具有俯仰自由运动的二维机翼在超音速流动中的气动颤振和极限环分析

Hai Zhao, D. Cao, Xinqun Zhu
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引用次数: 5

摘要

研究了具有结构非线性和气动非线性的二自由度翼型颤振和极限环振荡问题。利用拉格朗日方程建立了包含俯仰自由运动的模型。根据三阶活塞理论推导了气动升力和力矩。采用四阶龙格-库塔法对非线性动力学方程进行数值求解。通过分析相平面和功率谱密度图,观察到周期响应、多周期响应和混沌运动。得到了随着无因次风速值的逐渐增大,俯仰的分岔图。结果表明,系统的临界颤振速度低于无自由啮合时的临界颤振速度。通过仿真还可以得出,在稳定区和LCO区,自由度的初始值和大小对系统的动态运动都有显著影响。系统表现混沌运动的无量纲空气速度区比现有文献报道的更宽。
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Aerodynamic flutter and limit cycle analysis for a 2-D wing with pitching freeplay in the supersonic flow
The problem of flutter and limit cycle oscillation (LCO) for two-degrees-of freedom airfoil with structural and aerodynamic nonlinearities is addressed in this paper. The model which includes freeplay in pitching is established using the Lagrange equation. The aerodynamic lift and moment are derived in terms of the 3rd-order piston theory. The forth order Runge-Kutta method is employed to solve the nonlinear dynamic equations numerically. Period response, multi-periodic response and chaotic motion are observed after investigating the phase plane and power spectral density diagrams. Bifurcation diagram of the pitching is obtained with gradually increasing values of the dimensionless air speed. The results indicate that the critical flutter speed is lower than that of the system without freeplay. It can be also concluded from the simulation that the initial value and the magnitude of the freeplay have significant effects on the dynamic motion of the system in both regions of stable and LCO. The dimensionless air speed region in which the system behaves chaotic motion is wider than that reported in the existing literature.
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