易丛,邓小康,郭连春,高方材,邵云亮,董鑫,李刚,徐群.漂浮式风机系泊张紧器结构设计与强度校核研究[J].海洋工程,2025,(3):84~94 |
漂浮式风机系泊张紧器结构设计与强度校核研究 |
Research on structure design and strength verification of the mooring tensioner for floating offshore wind turbine |
投稿时间:2024-05-08 修订日期:2024-07-30 |
DOI:10.16483/j.issn.1005-9865.2025.03.008 |
中文关键词: 漂浮式风机 系泊系统 张紧器 结构设计 强度校核 |
英文关键词:floating offshore wind turbine mooring system tensioner structure design strength verification |
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中文摘要: |
海上风电产业的快速发展引起了对浮式风机系泊系统配置优化、安装效率提升的极大关注,相应功能组件的种类不断多样化,使得对结构形式复杂性和安全性的考虑更加全面。张紧器作为风机长期系泊系统的关键组件,能够大幅节省甲板空间、简化安装过程,有力推动相关产业的技术更新与成本控制。对张紧器应用技术的发展现状进行了调研分析,优化并形成了轻量化、紧凑型、高强度和高可靠性的张紧器设计。在此基础上,基于有限元数值仿真分析方法,分别对张紧器在预张紧工况下的主体结构和导向链轮、破断工况下的主体结构和止链器模块开展了结构强度校核研究,验证了张紧器主体结构及其组件的结构可靠性,为张紧器在海上漂浮式风电产业的大规模推广应用提供了技术支持。 |
英文摘要: |
The rapid development of the offshore wind power industry has led to significant attention on optimizing floating offshore wind turbine mooring system configurations and improving installation efficiency. The increasing diversification of functional components necessitates more comprehensive considerations of structural complexity and safety. As a critical component of long-term mooring systems for wind turbines, the tensioner significantly saves deck space, simplifies installation, and facilitates technological advancements and cost control within the industry. This study investigates the current state of tensioner application technologies, optimizing and developing a lightweight, compact, high-strength, and highly reliable tensioner design. Based on finite element numerical simulation analysis, structural strength verification is conducted for the main structure and guide sproket under pre-tension conditions, as well as for the main structure and chain stopper module under breaking conditions. The results confirm the structural reliability of the tensioner and its components, providing technical support for the large-scale application of tensioners in the offshore floating wind power industry. |
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