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Application of a Genetic Algorithm to Wind Turbine Design

机译:遗传算法在风机设计中的应用

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This paper presents an optimization method for stall-regulated horizontal-axis wind turbines. A hybrid approach is used that combines the advantages of a genetic algorithm with an inverse design method. This method is used to determine the optimum blade pitch and blade chord and twist distributions that maximize the annual energy production. To illustrate the method, a family of 25 wind turbines was designed to examine the sensitivity of annual energy production to changes in the rotor blade length and peak rotor power. Trends are revealed that should aid in the design of new rotors for existing turbines. In the second application, five wind turbines were designed to determine the benefits of specifically tailoring wind turbine blades for the average wind speed at a particular site. The results have important practical implications related to rotors designed for the Midwestern US versus those where the average wind speed may be greater.
机译:本文提出了一种失速调节水平轴风力发电机的优化方法。使用了一种混合方法,该方法将遗传算法的优点与逆设计方法相结合。该方法用于确定最佳的叶片节距,叶片弦和扭曲分布,从而使年度能源产量最大化。为了说明该方法,设计了一个由25个风力涡轮机组成的系列,以检查年发电量对转子叶片长度和峰值转子功率变化的敏感性。揭示了趋势,该趋势应有助于为现有涡轮机设计新的转子。在第二个应用程序中,设计了五台风力涡轮机,以确定针对特定站点的平均风速专门定制风力涡轮机叶片的好处。该结果与为美国中西部设计的转子以及那些平均风速可能更大的转子有关。

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