Fatigue strength assessment of semi-submersible floating wind turbine foundation under turbulent wind

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Abstract

Chose the "5 MW baseline" wind turbine model published by the US National Renewable Energy Laboratory (NREL) as the design basis, and used the OC4-DeepCwind semi-submersible offshore wind turbine model for the verification of offshore floating wind turbines. According to the characteristics and the distribution of stress, we selected seven key parts which are prone to fatigue damage are screened, respectively established local finite element models and carried out grid encryption. Based on SESAM hydrodynamic analysis software and FAST wind motor dynamic load calculation procedure, the fatigue damage of the target node under the effect of wind turbine load is studied. The results show that the structural fatigue damage occurs mainly at the horizontal connection of the upper part of the neutral column and the diagonal connection of the lower part of the neutral column. The fatigue damage degree of the crown and the saddle point is relatively large at the connecting rod position.

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APA

Sang, S., Dong, J., Cao, A., Dong, Z., Chu, Z., & Liu, T. (2020). Fatigue strength assessment of semi-submersible floating wind turbine foundation under turbulent wind. Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 41(7), 327–333. https://doi.org/10.32732/jcec.2018.7.1.27

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