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Stall Nonlinear Flutter of Wind Turbine Blade Modeled as Thin-Walled Composite Beam Integrated with Structural Damping

机译:作为薄壁复合梁的风力涡轮机叶片的停顿非线性扑腾,其与结构阻尼集成

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The effects of structural damping on the aeroelastic stability have been investigated for composite thin-walled blade. Structural model of the composite thin-walled blade exhibits bending-bending-twist coupling, with accounting for the presence of pretwist angle. The aerodynamic model used in the present paper is the differential dynamic stall model developed at ONERA. The structural damping of the blade is predicted based on the analytical formulas of the modal damping of thin-walled composite structure. The effect of structural damping on aeroelastic stability is taken into account by using proportional damping matrix. By means of Galerkin method, the nonlinear aeroelastic equations are reduced to ordinary equations. The general aerodynamic forces are obtained from strip theory. The resulting equations are then linearized for small perturbation about the equilibrium point and the stability characteristics are investigated through eigenvalue analysis and time domain integration.
机译:对复合薄壁叶片研究了结构阻尼对空气弹性稳定性的影响。复合薄壁刀片的结构模型呈现弯曲弯曲旋转耦合,占试徒的存在。本文中使用的空气动力学模型是在Onera开发的差动动态摊位模型。基于薄壁复合结构的模态阻尼的分析公式来预测刀片的结构阻尼。通过使用比例阻尼基质考虑了结构阻尼对空气弹性稳定性的影响。通过Galerkin方法,非线性空气弹性方程减少到普通方程。一般的空气动力是从条带理论获得的。然后,通过特征值分析和时域集成来研究得到的方程,用于对平衡点进行小扰动,并通过特征值分析和时域集成来研究稳定性特性。

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