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Study of Flow Field and Pressure Distribution on a Rotor Blade of HAWT in Yawed Flow Conditions

机译:偏航条件下HAWT转子叶片的流场和压力分布研究

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This paper describes the flow field and the blade pressure distribution of a horizontal axis wind turbine in various yawed flow conditions. These measurements were carried out with 2.4m-diameter rotor with pressure sensors and a 2-dimensional laser Doppler velocimeter for each azimuth angle in a wind tunnel. The results show that aerodynamic forces of the blade based on the pressure measurements change according to the local angle of attack during rotation. Therefore the wake of the yawed rotor becomes asymmetric for the rotor axis. Furthermore, the relations between aerodynamic forces and azimuth angles change according to tip speed ratio. By the experimental analysis, the flow field and the aerodynamic forces for each azimuth angle in yawed flow condition were clarified.
机译:本文描述了各种偏航条件下水平轴风力发电机的流场和叶片压力分布。这些测量是使用带有压力传感器的直径为2.4m的转子和风洞中每个方位角的二维激光多普勒测速仪进行的。结果表明,基于压力测量结果的叶片空气动力根据旋转过程中的局部攻角而变化。因此,偏航转子的尾流对于转子轴线变得不对称。此外,空气动力与方位角之间的关系根据叶尖速比而变化。通过实验分析,弄清了偏航条件下每个方位角的流场和空气动力。

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