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Offshore floating vertical axis wind turbines, dynamics modelling state of the art. Part III: Hydrodynamics and coupled modelling approaches

机译:海上浮动垂直轴风力涡轮机,动力学建模技术发展水平。第三部分:流体动力学和耦合建模方法

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摘要

The need to further exploit offshore wind resources has pushed offshore wind farms into deeper waters, requiring the use of floating support structures to be economically sustainable. The use of conventional wind turbines may not continue to be the optimal design for floating applications. Therefore it is important to assess other alternative configurations in this context. Vertical axis wind turbines (VAWTs) are one promising configuration, and it is important to first understand the coupled and relatively complex dynamics of floating VAWTs to assess the technical feasibility. As part of this task, a series of articles have been developed to present a comprehensive literature review covering the various areas of engineering expertise required to understand the coupled dynamics involved in floating VAWTs. This third article focuses on approaches to develop an efficient coupled model of dynamics (considering aerodynamics, hydrodynamics, structural and mooring line dynamics, and control dynamics) for floating VAWTs, as well as suitable 'semi-analytical' hydrodynamic models for this type of coupled dynamics models. Emphasis is also placed on utilising computationally efficient models and programming strategies.
机译:进一步开发离岸风能资源的需求已将离岸风电场推向更深的水域,要求使用浮动支撑结构在经济上可持续。传统风力涡轮机的使用可能不会继续成为浮动应用的最佳设计。因此,在这种情况下评估其他替代配置非常重要。垂直轴风力涡轮机(VAWT)是一种很有前途的配置,因此首先了解浮动VAWT的耦合和相对复杂的动力学特性以评估技术可行性非常重要。作为此任务的一部分,已开发了一系列文章,以提供全面的文献综述,涵盖了了解浮动VAWT所涉及的耦合动力学所需的工程专业知识的各个领域。第三篇文章重点介绍了为浮动VAWT开发有效的动力学耦合模型(考虑空气动力学,流体动力学,结构和系泊缆动力学以及控制动力学)的方法,以及针对此类耦合的合适的“半解析”流体动力学模型动力学模型。重点还放在利用计算有效的模型和编程策略上。

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