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Nonlinear vibration analysis of horizontal axis wind turbine blades using a modified pseudo arc-length continuation method

机译:水平轴风风力涡轮机叶片的非线性振动分析使用改进的伪长度延长法

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The horizontal axis wind turbine (HAWT) blades are exposed to parametric and direct excitations of harmonic nature due to the gravity and aerodynamic loads. Hence, the study of the periodic response of the HAWT blades under these operating loads is of great importance in structural design. In this paper, a new computationally efficient dynamic model for the blade is presented including the pre-twist effects. The Rayleigh-Ritz technique is applied to the derived dynamic model and a reduced order model (ROM) is devised in a systematic manner. An efficient method based on the pseudo arc-length continuation method is introduced to find out the edge-wise and flap-wise amplitude-frequency response (AFR) curves of the blade under harmonic wind inflow. Furthermore, the forced vibration of the blade under different operating loads including gravity, centrifugal and aerodynamic loads (due to the uniform and shear wind inflows) is studied separately. Applying the proposed method, the effects of structural damping, nonlinear terms, pre-twist ratio, and cyclic excitation due to the gravity force as well as the centrifugal force on the AFR curves are investigated. Eventually, the dynamic model and the presented method for the frequency analysis are validated with the available data.
机译:横轴风力涡轮机(HAWT)叶片暴露于由于重力和空气动力负载而导致的参数和直接激发谐波性质。因此,在这些操作负荷下,在这些操作负荷下的Head Cresp响应的研究具有重要的结构设计。本文介绍了一种新的刀片的计算高效动态模型,包括预扭曲效果。 Rayleigh-RITZ技术应用于导出的动态模型,并以系统的方式设计了减少的订单模型(ROM)。引入了基于伪弧长延续方法的有效方法,从谐波风流入下找出刀片的边缘和襟翼 - 明智的幅度频率响应(AFR)曲线。此外,分别研究了包括重力,离心和空气流入的不同操作负荷下叶片的强制振动(由于均匀和剪切风流量)。研究了所提出的方法,研究了结构阻尼,非线性术语,预捻度和由于重力力而导致的循环激励的影响以及AFR曲线上的离心力。最终,动态模型和频率分析的呈现方法用可用数据验证。

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