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Long-term assessment of a floating offshore wind turbine under environmental conditions with multivariate dependence structures

机译:具有多元依赖结构的环境条件下海上浮式风力发电机的长期评估

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Floating offshore wind turbines (FOWT) have been increasingly deployed to harvest the sustained high-speed offshore wind in recent years. Under the complex offshore environments, FOWT could experience significantly different environmental conditions with various occurrence frequencies during their lifetimes. In the present study, the dependence structure of six wind and wave-related environmental parameters (wind direction, wind speed, mean wave direction, significant wave height, peak spectral wave period, and wave directional spread) is established using a C-vine (canonical vine) copula model. Different families of bivariate copula are used as the building blocks to model the interdependence for each pair of environmental parameters. Thereafter, the environmental contour method and Rosenblatt transformation, according to a prescribed 50-year return period, are used to determine the long-term design loads at critical locations of a spar-type FOWT. Fractile level and multiplication factor are obtained for five different structural responses to provide guidance in parameter selections for future designs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:近年来,浮式海上风力涡轮机(FOWT)越来越多地用于收集持续的高速海上风力发电。在复杂的近海环境下,FOWT在其生命周期内可能会经历各种不同的发生频率,而环境条件却大不相同。在本研究中,使用C型蔓藤树建立了六个与风和波浪有关的环境参数(风向,风速,平均波向,有效波高,峰值频谱波周期和波向传播)的依赖结构。规范藤蔓)copula模型。使用不同系列的双变量系动词作为构建模块,以建模每对环境参数的相互依赖性。此后,根据规定的50年恢复期,使用环境轮廓法和Rosenblatt变换来确定翼梁式FOWT关键位置的长期设计载荷。获得了五个不同结构响应的分形水平和倍增因子,为将来设计的参数选择提供了指导。 (C)2019 Elsevier Ltd.保留所有权利。

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