共面双转子风力机侧臂气动弹性分析

A. Ismaiel, S. Yoshida
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引用次数: 2

摘要

作为作者前人研究的延伸,本文对共面双转子风力机支撑双转子的侧臂进行了气动弹性分析。为了更好地理解涡轮机的动力特性,作者开发的内部气动弹性工具被认为是研究多转子风力发电机气动弹性的第一个方法,已经扩展到对侧臂进行建模,并在分析过程中比较了三种不同配置的臂架尺寸。该模型基于确定性模型,采用叶片单元动量理论计算气动载荷,采用模态方法进行结构分析。侧臂的三种结构有三种不同的直径,而所有其他几何参数保持不变。臂架直径越大,弯曲刚度越大。结果表明,在面内方向上,旋翼的重量对波动气动载荷起主导作用,而在面外方向上,旋翼的偏转受湍流的影响较大。刚度与侧臂平均挠度之间的关系是二阶的,因此在设计侧臂时应充分考虑重量与强度之间的关系。
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Aeroelastic Analysis for Side-Booms of a Coplanar Twin-Rotor Wind Turbine
As an extension to a previous research made by the authors, this paper represents an aeroelastic analysis for the side-booms supporting the two rotors of a coplanar twin-rotor wind turbine. For a better understanding of the turbine dynamic behavior, the inhouse aeroelastic tool developed by the authors, which is considered as the first approach to study the aeroelasticity of multi-rotor wind turbines, has been extended to model the side-booms and compare three different configurations of the boom size during the analysis. The model is based on deterministic models, where aerodynamic loads are calculated using blade element momentum theory, and virtual work method with a modal approach is used for structure analysis. The three configurations of the side-booms have three different diameters while all other geometrical parameters are kept constant. The bigger the boom diameter, the higher the bending stiffness becomes. It was found that the weight of the rotor is dominant over the fluctuating aerodynamic loads in the in-plane direction, while the deflection is highly affected by the turbulence in the out-of-plane direction. It was also found that the relation between the stiffness and the mean side-boom deflection is of second order, hence, a thorough compromise between weight and strength should be done when designing the side-booms.
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