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Influence of blade-tower interaction in upwind-type horizontal axis wind turbines on aerodynamics

机译:迎风式水平轴风力发电机叶片-塔架相互作用对空气动力学的影响

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摘要

The blade-tower interaction of upwind horizontal axis wind turbines has become important to aerodynamic loading as the systems become larger. However, there are not enough studies describing these phenomena. To investigate this interaction, we performed numerical simulations for uniform, yawed, wind shear flow conditions, and various tower cases using the nonlinear vortex correction method with time-marching free wake. At 5 m/s, the change in the normal force coefficient is approximately 10% of the average. The blade root region has a larger azimuth range of the interaction and a bigger change in aerodynamic loading. The blade-tower interaction decreases as the yaw error and wind shear exponent increases. The interaction due to tower radius variations is higher than that due to tower clearance variations. With regard to stochastic load, the blade-tower interaction may affect the total fatigue load at low wind speed and in a more unstable atmospheric condition.
机译:随着系统的变大,迎风水平轴风力涡轮机的叶片-塔架相互作用对于空气动力载荷已经变得重要。但是,没有足够的研究来描述这些现象。为了研究这种相互作用,我们使用具有自由行进时间的非线性涡旋校正方法,对均匀,偏航,风切变流条件和各种塔架情况进行了数值模拟。在5 m / s时,法向力系数的变化约为平均值的10%。叶片根部区域具有更大的相互作用方位角范围和更大的气动载荷变化。叶片-塔架相互作用随着偏航误差和风切变指数的增加而减小。塔架半径变化引起的相互作用高于塔架间隙变化引起的相互作用。关于随机载荷,叶片-塔架相互作用可能会在低风速和更加不稳定的大气条件下影响总疲劳载荷。

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