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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Transient Flutter Stability Analysis of Structural Mistuned Blisk by Energy Growth Method
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Transient Flutter Stability Analysis of Structural Mistuned Blisk by Energy Growth Method

机译:能量生长方法结构雾化薄丝瞬态颤动稳定性分析

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摘要

Blisks suffer from flutter, a self-sustained vibration caused by aerodynamic coupled forces. This instability could cause serious damage to the blades and the machine. Flutter stability is usually analyzed based on the eigenvalue method in the aspect of the linear structural dynamic system, which transforms a dynamics stability analysis into a point of equilibrium in an infinite time scale. However, in reality, most of the blisk vibrations arise on a finite time horizon. The transient vibration amplification may cause serious damage. This paper proposes a transient flutter stability analysis method in a finite time for structural mistuned blisk based on the energy growth method. First, two common blisk models coupled aerodynamic force with different complexity are built and are all expressed in the state space representation. A novel energy growth method is then employed to analyze the transient stability and to find the maximum energy growth of the models. The optimal initial condition which leads to the maximum energy growth is obtained. A new flutter stability criterion is developed to consider the transient stability based on the energy growth method and the infinite time stability based on the eigenvalue method. The new transient stability method is verified by two numerical studies. It is found that the structural mistuned blisk model which is traditionally predicted stable still has a transient instability in a finite time due to the non-normal property of the dynamic state matrix.
机译:幕后面存在扑腾,由气动耦合力引起的自持续振动。这种不稳定可能对刀片和机器造成严重损坏。通常基于线性结构动态系统方面的特征值方法分析颤动稳定性,其在无限时间尺度中将动态稳定性分析转变为平衡点。然而,实际上,大多数眨眼振动都会产生有限的时间范围。瞬态振动放大可能会造成严重损坏。本文提出了一种基于能量生长方法的结构雾化闪烁的有限时间的瞬态颤动稳定性分析方法。首先,构建了两个具有不同复杂性的空气动力力的两个常见的钝惰力量均在状态空间表示中表示。然后采用一种新型能量生长方法来分析瞬态稳定性并找到模型的最大能量生长。获得了导致最大能量生长的最佳初始条件。开发了一种新的颤动稳定性标准,以考虑基于能量生长方法和基于特征值法的无限时间稳定性的瞬态稳定性。通过两个数值研究验证了新的瞬态稳定性方法。结果发现,传统上预测稳定的结构雾化薄迹模型仍然由于动态状态矩阵的非正常特性而在有限的时间内具有瞬态不稳定性。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2021年第9期| 091015.1-091015.9| 共9页
  • 作者单位

    State Key Laboratory of Mechanical System and Vibration School of Mechanical Engineering Shanghai Jiao Tong University Shanghai 200240 China;

    State Key Laboratory of Mechanical System and Vibration School of Mechanical Engineering Shanghai Jiao Tong University Shanghai 200240 China;

    Marine Engineering College Dalian Maritime University Dalian 116026 China;

    State Key Laboratory of Mechanical System and Vibration School of Mechanical Engineering Shanghai Jiao Tong University Shanghai 200240 China;

    State Key Laboratory of Mechanical System and Vibration School of Mechanical Engineering Shanghai Jiao Tong University Shanghai 200240 China;

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