A Surrogate Modeling Approach for Fatigue Damage Assessment of Floating Wind Turbines

K. Müller, P. Cheng
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引用次数: 2

Abstract

Fatigue analysis for floating wind turbines poses a novel challenge to calculation workflows if a probabilistic load environment is to be considered. The increased complexity of the structure itself as well as its interaction with the environment require a coupled and more detailed analysis with respect to resolution of environmental conditions compared to fixed bottom systems. Different approaches to address the computing challenge for floating turbines are possible to support engineering judgement and have been investigated in the past, with conservative binning on the one end of the accuracy scale and computation intensive Monte Carlo simulations on the other end. This study investigates the feasibility of regression based surrogate models based on radial basis functions. The investigation performed here is aligned with work performed in the H2020 project LIFES50+. Consequently, the considered system is the DTU 10MW Reference Wind Turbine installed on the LIFES50+ OO-Star Wind Floater Semi 10MW. The site under investigation is the LIFES50+ Site B (Gulf of Maine) medium severity representative site. Results show a similar convergence of lifetime fatigue load prediction as with Monte Carlo simulations indicating that this technique may be an alternative if a response model of the considered system is of interest. This may be interesting if damage loading is to be calculated at a different site and if a classification of met-ocean conditions is available.
浮式风力机疲劳损伤评估的代理建模方法
如果考虑概率载荷环境,浮式风力发电机的疲劳分析对计算工作流程提出了新的挑战。与固定底部系统相比,结构本身及其与环境的相互作用的复杂性增加,需要对环境条件的分辨率进行耦合和更详细的分析。解决浮动涡轮机计算挑战的不同方法可能支持工程判断,并且在过去已经进行了研究,在精度尺度的一端使用保守的分组,在另一端使用计算密集型的蒙特卡罗模拟。研究了基于径向基函数的回归代理模型的可行性。这里进行的调查与H2020项目LIFES50+中进行的工作保持一致。因此,考虑的系统是安装在LIFES50+ OO-Star风力浮子半10MW上的DTU 10MW参考风力涡轮机。被调查的站点是LIFES50+站点B(缅因湾)中等严重程度的代表性站点。结果表明,寿命疲劳载荷预测的收敛性与蒙特卡罗模拟相似,表明如果对所考虑的系统的响应模型感兴趣,该技术可能是一种替代方法。如果要在不同的地点计算损害负荷,并且有海洋条件的分类,这可能是有趣的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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