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STUDY ON TRANSIENT VIBRATION OF MISTUNED BLADED DISK PASSING THROUGH RESONANCE

机译:雾化磁盘通过共振的瞬态振动研究

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In a variable speed engine, it is impossible to avoid the resonance during operation. In a constant speed engine, the resonance during start-up or shut-down also cannot be avoided. Therefore, the increase of the acceleration rate in passing through the resonance has been considered as one of the effective methods for reducing the vibratory stress of the blade and increasing the reliability of the turbomachinery. In this study, the transient vibration analysis of the mistuned bladed disk passing through the resonance is carried out, using the conventional modal analysis method and the numerical integration method. First, the mistuned bladed disk is modeled by the equivalent spring-mass model, and the steady frequency response analysis is carried out by the Monte Carlo simulation, in order to obtain the worst mistuning pattern. Second, for the mistuned bladed disk of the worst mistuning pattern, the transient vibration analysis in passing through the resonance is carried out, and the effect of the acceleration rate and the blade damping on the transient vibration response is examined in detail. From these results, it is concluded that the larger the acceleration rate is, the smaller the mistuning effect is.
机译:在可变速度的发动机,它是不可能避免操作期间的共振。在恒定转速发动机,启动或停机时的共振也无法避免。因此,加速度率的在通过谐振的增加被认为是有效的方法用于减少叶片的振动应力和增加涡轮机的可靠性之一。在这项研究中,失谐叶盘穿过共振的瞬态振动分析中进行时,使用传统的模态分析法和数值积分方法。首先,失谐叶盘由等效弹簧质量模型建模,并且稳态频率响应分析是通过蒙特卡罗模拟进行的,以便获得最严重失谐模式。其次,对于最坏的失谐模式的失谐叶盘,在通过共振瞬态振动分析被执行,和加速度率的效果和叶片阻尼对瞬态振动响应进行详细检查。从这些结果,可以得出结论,较大的加速度率,较小的失谐效果。

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