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Aerodynamic performance sensitivity analysis of blade design for a 100 kW HAWT

机译:100 kW HAWT叶片设计的气动性能敏感性分析

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摘要

Wind energy is gaining ever increasing popularity among renewable energy sources. In some European countries installed wind turbine capacity has reached over 20 % of the total power generation capacity. This paper examines aerodynamic performance sensitivity of wind turbine blades for main design variables. The sensitivity analysis has been conducted on a sample 100 kW three-bladed horizontal axis wind turbine (HAWT). Taguchi robust design techniques and orthogonal arrays have been used to perform experimental optimization using five main parameters: airfoil NACA profile, root chord length, tip chord length, root radius and chord profile distribution along the blade’s length. The airfoil profiles and their aerodynamic data are taken from the NACA airfoil database for which experimental lift and drag coefficient data are available. The airfoils for the studied blades have the same profile from root to tip. Three sets of analyses have been performed according to three different base load wind speeds. The sensitivity results have been presented for the optimal tip speed ratio values.
机译:风能在可再生能源中越来越受欢迎。在一些欧洲国家,已安装的风力涡轮机容量已达到总发电量的20%以上。本文研究了主要设计变量对风力涡轮机叶片的空气动力性能敏感性。灵敏度分析已在样本100 kW三叶片水平轴风力涡轮机(HAWT)上进行。 Taguchi健壮的设计技术和正交阵列已用于使用五个主要参数进行实验优化:翼型NACA轮廓,根弦长,叶尖弦长,根半径和沿叶片长度的弦长分布。机翼轮廓及其空气动力学数据取自NACA机翼数据库,该数据库可提供实验升力和阻力系数数据。研究叶片的翼型从根部到尖端具有相同的轮廓。根据三种不同的基本负荷风速进行了三组分析。灵敏度结果已经针对最佳的叶尖速比值进行了介绍。

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