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首页> 外文期刊>Journal of turbomachinery >Flutter Amplitude Saturation by Nonlinear Friction Forces: Reduced Model Verification
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Flutter Amplitude Saturation by Nonlinear Friction Forces: Reduced Model Verification

机译:非线性摩擦力引起的振幅振幅饱和:简化模型验证

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摘要

The computation of the final, friction saturated limit cycle oscillation amplitude of an aerodynamically unstable bladed-disk in a realistic configuration is a formidable numerical task. In spite of the large numerical cost and complexity of the simulations, the output of the system is not that complex: it typically consists of an aeroelastically unstable traveling wave (TW), which oscillates at the elastic modal frequency and exhibits a modulation in a much longer time scale. This slow time modulation over the purely elastic oscillation is due to both the small aerodynamic effects and the small nonlinear friction forces. The correct computation of these two small effects is crucial to determine the final amplitude of the flutter vibration, which basically results from its balance. In this work, we apply asymptotic techniques to consistently derive, from a bladed-disk model, a reduced order model that gives only the time evolution on the slow modulation, filtering out the fast elastic oscillation. This reduced model is numerically integrated with very-low computational cost, and we quantitatively compare its results with those from the bladed-disk model. The analysis of the friction saturation of the flutter instability also allows us to conclude that: (ⅰ) the final states are always nonlinearly saturated TW: (ⅱ) depending on the initial conditions, there are several different nonlinear TWs that can end up being a final state; and (ⅲ) the possible final TWs are only the more flutter prone ones.
机译:在实际配置中,对空气动力学不稳定的叶片盘的最终摩擦饱和极限循环振荡幅度的计算是一项艰巨的数字任务。尽管数值成本高昂且模拟复杂,但系统的输出并不复杂:它通常由气动弹性不稳定的行波(TW)组成,行波以弹性模态频率振荡并在很大的程度上表现出调制时间尺度更长。在纯弹性振荡上的这种缓慢的时间调制是由于小的空气动力效应和小的非线性摩擦力造成的。正确计算这两个小影响对于确定颤振的最终振幅至关重要,这最终是由其平衡引起的。在这项工作中,我们采用渐近技术从叶盘模型中一致地得出降阶模型,该模型仅给出慢速调制的时间演变,从而滤除快速弹性振荡。这个简化的模型在数值上集成了非常低的计算成本,并且我们将其结果与刀片磁盘模型的结果进行了定量比较。通过对颤振不稳定性的摩擦饱和度进行分析,我们还可以得出以下结论:(ⅰ)最终状态始终为非线性饱和TW:(ⅱ)取决于初始条件,有几种不同的非线性TW最终可能是最终状态(ⅲ)可能的最终TW仅是较易发抖的TW。

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  • 来源
    《Journal of turbomachinery》 |2015年第4期|041004.1-041004.8|共8页
  • 作者单位

    E.T.S.I. Aeronauticos, Universidad Politecnica de Madrid, Madrid 28040, Spain;

    Technology and Methods Department, Industria de TurboPropulsores S.A., Madrid 28108, Spain;

    E.T.S.I. Aeronauticos, Universidad Politecnica de Madrid, Madrid 28040, Spain;

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