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Multi-objective optimization of orthogonal TLCDs for reducing fatigue and extreme loads of a floating offshore wind turbine

机译:正交TLCD的多目标优化,可减少海上浮动风力发电机的疲劳和极端负荷

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摘要

Floating offshore wind turbines have substantial potential to harness energy in deep-water locations, however, compared to fixed-bottom offshore wind turbines, they also have more complicated dynamic behavior that may lead to larger structural loads. In this paper, structural control using tuned liquid column dampers (TLCDs) is applied to a tension leg platform type floating offshore wind turbine in order to improve the structural response and reliability of the system. A structural control module in the aero-hydro-servo-elastic wind turbine simulator, FASTv8, is developed that enables the analysis of passive orthogonal tuned liquid column dampers with variable cross-sectional areas. Multi-objective optimization using the nondominated sorting genetic algorithm II is solved to provide an optimal Pareto front that can be used to select designs of the orthogonal TLCDs. With the optimal designs, non-linear fully-coupled time marching simulations are conducted to evaluate the impacts of the orthogonal TLCDs on reducing fatigue and extreme loads. The simulation results demonstrate the effectiveness of the orthogonal TLCDs on reducing the fore-aft and side-to-side fatigue and extreme loadings.
机译:浮动式海上风力涡轮机具有在深水位置利用能量的巨大潜力,但是,与固定底下的海上风力涡轮机相比,它们还具有更复杂的动态行为,可能导致更大的结构载荷。在本文中,使用调谐液柱阻尼器(TLCD)的结构控制被应用于张紧腿平台型浮式海上风力发电机,以提高系统的结构响应和可靠性。开发了航空-水-伺服-弹性风轮机模拟器FASTv8中的结构控制模块,该模块可分析具有可变截面积的无源正交调谐液柱阻尼器。解决了使用非支配排序遗传算法II的多目标优化问题,以提供可用于选择正交TLCD设计的最佳Pareto前沿。利用最佳设计,进行了非线性全耦合时间行进仿真,以评估正交TLCD对减轻疲劳和极端载荷的影响。仿真结果证明了正交TLCD在减少前后疲劳和左右疲劳以及极端载荷方面的有效性。

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