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首页> 外文期刊>International Journal of Simulation & Process Modelling >Modelling of aerodynamic flutter on a NACA 4412 airfoil with application to wind turbine blades
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Modelling of aerodynamic flutter on a NACA 4412 airfoil with application to wind turbine blades

机译:NACA 4412机翼上的气动颤振建模及其在风力涡轮机叶片上的应用

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The study of aeroelastic phenomena on Wind Turbines (WTs) has become a very important issue when it comes to safety and economic considerations, as WTs tend towards gigantism and flexibility. At the Wind Energy Research Laboratory (WERL), several studies and papers have been conducted and published, all focusing on Computational Fluid Dynamics (CFD model) approaches to model and simulate different aeroelastic phenomena. Despite the very interesting results obtained, CFD is very costly and is difficult to use directly for control purposes, due to the consequent computational time. This paper describes a complementary lumped system approach to CFD to model flutter phenomenon. This model is based on a Matlab-Simulink model that integrates turbulence characteristics as well as characteristics of aerodynamic physics. From this model, we elaborate on flutter eigenmodes and eigenvalues in an aim to apply control strategies and relate the ANSYS-based CFD modelling to the lumped system.
机译:考虑到安全性和经济性,对风力涡轮机(WT)的气动弹性现象的研究已成为一个非常重要的问题,因为WTs倾向于巨型化和灵活性。在风能研究实验室(WERL),已经进行了几项研究和发表论文,所有研究都集中在计算流体动力学(CFD模型)方法上,以模拟和模拟不同的空气弹性现象。尽管获得了非常有趣的结果,但CFD却非常昂贵,并且由于随之而来的计算时间而难以直接用于控制目的。本文介绍了一种用于CFD的互补集总系统方法来模拟颤振现象。该模型基于Matlab-Simulink模型,该模型整合了湍流特性以及空气动力学特性。从该模型中,我们详细阐述了颤振特征模式和特征值,旨在应用控制策略并将基于ANSYS的CFD建模与集总系统相关联。

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