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NON-HOPFIAN TRANSONIC FLUTTER

机译:非血液跨越扑颤

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摘要

A critical analysis of the theoretical foundation of the Hopf bifurcation as a model for transonic flutter is presented. Our objective is to show that certain nonlinear transonic flutter instabilities cannot be described using the Hopf theory. The breakdown occurs because the unsteady aerodynamic forces cannot be linearized without introducing nonuniformities in time or space. Consequently, the Hopf linearization also breaks down, and a uniformly valid Jacobian matrix whose eigenvalues normally determine flutter stability no longer exists. This in turn implies that these flutter instabilities cannot be predicted by formulating and solving a classical linear aeroelastic eigenvalue problem, nor can the Hopf bifurcation serve as a model for describing the corresponding nonlinear flutter boundary.
机译:提出了对跳跃分叉作为跨音颤振模型的Hopf分岔理论基础的关键分析。我们的目的是表明,可以使用HOPF理论来描述某些非线性跨音颤动不稳定性。发生故障是因为不稳定的空气动力不能线性化而不会在时间或空间中引入不均匀性。因此,HOPF线性化也分解,并且其特征值通常确定颤振稳定性的均匀有效的雅可比基质不再存在。这反过来又意味着通过配制和解决经典的线性空气弹性特征值问题,不能预测这些颤动不稳定性,跳跃分叉不能用作用于描述相应的非线性颤振边界的模型。

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