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DYNAMIC AND AEROELASTIC ANALYSES OF A WIND TURBINE BLADE MODELED AS A THIN-WALLED COMPOSITE BEAM

机译:薄壁组合梁风轮机叶片的动力和气动弹性分析

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In this paper, dynamic and aeroelastic analysis of a wind turbine blade modeled as an anisotropic composite thin-walled box beam is carried out. The analytical formulation of the beam is derived for the flapwise bending, chordwise bending and transverse shear deformations. The derivation of both strain and kinetic energy expressions are made and the equations of motion are obtained by applying the Hamilton's principle. The equations of motion are solved by applying the extended Galerkin method (EGM) for anti-symmetric lay-up configuration that is also referred as Circumferentially Uniform Stiffness (CUS). As a result various coupled vibration modes are exhibited. This type of beam features two sets of independent couplings: ⅰ) extension-torsion coupling, ⅱ) flapwise/chordwise bending-flapwise/chorwise transverse shear coupling. For both cases, the natural frequencies are validated by making comparisons with the results in literature and effects of coupling, transverse shear, ply-angle orientation, and rotational speed on the natural frequencies are examined and the mode shapes of the rotating thin-walled composite beams are further obtained. Blade element momentum theory (BEMT) is utilized to model the wind turbine blade aerodynamics. After combining the structural and the aerodynamic models, the aeroelastic analysis are performed and flutter boundaries are obtained.
机译:本文对以各向异性复合材料薄壁箱形梁为模型的风力涡轮机叶片进行了动力和气动弹性分析。推导了梁的分析公式,包括襟翼弯曲,弦向弯曲和横向剪切变形。利用汉密尔顿原理,推导了应变和动能表达式,并得出了运动方程。通过将扩展的Galerkin方法(EGM)用于反对称的叠层构造(也称为周向均匀刚度(CUS)),可以解决运动方程。结果,表现出各种耦合的振动模式。这种类型的梁具有两组独立的联轴节:ⅰ)拉伸-扭转联轴节,ⅱ)翼片方向/弦向弯曲-襟翼方向/弦向横向剪力耦合。对于这两种情况,通过与文献中的结果进行比较来验证固有频率,并检查耦合,横向剪切,层角取向和转速对固有频率的影响,并研究旋转薄壁复合材料的振型进一步获得光束。叶片要素动量理论(BEMT)用于对风力涡轮机叶片的空气动力学进行建模。在将结构模型和空气动力学模型结合之后,进行了空气弹性分析并获得了颤振边界。

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