障碍物
海洋工程
涡轮机
过程(计算)
系泊
系统动力学
计算机科学
设计过程
系统工程
工程类
机械工程
工艺工程
过程集成
操作系统
人工智能
法学
政治学
作者
Mojtaba Maali Amiri,Milad Shadman,Segen F. Estefen
标识
DOI:10.20944/preprints202311.1962.v1
摘要
Recently, more wind turbine systems are being installed in deep waters far from the coast. Several concepts of floating wind turbine systems (FWTSs) are developed, among which the semisubmersible platform, due to its applicability in different water depths, good hydrodynamic performance, and facility in the installation process, constitutes the most explored technology compared to the others. However, a significant obstacle to the industrialization of this technology is a design of a cost-effective FWTS, which can be achieved by optimizing the geometry, size and weight of the floating platform, along with the mooring system. This is only possible by selecting a method capable of accurately analyzing the FWTS coupled hydro-aero-structural dynamics at each design stage. Accordingly, this paper aims at providing a detailed overview of the most common coupled numerical and physical methods, including their basic assumptions, formulations, limitations, and costs, used for analyzing the dynamics of FWTSs, mainly those supported by a semisubmersible, to assist the choice of the most suitable method at each design phase of FWTSs. Finally, the article discusses possible future research to address challenges in modeling FWTSs dynamics that persist to date.
科研通智能强力驱动
Strongly Powered by AbleSci AI