High Fidelity Transient Forced Response Analysis of Mistuned Bladed Disks Under Complex Excitation and Variable Rotation Speeds

Jing Tong, C. Zang, E. Petrov
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引用次数: 2

Abstract

An effective method is developed for the efficient calculation of the transient vibration response for mistuned bladed disks under complex excitation and varying rotation speeds. The method uses the large-scale finite element modelling of the bladed disks allowing the accurate description of the dynamic properties of the mistuned bladed disks. The realistic distributions of the excitation forces are considered, which resulted in the multiharmonic excitation loads. The transient response calculation is based on the analytically derived expressions for the transient forced response and the effective method used for the model reduction. The effects of the varying rotation speed on the natural frequencies and mode shapes of the mistuned bladed disk and its effects on the amplitude and the spectral composition of the loading are allowed for. The different functions of the rotation speed variation can be analyzed. Numerical studies of the transient forced response and the amplitude amplification in mistuned bladed disks are performed when the resonance regimes are passed during gas-turbine engine acceleration or deceleration. The effects of different types of excitation force and mistuning on transient amplitude amplification are illustrated by a large number of the computational results and comparative analysis. These results and analysis of transient forced response are shown on an example of a realistic mistuned bladed disk.
复杂激励和变转速下失谐叶片盘的高保真瞬态强迫响应分析
提出了一种复杂激励和变转速条件下失谐叶片盘瞬态振动响应的有效计算方法。该方法采用叶片的大尺度有限元建模,可以准确地描述失谐叶片的动态特性。考虑了实际励磁力的分布,得到了多谐励磁载荷。瞬态响应的计算是基于瞬态强迫响应的解析表达式和模型简化的有效方法。考虑了转速变化对失谐叶片盘固有频率和模态振型的影响及其对加载振幅和频谱组成的影响。分析了转速变化的不同作用。对燃气涡轮发动机加减速过程中通过共振区时,失谐叶片盘的瞬态强迫响应和幅值放大进行了数值研究。大量的计算结果和对比分析说明了不同类型的激振力和失谐对瞬态振幅放大的影响。这些结果和瞬态力响应分析是在一个实际的失谐叶片盘的例子上得到的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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