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Study on load and aerodynamic characteristics for rotating wind turbine rotor

机译:旋转风力发电机转子的载荷和空气动力特性研究

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Based on the Blade Element Momentum theory, the model of load and aerodynamic characteristics for wind turbine blades is carried out that the blade tip loss is fully considered. Applying the structural dynamic equations of blades, the aeroelastic model of the rotating rotor and the numerical simulation method of the deflections are presented under the aerodynamic loads and centrifugal forces. Coupling the aerodynamic characteristics and the structure stress, the flapwise and edgewise loads, deflections and accelerations of the rotating blades are calculated and plotted. Finally, one 5MW wind turbine rotor is chosen that the aerodynamic loads and output power are simulated. The bending displacement and vibration response are investigated and compared between different wind speed and working time to prove the accuracy and reliability of the model presented in this paper. The results have important theoretical significance for the fatigue life prediction and vibration noise estimate of wind turbine blades.
机译:基于叶片单元动量理论,建立了充分考虑叶片尖端损失的风力涡轮机叶片载荷和空气动力特性模型。应用叶片的结构动力学方程,给出了在空气动力载荷和离心力作用下旋转转子的气动弹性模型以及挠度的数值模拟方法。结合空气动力学特性和结构应力,计算并绘制旋转叶片的襟翼和边缘载荷,偏转和加速度。最后,选择了一个5MW的风力涡轮机转子,以模拟空气动力学负载和输出功率。研究了弯曲位移和振动响应,并比较了不同风速和工作时间之间的弯曲位移和振动响应,证明了该模型的准确性和可靠性。研究结果对风机叶片的疲劳寿命预测和振动噪声的估计具有重要的理论意义。

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