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Main bearings in large offshore wind turbines: development trends, design and analysis requirements

机译:大型海上风机的主要轴承:发展趋势,设计和分析要求

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This paper discusses analysis requirements for design and operation of main bearings in modern multi-megawatt offshore wind turbines, motivated by the industry's search for reliable and cost effective main bearing solutions that limit the effects of non-torque loads, and the need for effective bearing health monitoring. Gearboxes historically received attention on the grounds of reliability, sparking significant interest in drivetrain dynamics. However, design trends in modern, large turbines, influencing choices for a future 10+ MW generation, indicate that more attention to main bearings or rotor support bearings is needed as part of a more holistic approach to flexural dynamics. Through a survey of existing research, offshore wind turbine design trends, design codes, industry practices and standards, we look at how main bearings are treated in a life cycle perspective, considered design features, modeling and simulation approaches, interaction and interfaces between industry stakeholders, as well as reuse of simulation models for predictive analytics in operation. We conclude that flexible main bearing representation is important in dynamic analyses and that industry practices are needed that enable sufficient model exchange or interfaces and thus effective exploitation of the benefits of a simulation model throughout the turbine life cycle.
机译:本文讨论了现代多兆瓦海上风力涡轮机主轴承设计和运行的分析要求,其动力来自行业寻求可限制非扭矩负载影响的可靠且经济高效的主轴承解决方案,以及对有效轴承的需求健康监测。变速箱历来以可靠性为基础而受到关注,这引起了对动力传动系统动力学的极大兴趣。但是,现代大型涡轮机的设计趋势影响着未来10兆瓦以上发电的选择,这表明作为挠性动力学整体方法的一部分,需要更多地关注主轴承或转子支撑轴承。通过对现有研究,海上风机设计趋势,设计规范,行业实践和标准的调查,我们从生命周期的角度看待主要轴承的处理方式,考虑的设计特征,建模和仿真方法,行业利益相关者之间的相互作用和接口,以及将模拟模型重新用于运营中的预测分析。我们得出的结论是,灵活的主轴承表示法在动态分析中很重要,并且需要行业实践来实现足够的模型交换或接口,从而有效地利用整个涡轮机生命周期中的仿真模型。

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