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Nonlinear reduced-order modeling of the forced and autonomous aeroelastic response of a membrane wing using Harmonic Balance methods

机译:使用谐波平衡方法的膜翼的强制和自主空气弹性响应的非线性下降阶模型

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A nonlinear reduced-order model for a membrane wing at low Reynolds numbers is obtained by coupling a linear aerodynamic model with a nonlinear one-dimensional membrane equation. Steady-state solutions for the membrane's aeroelastic response are obtained by means of Harmonic Balance methods in the frequency-domain and in the time-domain. Harmonic Balance methods are adopted to investigate the aeroelastic response of a membrane wing pitching about its leading-edge at Re = 100, for different values of the pitching angle. Differences between the two Harmonic Balance approaches are discussed and validations of the methods are carried out using high-fidelity Direct Numerical Simulations. The effect of the Reynolds number on the wing's lift response is taken into account by increasing the Reynolds number to Re = 1000. Harmonic Balance methods are also used to analyze the limit-cycle autonomous oscillations of the membrane for linearly unstable cases. The frequency of the oscillations can be predicted by introducing a frequency-searching algorithm in the solution procedure. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过将线性空气动力学模型与非线性一维膜式方程耦合,获得低雷诺数的膜翼的非线性缩小阶模型。通过频域和时域中的谐波平衡方法获得膜的空气弹性响应的稳态解决方案。采用谐波平衡方法来研究膜翼倾斜围绕其在Re = 100的前缘的空气弹性响应,用于俯仰角的不同值。讨论了两个谐波平衡方法之间的差异,并使用高保真直接数值模拟执行方法的验证。通过增加Re = 1000的雷诺数来考虑Reynolds数对机翼升力响应的影响。谐波平衡方法还用于分析膜的极限循环自主振荡以进行线性不稳定情况。可以通过在解决方案过程中引入频率搜索算法来预测振荡的频率。 (c)2019年elestvier有限公司保留所有权利。

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