuations due to the out-of-phase blade passing frequency and corresponding blade deflections. The fidelity of the presented framework demonstrates, for the first time, an FVM-based aeroelastic method capable of carrying out investigations on rotor-wake interactions and relevant aeroelastic phenomena of FOWTs. Published by Elsevier Ltd.
机译:这份由两部分组成的文章介绍了自由涡旋唤醒方法(FVM)与气动弹性框架的集成,该模型适合于模拟运行中的浮动海上风力涡轮机(FOWT)转子引起的转子-尾流相互作用。本文的第1部分介绍了气动弹性框架的数值开发和验证。由于缺乏用于FOWT的实验气动弹性基准,针对国家可再生能源实验室(NREL)5兆瓦参考风力涡轮机的转子空气动力学和结构性能进行了一系列验证研究。本文的第2部分着重于对FOWT的不同气动工作条件进行建模和仿真。当前框架的数值结果一致地捕获了空气动力学的转子性能,例如波浪感应俯仰FOWT的功率,推力和扭矩。另外,由于叶片异相通过频率和相应的叶片挠度,提出的气动弹性框架还产生了有关功率,推力和扭矩波动的附加信息。所提出框架的保真度首次证明了基于FVM的气动方法,该方法能够对FOWT的转子-尾流相互作用和相关气动现象进行研究。由Elsevier Ltd.发布

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