Floating wind farms in sea basins with moderate wind speeds: a critical assessment of the potential of low-specific-power turbines in reducing the LCoE - Supplementary Data
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This repository contain supplementary data to the article: Travaglini, R., Papi, F., Bianchini, A.: Floating wind farms in sea basins with moderate wind speeds: a critical assessment of the potential of low-specific-power turbines in reducing the LCoE, Renewable and Sustainable Energy Reviews, 2025 Tables with the electrical power and thrust curves of four conceptual wind turbine rotors with varying specific power and nominar rating of 15MW, determined through aerodynamic similarity to the IEA 15MW RWT (Evan Gaertner et al., 2020) are presented in "Supplementary Data.pdf"The methodology obtained to derive the four conceptual power and thrust curves is explained in the aforementioned parent article. The code used to derive these power curves can be found in the accompanying “SCALE_POWER_FROM_PERF_MAPS.py” file. Peak shaving is implementd to limit that to 2400 kN for all designs. The code uses a function developed by Saint-Drenan et al. (Saint-Drenan et al., 2020). Performance maps were sourced from https://github.com/IEAWindSystems/IEA-15-240-RWT in August 2024. Usage Please cite Travaglini, R., Papi, F., Bianchini, A.: Floating wind farms in sea basins with moderate wind speeds: a critical assessment of the potential of low-specific-power turbines in reducing the LCoE, Renewable and Sustainable Energy Reviews, 2025 if you use this data in your work. References Evan Gaertner, Jennifer Rinker, Latha Sethutaman, 2020. Definition of the IEA 15-Megawatt Offshore Refence Wind (No. NREL/TP-5000-75698). IEA Wind. Saint-Drenan, Y.-M., Besseau, R., Jansen, M., Staffell, I., Troccoli, A., Dubus, L., Schmidt, J., Gruber, K., Simões, S.G., Heier, S., 2020. A parametric model for wind turbine power curves incorporating environmental conditions. Renewable Energy 157, 754–768. https://doi.org/10.1016/j.renene.2020.04.123
本代码仓库为下述学术论文提供补充数据: Travaglini, R., Papi, F., Bianchini, A.: 海上中等风速海域漂浮风电场:低比功率涡轮机降低平准化度电成本(LCoE)潜力的批判性评估,《可再生与可持续能源评论》,2025年 本文通过空气动力学相似性对标IEA 15MW参考风力涡轮机(IEA 15MW RWT,Evan Gaertner等,2020),得到四款不同比功率、额定功率为15MW的概念型风力涡轮机叶轮的电功率与推力曲线表格,详见《Supplementary Data.pdf》。推导该四款概念型功率与推力曲线的方法已在前述正文中详细说明。 用于生成上述功率曲线的代码可在配套文件"SCALE_POWER_FROM_PERF_MAPS.py"中获取。本实现已启用峰值削波功能,将所有设计的推力峰值限制为2400 kN,该功能所使用的函数由Saint-Drenan等人开发(Saint-Drenan et al., 2020)。性能图谱的数据源为2024年8月从https://github.com/IEAWindSystems/IEA-15-240-RWT 获取的内容。 使用说明 若您在研究工作中使用本数据集,请引用下述论文: Travaglini, R., Papi, F., Bianchini, A.: 海上中等风速海域漂浮风电场:低比功率涡轮机降低LCoE潜力的批判性评估,《可再生与可持续能源评论》,2025年 参考文献 1. Evan Gaertner, Jennifer Rinker, Latha Sethutaman, 2020. IEA 15兆瓦海上参考风力涡轮机定义(报告编号:NREL/TP-5000-75698). IEA Wind. 2. Saint-Drenan, Y.-M., Besseau, R., Jansen, M., Staffell, I., Troccoli, A., Dubus, L., Schmidt, J., Gruber, K., Simões, S.G., Heier, S., 2020. 考虑环境条件的风力涡轮机功率曲线参数化模型. 《可再生能源》157, 754–768. https://doi.org/10.1016/j.renene.2020.04.123



