首页> 外文期刊>Journal of Urban and Environmental Engineering >EVALUATION OF PERFORMANCE OF HORIZONTAL AXIS WIND TURBINE BLADES BASED ON OPTIMAL ROTOR THEORY
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EVALUATION OF PERFORMANCE OF HORIZONTAL AXIS WIND TURBINE BLADES BASED ON OPTIMAL ROTOR THEORY

机译:基于最佳转子理论的水平轴风轮机叶片性能评估

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Wind energy is a very popular renewable energy resource. In order to increase the use of wind energy, it is important to develop wind turbine rotor with high rotations rates and power coefficient. In this paper, a method for the determination of the aerodynamic performance characteristics using NACA airfoils is given for three bladed horizontal axis wind turbine. Blade geometry is obtained from the best approximation of the calculated theoretical optimum chord and twist distribution of the rotating blade. Optimal rotor theory is used, which is simple enough and accurate enough for rotor design. In this work, eight different airfoils are used to investigate the changes in performance of the blade. Rotor diameter taken is 82 m which is the diameter of VESTAS V82-1.65MW. The airfoils taken are same from root to tip in every blade. The design lift coefficient taken is 1.1. A computer program is generated to automate the complete procedure.
机译:风能是一种非常受欢迎的可再生能源。为了增加风能的利用,重要的是开发具有高转速和功率系数的风力涡轮机转子。本文提出了一种使用NACA翼型来确定空气动力学性能特征的方法,用于三叶片水平轴风力涡轮机。叶片几何形状是从旋转叶片的理论最佳弦和扭曲分布的最佳近似中获得的。使用最佳转子理论,该理论对于转子设计而言足够简单和足够精确。在这项工作中,使用了八种不同的机翼来研究叶片性能的变化。转子直径为82 m,这是VESTAS V82-1.65MW的直径。在每个叶片中,从根部到尖端的翼型都是相同的。设计升力系数为1.1。生成计算机程序以自动完成整个过程。

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