空气动力学
气动弹性
海洋工程
海上风力发电
航空航天工程
计算流体力学
高保真
转子(电动)
计算机科学
风力发电
忠诚
领域(数学)
环境科学
工程类
机械工程
涡轮机
数学
电信
电气工程
纯数学
作者
Shun Xu,Yingjie Xue,Weiwen Zhao,Decheng Wan
摘要
The design and development of floating offshore wind turbines (FOWTs) is an attractive issue in the wind energy harvesting field. In this study, the research related to the high-fidelity computational fluid dynamic simulations of FOWTs is comprehensively summarized and analyzed. Specifically, the component-level studies including aerodynamics, aeroelasticity and hydrodynamics are presented. The system studies with increasing complexity are performed, such as the simplified aerodynamics, prescribed platform motions and fully coupled aero-hydrodynamics, as well as a little knowledge relevant to the aero-hydro-elastic behaviors. This study emphasizes that some efforts should shift to the research on strongly coupled aero-hydro-elastic performance of FOWTs with the increasing rotor diameter. Moreover, further investigations of more realistic atmospheric inflows and strong interactions between multi-FOWTs are required. This study aims to introduce the hotspots of high-fidelity simulations of FOWTs to novel researchers, as well as to provide some suggested solutions.
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