利用非线性材料对越南海况下海上浮式风力涡轮机的系泊线系统进行数值建模

IF 3.7 Q1 WATER RESOURCES Water science and engineering Pub Date : 2023-10-31 DOI:10.1016/j.wse.2023.10.004
Hien Hau Pham
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引用次数: 0

摘要

近海可再生能源行业一直在开发水深达 100 米的浮式近海风力涡轮机发电场。在越南,浮式近海风力涡轮机的开发旨在提高清洁和可持续能源的产量。系泊系统是浮式海上风力涡轮机的重要组成部分,用于保持涡轮机稳定,确保风力发电的安全和经济效益。适当选择系泊类型和系泊线材料可以降低风力涡轮机运动带来的风险。对不同类型的系泊线材料进行了模拟和比较,以确定对浮式风力涡轮机来说运动风险最小的最佳类型。本研究的重点是使用非线性材料对半潜风力涡轮机的半锚定系泊系统进行数值建模。研究采用了当前实践中常见的几种建模方法。进行了水动力分析,以研究浮动风力涡轮机响应振幅算子的运动。使用时域对系泊系统进行了动态分析,以获得越南海况下系泊线在极限状态和疲劳极限状态下的张力响应。结果表明,使用非线性材料(聚酯和/或尼龙)制作系泊系统可以最大限度地减少涡轮机的移动,并节约成本。使用合成纤维可以减少系泊缆绳的最大张力和系泊缆绳的长度。然而,合成纤维绳索具有高度非线性的负载伸长特性,难以用数值软件进行模拟。对聚酯系泊缆绳和尼龙系泊缆绳的特性进行比较后发现,尼龙系泊缆绳的最大张力和平均张力均小于聚酯系泊缆绳。此外,在相同的平均拉力负荷下,聚酯缆绳的未拉伸长度大于尼龙缆绳。因此,建议使用尼龙材料制作海上风力涡轮机的系泊缆线。
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Numerical modeling of a mooring line system for an offshore floating wind turbine in Vietnamese sea conditions using nonlinear materials

The offshore renewable energy industry has been developing farms of floating offshore wind turbines in water depths up to 100 m. In Vietnam, floating offshore wind turbines have been developed to increase the production of clean and sustainable energy. The mooring system, which is used to keep the turbine stable and ensure the safety and economic efficiency of wind power production, is an important part of a floating offshore wind turbine. Appropriate selection of the mooring type and mooring line material can reduce the risks arising from the motion of wind turbines. Different types of mooring line material have been simulated and compared in order to determine the optimal type with the minimum motion risk for a floating wind turbine. This study focused on numerical modeling of semi-taut mooring systems using nonlinear materials for a semi-submersible wind turbine. Several modeling approaches common to current practice were applied. Hydrodynamic analysis was performed to investigate the motion of the response amplitude operators of the floating wind turbine. Dynamic analysis of mooring systems was performed using a time domain to obtain the tension responses of mooring lines under the ultimate limit states and fatigue limit states in Vietnamese sea conditions. The results showed that the use of nonlinear materials (polyester and/or nylon) for mooring systems can minimize the movement of the turbine and save costs. The use of synthetic fibers can reduce the maximum tension in mooring lines and the length of mooring lines. However, synthetic fiber ropes showed highly nonlinear load elongation properties, which were difficult to simulate using numerical software. The comparison of the characteristics of polyester and nylon mooring lines showed that the maximum and mean tensions of the nylon line were less than those of the polyester line. In addition, the un-stretched length of the polyester line was greater than that of the nylon line under the same mean tension load. Therefore, nylon material is recommended for the mooring lines of a floating offshore wind turbine.

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来源期刊
CiteScore
6.60
自引率
5.00%
发文量
573
审稿时长
50 weeks
期刊介绍: Water Science and Engineering journal is an international, peer-reviewed research publication covering new concepts, theories, methods, and techniques related to water issues. The journal aims to publish research that helps advance the theoretical and practical understanding of water resources, aquatic environment, aquatic ecology, and water engineering, with emphases placed on the innovation and applicability of science and technology in large-scale hydropower project construction, large river and lake regulation, inter-basin water transfer, hydroelectric energy development, ecological restoration, the development of new materials, and sustainable utilization of water resources.
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