台风
海上风力发电
涡轮机
海洋工程
系泊
海底管道
响应分析
直线(几何图形)
工程类
地质学
航空航天工程
物理
气象学
结构工程
岩土工程
数学
几何学
作者
Qiuyu Yang,Mengxi Yu,Shijing Wu,Y. Liu,Xue Xue,J. Xie
标识
DOI:10.1142/s0219455426503943
摘要
Floating offshore wind turbines (FOWTs) face significant challenges during super typhoons, especially in typhoon-prone regions like China’s southeastern coastline. Effective disaster mitigation and load reduction require accurate characterization of FOWT dynamics under extreme typhoon conditions, yet the underlying response mechanisms remain unresolved. This study investigates the dynamic response of a 5[Formula: see text]MW OC4-DeepCwind semi-submersible FOWT during mooring line failure induced by super typhoons. The proposed methodology offers three key contributions: (1) A method called “Typhoon-Wind-Field and Wave-Stage Coupling Model” is proposed, enabling detailed modeling of three-dimensional wind field and wave field throughout the entire typhoon process; (2) identification of mooring line failure risks under typhoon conditions and analysis of resulting impacts on critical turbine components; (3) examination of both shutdown and disconnected turbine states, a scenario rarely studied in prior work. The results provide insights into typhoon-induced failure risks and support the design of more resilient FOWTs.
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