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Performance Evaluation of Experimental Rim-Drive Wind Turbine

机译:轮辋驱动式风力发电机的性能评估

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The current paper discusses an on-going research effort in the performance evaluation and optimization of rim-drive wind turbines (RDWT). Unlike conventional aerofoil wind turbines, the RDWTs are designed to extract power directly from the outer rim instead of central hub. A RDWT with 25ft rotor diameter is tested for performance evaluation and maximum power extracted. The experiment is conducted at Wind Science and Engineering research center, located in Lubbock, Texas. The wind turbine is coupled to a variable speed direct drive electric generator. The induction current in the generator is optimized for different wind speeds in order to extract maximum power from the wind turbine. The experimental results are compared with two commercial aerofoil wind turbines of similar design specifications using performance evaluation data published by National Renewable Energy Laboratory. It is observed that RDWT can extract comparable and often higher amount of energy when compared with aerofoil wind turbines. The results also show that RDWT has an average power coefficient of 0.3 and can operate in wider spectrum of wind speeds than aerofoil wind turbines.
机译:本文讨论了在边缘驱动风力涡轮机(RDWT)的性能评估和优化方面正在进行的研究工作。与传统的机翼风力涡轮机不同,RDWT设计为直接从外轮缘而不是中央轮毂获取功率。对转子直径为25英尺的RDWT进行了性能评估和提取了最大功率的测试。该实验在德克萨斯州拉伯克市的风力科学与工程研究中心进行。风力涡轮机联接至变速直接驱动发电机。发电机中的感应电流针对不同的风速进行了优化,以便从风力涡轮机中提取最大功率。使用国家可再生能源实验室发布的性能评估数据,将实验结果与具有类似设计规格的两台商用机翼风轮机进行了比较。可以观察到,与翼型风力涡轮机相比,RDWT可以提取相当数量的能量,并且通常能提取更多的能量。结果还表明,RDWT的平均功率系数为0.3,与机翼型风力涡轮机相比,可在更宽的风速范围内运行。

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