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State-of-the-art framework for design of offshore wind jacket foundations

机译:海上风衣基础设计的最新框架

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摘要

A state-of-the-art framework for the design of jacket foundations for offshore wind turbines is presented here. The article illustrates how an efficient, yet highly accurate, structural model can be achieved through a combination of a comprehensive beam finite element model and detailed shell/solid finite element models, where the former suffices for representing the overall global behaviour and the latter improves the representation of non-trivial structural details such as the transition piece and tubular joints. This approach allows the verification of standard structural elements according to various design codes to be automated on beam element level, while the fatigue performance via the hot-spot method as well as detailed stress and buckling analyses of relevant joints and details can be performed based on the detailed shell/solid finite element models readily available for stiffness representation. The computational framework ensures full consistency between the local and global description levels and an efficient cloud interface facilitates the thousands of design load cases that typically require consideration in order that a full detailed design can be simulated within a reasonable timeframe.
机译:这里介绍了用于海上风力涡轮机护套基础设计的最新框架。本文说明了如何通过综合梁有限元模型和详细的壳/实体有限元模型的组合来获得有效但高度准确的结构模型,其中前者足以代表整体的整体行为,而后者则可以改善整体的行为。非平凡的结构细节(例如过渡件和管状接头)的表示。这种方法允许在梁单元级别上根据各种设计规范对标准结构元件进行自动验证,而基于热点方法的疲劳性能以及相关接缝和细节的详细应力和屈曲分析则可以基于详细的壳/实体有限元模型可随时用于刚度表示。该计算框架可确保本地和全局描述级别之间的完全一致性,并且有效的云接口可促进通常需要考虑的数千个设计负载情况,以便可以在合理的时间内模拟完整的详细设计。

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