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Aerodynamic design and performance analysis of multi-MW class wind turbine blade

机译:兆瓦级风力发电机叶片的气动设计与性能分析

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The rotor blade is an important device that converts kinetic energy of wind into mechanical energy. It affects power performance, efficiency of energy conversion, load and dynamic stability of a wind power generation system. This paper presents an aerodynamic design of 3 MW class blade using BEM and confirms that the design satisfies the initial design target by BEM and CFD analysis. To investigate the effects of radial flow at the inboard region, the result of static BEM analysis was compared with the result of CFD analysis. The result of quantitative comparison among thrust force, power coefficient and mechanical power depending on wind speed change is presented. Furthermore, design reference data such as pressure, streamline, torque and thrust force distribution on the blade surface is presented as well.
机译:转子叶片是将风的动能转换成机械能的重要装置。它会影响风力发电系统的功率性能,能量转换效率,负载和动态稳定性。本文介绍了一种采用BEM的3 MW级叶片的空气动力学设计,并通过BEM和CFD分析确认该设计满足初始设计目标。为了研究径向流在内侧区域的影响,将静态BEM分析的结果与CFD分析的结果进行了比较。给出了根据风速变化对推力,功率系数和机械功率进行定量比较的结果。此外,还提供了设计参考数据,例如叶片表面上的压力,流线,扭矩和推力分布。

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