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A COMPARISON OF TWO COUPLED MODEL OF DYNAMICS FOR OFFSHORE FLOATING VERTICAL AXIS WIND TURBINES (VAWT)

机译:海上浮式竖向风轮机(VAWT)的两种动力学耦合模型的比较

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As part of the deployment of floating offshore wind turbines (FOWTs) in deep sea, robust coupled dynamic design codes based on engineering models are being developed to investigate the behaviour of FOWTs in the offshore environment. The recent re-emerging interest in vertical axis wind turbines (VAWTs) for floating foundation applications has resulted in a number of design codes being developed concurrently by different researchers. In this study, two such design codes for floating VAWTs developed at Cranfield University and the Norwegian University of Science and Technology are compared through a series of increasingly complex simulation load cases. A floating VAWT design was specified to be used in this study. The rotor is based on the Darrieus Troposkein shape and is the same used within the DeepWind VAWT spar concept, with a 5MW rated capacity. The floating support structure is a semi-submersible that is being used in the Offshore Code Collaboration Continuation (OC4) Phase Ⅱ project for floating horizontal axis wind turbines. A series of load cases were set out to assess and compare the two different design codes. A comparison of the performance of the two design tools is presented, illustrating their level of maturity and areas of improvement.
机译:作为在深海中部署浮式海上风力涡轮机(FOWT)的一部分,正在开发基于工程模型的鲁棒耦合动态设计代码,以研究FOWT在海上环境中的行为。最近对于浮基础应用的垂直轴风力涡轮机(VAWT)再次引起了人们的兴趣,导致不同研究人员同时开发了许多设计规范。在这项研究中,通过一系列日益复杂的模拟载荷工况,比较了克兰菲尔德大学和挪威科技大学为浮动VAWT设计的两种设计规范。浮动VAWT设计被指定在这项研究中使用。转子基于Darrieus Troposkein形状,与DeepWind VAWT晶石概念中使用的转子相同,额定容量为5MW。浮动支撑结构是一种半潜式结构,用于浮式水平轴风力涡轮机的海上代码协作延续(OC4)Ⅱ期项目中。列出了一系列工况,以评估和比较两种不同的设计规范。比较了这两种设计工具的性能,说明了它们的成熟度和需要改进的地方。

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