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Fragility reduction of offshore wind turbines using tuned liquid column dampers

机译:使用调谐液柱阻尼器降低海上风力发电机的脆弱性

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High flexibility of offshore wind turbines (OWTs) makes them vulnerable to excessive vibrations. This paper studies vibration control of offshore wind turbines induced by multi-hazard excitations. A model consisting of entire offshore wind turbine foundation and tower controlled by tuned liquid column dampers (TLCD) considering nonlinear soil pile interaction is established. The model is subjected to wave, wind, and seismic loading. The effect of severity of earthquake on the performance of the structural control device is investigated. A fragility analysis based on acceleration capacity thresholds is performed to estimate reliability improvement using the structural control devices. The fitted fragility functions based on multiple stripes analysis are constructed and compared with the empirical cumulative distribution curves. The results suggest that the use of an optimal TLCD with a mass ratio of 2.5% reduces the fragility of the system by as much as 6% and 12% for operational and parked conditions, respectively.
机译:海上风力涡轮机(OWT)的高度灵活性使其容易受到过度振动的影响。本文研究了多种危害激励引起的海上风力发电机的振动控制。建立了考虑了非线性土桩相互作用的,由整个海上风力发电机基础和塔架组成的模型,该塔架由调谐液柱阻尼器(TLCD)控制。该模型受到波浪,风和地震的载荷。研究了地震烈度对结构控制装置性能的影响。使用结构控制装置进行基于加速能力阈值的脆弱性分析以估计可靠性的提高。构造了基于多条带分析的拟合脆弱性函数,并将其与经验累积分布曲线进行比较。结果表明,使用质量比为2.5%的最佳TLCD时,在操作和停车条件下,系统的脆弱性分别降低了6%和12%。

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