OpenFAST中浮式海上风力发电机子结构灵活性和成员级负载能力

J. Jonkman, R. Damiani, E. Branlard, M. Hall, A. Robertson, G. Hayman
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引用次数: 5

摘要

OpenFAST是一个开源的、基于物理的工程工具,适用于陆基和海上风力涡轮机的负载分析,包括浮式海上风力涡轮机。在OpenFAST中,浮式风力涡轮机的子结构一直被建模为一个刚体,其流体动力载荷集中在一个点上,这使得该工具能够预测浮式子结构的整体响应,但不能预测其单个构件内的结构载荷。这种限制是设计浮动子结构的一个障碍,尤其是更流线型、更灵活、更经济的新设计。本文介绍了OpenFAST中用于模拟浮动子结构灵活性和成员级负载的新功能的开发计划,包括正确理解和应用它们所需的功能需求和建模方法。
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Substructure Flexibility and Member-Level Load Capabilities for Floating Offshore Wind Turbines in OpenFAST
OpenFAST is an open-source, physics-based engineering tool applicable to the load analysis of land-based and offshore wind turbines, including floating offshore wind turbines. The substructure for a floating wind turbine has historically been modeled in OpenFAST as a rigid body with hydrodynamic loads lumped at a point, which enabled the tool to predict the global response of the floating substructure but not the structural loads within its individual members. This limitation is an impediment to designing floating substructures — especially newer designs that are more streamlined, flexible, and cost-effective. This paper presents the development plan of new capabilities in OpenFAST to model floating substructure flexibility and member-level loads, including the functional requirements and modeling approaches needed to understand and apply them correctly.
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A Low Specific Mass, Free Floating Wind Energy Concept up to 40 MW Effect of Nacelle Drag on the Performance of a Floating Wind Turbine Platform Assessing the Impact of Integrating Energy Storage on the Dynamic Response of a Spar-Type Floating Wind Turbine Lifting Line Free Wake Vortex Filament Method for the Evaluation of Floating Offshore Wind Turbines: First Step — Validation for Fixed Wind Turbines Substructure Flexibility and Member-Level Load Capabilities for Floating Offshore Wind Turbines in OpenFAST
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