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Characterization of nonlinear behavior of an airfoil under stall-induced pitching oscillations

机译:失速引起的俯仰振荡下机翼的非线性行为表征

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This work presents an investigation on the embedded dynamics of experimental aeroelastic signals of an airfoil under the influence of stall-induced oscillations. Helicopter blades or wind turbines are severely imposed to vibrate in stall conditions, which motivates this research. Despite a significant effort to model the unsteady aerodynamics associated with the stall phenomenon, nonlinear aeroelastic behavior prediction and analysis in such flow regime remain formidable challenges. This modeling requires proper knowledge of the physical events during stall regime, what can be better attained from experimental data. In this work a pitching airfoil is tested in a wind tunnel model. Due to the stall influence the airfoil presents sustained periodic and limit cycle oscillations at high angles of attack. The influence of wind-off preset incidence angles are also included in these analyses. The aeroelastic signals are evaluated using techniques from time series theory and spectral analysis. The method of delays approach is used to reconstruct the state space, revealing indications to possible bifurcations and complex dynamics. Changes in amplitudes of stall-induced oscillation due to airspeed and preset angles increases were also investigated. Frequency domain analysis through power spectra evolutions and higher-order spectra was used to identify and confirm nonlinear couplings and other complex features. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作提出了对失速诱导的振荡的影响下的机翼的实验气动弹性信号的嵌入动力学的调查。直升机叶片或风力涡轮机在失速条件下会剧烈振动,这激发了这项研究的积极性。尽管已经做出了巨大的努力来模拟与失速现象相关的不稳定空气动力学,但是在这种流动状态下的非线性气动弹性行为的预测和分析仍然是巨大的挑战。这种建模需要适当了解失速状态下的物理事件,可以从实验数据中更好地了解。在这项工作中,在风洞模型中测试了俯仰翼型。由于失速的影响,机翼在高迎角下呈现持续的周期性和极限循环振荡。这些分析中还包括了风速预设入射角的影响。使用来自时间序列理论和频谱分析的技术评估气动弹性信号。延迟方法用于重建状态空间,揭示可能的分叉和复杂动力学的迹象。还研究了由于空速和预设角度增加而引起的失速诱发的振荡幅度的变化。通过功率谱演化和高阶谱的频域分析被用于识别和确认非线性耦合和其他复杂特征。 (C)2016 Elsevier Ltd.保留所有权利。

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