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Structural topology optimization of the transition piece for an offshore wind turbine with jacket foundation

机译:带护套基础的海上风机过渡件的结构拓扑优化

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The transition piece of a fixed offshore wind turbine is a reinforced part of the support structure that is connected to the wind turbine tower. These structural elements present unique features and are critical components of offshore wind turbines; designed to resist strong bending moments, shear forces and axial loads coming from cyclic environmental loads, such as wind and wave loads, acting during their complete design life of 20 years. Well designed and manufactured transition pieces with optimized ultimate and fatigue capacities, contribute to the structural soundness and reliability of offshore wind turbines. In this paper we investigate the benefits of integrating structural topology optimization in the design process of these elements, specially compared to classical design processes that are strongly based in experience and trial-and-error heuristic procedures. We first develop a solution for a 5 MW reference wind turbine with a jacket support using the classical design process and then apply structural topology optimization techniques to the same design problem. After verification of both solutions, it was found that the optimized solution is lighter and presents hot spots with lower stresses that extend its fatigue life significantly; demonstrating that an integrated design cycle that includes topology optimization can be very effective, speeding up the total design cycle and increasing the reliability of the final product. (c) 2015 Published by Elsevier Ltd.
机译:固定式海上风力涡轮机的过渡件是与风力涡轮机塔架相连的支撑结构的加强部分。这些结构元素具有独特的功能,是海上风力涡轮机的关键组件。设计可抵抗强烈的弯矩,剪切力和来自周期性环境载荷(例如风和波浪载荷)的轴向载荷,这些载荷在其完整的20年设计寿命中起作用。精心设计和制造的过渡件具有最佳的极限和疲劳能力,有助于海上风力涡轮机的结构稳固性和可靠性。在本文中,我们研究了将结构拓扑优化集成到这些元素的设计过程中的好处,特别是与基于经验和试错启发式程序的经典设计过程相比。我们首先使用经典的设计过程为带有夹套支撑的5 MW参考风力发电机开发解决方案,然后将结构拓扑优化技术应用于相同的设计问题。在对两种解决方案进行验证后,发现优化的解决方案更轻,并且具有应力较低的热点,从而显着延长了其疲劳寿命;这表明包括拓扑优化在内的集成设计周期非常有效,可以加快整个设计周期并提高最终产品的可靠性。 (c)2015年由Elsevier Ltd.发布。

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