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Equivalent linearization method for the flutter system of an airfoil with multiple nonlinearities

机译:多非线性机翼颤振系统的等效线性化方法

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The equivalent linearization method (ELM) was extended to analyze the flutter system of an airfoil with multiple nonlinearities. By replacing the cubic plunging and pitching stiffnesses by equivalent quantities, linearized equations for the nonlinear system were deduced. According to the linearized equations, approximate solutions for limit cycle oscil lations (LCOs) were obtained in good agreement with numerical results. The influences of the linear and cubic stiffnesses on LCOs were analyzed in detail. Reducing linear pitching stiffness leads to decreasing of the critical flutter speed. For linear plunging stiffness, the opposite is true. Also, it reveals that the bifurcation could be supercritical or subcritical, which is related to the ratio between the coefficient of cubic pitching stiffness and that of plunging one.
机译:扩展了等效线性化方法(ELM)来分析具有多个非线性的机翼颤振系统。通过用等量的立方刚度和俯仰刚度代替,推导了非线性系统的线性化方程。根据线性方程,获得了极限循环振荡(LCO)的近似解,与数值结果吻合良好。详细分析了线性刚度和立方刚度对LCO的影响。降低线性俯仰刚度会导致临界颤振速度降低。对于线性下降的刚度,情况相反。而且,它揭示了分叉可能是超临界的或亚临界的,这与三次俯仰刚度系数与下降的刚度系数之比有关。

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