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LOAD SENSITIVITY ANALYSIS FOR A FLOATING WIND TURBINE ON A STEEL SEMI-SUBMERSIBLE SUBSTRUCTURE

机译:钢半潜式子结构上浮动风轮机的载荷敏感性分析

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The site-specific load verification for floating offshore wind turbines requires the consideration of the complex interaction of the different system components and their environment. Sensitivity analyses help reducing the simulation amount for both fatigue and ultimate load analysis significantly by highlighting relevant load parameters and increase the understanding for the system behavior in its real environment. Aligned with work in the H2020 project LIFES50+, this study investigates different approaches for global sensitivity analysis using quasi-random sampling for the independent variables. Two different load case groups are analyzed: (1) fatigue loads during power production, (2) ultimate loads during power production and severe sea state. The considered system is the public DTU 10MW turbine's rotor-nacelle assembly, installed on the public NAUTILUS-10 floating structure. Load simulations are performed by using FAST v8. Simulations are set up based on the LIFES50+ Site B (medium severity). A comparison is made to a similar study with a different platform (Olav Olsen semi-submersible) in order to observe if similar conclusions can be reached for the different floater types.
机译:浮动海上风力发电机的现场特定负载验证需要考虑不同系统组件及其环境之间的复杂相互作用。灵敏度分析通过突出显示相关的载荷参数并增加对系统在其实际环境中的行为的了解,从而有助于减少疲劳分析和极限载荷分析的仿真量。与H2020项目LIFES50 +中的工作保持一致,本研究调查了使用准随机抽样对自变量进行全局敏感性分析的不同方法。分析了两个不同的工况组:(1)发电过程中的疲劳载荷,(2)发电过程中和严峻海况下的极限载荷。考虑的系统是安装在公共NAUTILUS-10浮动结构上的公共DTU 10MW涡轮机的转子-机舱组件。使用FAST v8执行负载模拟。基于LIFES50 +站点B(中等严重性)设置模拟。为了比较是否可以针对不同的浮子类型得出相似的结论,将其与使用不同平台(Olav Olsen半潜式)的类似研究进行了比较。

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