Aeroelastic analysis of straight-bladed vertical axis wind turbine blade

IF 1.2 Q3 ENGINEERING, MECHANICAL FME Transactions Pub Date : 2022-01-01 DOI:10.5937/fme2203512f
A. Fadlalla, A. Sahin, H. Ouakad, H. Bahaidarah
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Abstract

To prevent flutter phenomena in a wind turbine, minimize vibration and increase the blades' life, a systematic analysis is required to investigate the effects between the cyclic aerodynamic loads and the structural performance of the turbine. A dynamic analysis of a straight-bladed vertical axis wind turbine (SB-VAWT) blade is investigated in this paper, and a simplified approach for the energy equations of an Eulerian beam subjected to twist and transverse bending deflections is introduced. The aerodynamic loads are estimated using the double multiple stream tube models. They are introduced into the dynamic model in the aeroelastic coupling, where the structural displacements are fed back to update the aerodynamic loads by utilizing the average acceleration method for the numerical integration of the equations. Reduced order modeling is then imposed based on the first modes of vibration. It is found that the structural displacement has little effect on the aerodynamic loads, and SBVAWTs experience higher transverse displacements compared with those in curved-blade VAWTs.
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直叶片垂直轴风力机叶片气动弹性分析
为了防止风力机颤振现象,减少振动,提高叶片寿命,需要对循环气动载荷对风力机结构性能的影响进行系统分析。本文对直叶垂直轴风力机(SB-VAWT)叶片进行了动力分析,并介绍了一种简化欧拉梁在扭转和横向弯曲作用下能量方程的方法。采用双多流管模型估计了气动载荷。将它们引入到气动弹性耦合动力学模型中,利用平均加速度法对方程进行数值积分,反馈结构位移来更新气动载荷。然后基于振动的第一阶模态施加降阶建模。研究发现,结构位移对气动载荷的影响较小,且与弯曲叶片相比,sbvawt的横向位移更大。
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来源期刊
FME Transactions
FME Transactions ENGINEERING, MECHANICAL-
CiteScore
3.60
自引率
31.20%
发文量
24
审稿时长
12 weeks
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