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The Aerodynamical and Structural Analysis of Wind Turbine Blade for Fatigue Prediction

机译:疲劳预测风力涡轮机叶片的空气动力学和结构分析

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The calculation of the dynamic load and stresses acting on wind turbine blades in order to predict fatigue is proposed .In this work the blade element theory was used to calculate aerodynamic loads for small wind turbine blades. This method can also estimate the power extracted by the turbine.A model analysis of rotor was performed using a finite element modeling in order to compute the frequencies and mode shapes. At last, dynamic stresses are computed for the root region of the blades, using finite element modeling. The resulting curves of stress vs. time, obtained for different wind speeds, are used for fatigue analysis in order to make an optimal choice of blades resistant to fatigue and being energetically efficient. In both modal and stress analysis two different approaches are utilized and their results are compared.
机译:提出了一种在风力涡轮机叶片上作用的动态负荷和应力的计算。在这项工作中,叶片元件理论用于计算小型风力涡轮机叶片的空气动力载荷。该方法还可以估计涡轮机提取的功率。使用有限元建模进行转子的模型分析,以计算频率和模式形状。最后,使用有限元建模来计算刀片的根区域的动态应力。由不同风速获得的应力与时间的所得到的应力曲线用于疲劳分析,以便使耐疲劳性和能量有效的叶片的最佳选择。在模态和应力分析中,使用两种不同的方法,并比较它们的结果。

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