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Aeroelastic suppression of an airfoil with control surface using nonlinear energy sink

机译:采用非线性能量水槽的控制面的翼型空气弹性抑制

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摘要

Aeroelasticity exists in airfoil with control surface freeplay, which may induce instability in an incompressible flow. In this paper, a nonlinear energy sink (NES) is used to suppress the aeroelasticity of an airfoil with a control surface. The freeplay and cubic nonlinearity in pitch are taken into account. The harmonic balance method is used to analytically determine the limit cycle oscillations (LCOs) amplitudes of the airfoil-NES system. Linear and nonlinear flutter speeds are detected from the airfoil with control surface freeplay. When NES is attached, both the linear flutter speed of airfoil without freeplay and the nonlinear flutter speed of airfoil with a freeplay are increased. Moreover, the LCO amplitude of airfoil is decreased due to NES. Then, the influences of NES parameters on the increase in flutter boundary of airfoil are carefully studied.
机译:空气弹性存在于翼型中,具有控制表面野蛮的翼型,其可以在不可压缩的流动中引起不稳定性。 在本文中,使用非线性能量水槽(NES)来抑制用控制表面抑制翼型的空气弹性。 考虑间距的自由扮演和立方非线性。 谐波平衡方法用于分析翼型系统的极限周期振荡(LCOS)幅度。 从带有控制表面流放的翼型检测线性和非线性颤动速度。 当附着NE时,增加了翼型的线性颤动速度而没有自由拍摄的空隙和空翼的非线性颤动速度。 此外,由于NES,翼型的LCO幅度降低。 然后,仔细研究了NES参数对翼型翼型颤振边界的增加的影响。

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