220mw汽轮机末级长叶片气动弹性特性研究

L. Kolodyazhnaya, Yu. G. Bykov
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引用次数: 0

摘要

汽轮机颤振现象比较少见,但一旦发生颤振,会大大增加叶片损坏和机组停产的风险。目前,大功率汽轮机末级有增加叶片长度的趋势,叶片振荡的幅频特性发生变化,可能导致不受控制的自激振荡的发生。本文对某200mw汽轮机末级转子叶片排气动弹性特性进行了数值分析,该汽轮机在现代化改造过程中,叶片长度增加到1200mm,因此有必要对其运行模式下的颤振阻力进行校核。分析采用求解非定常气动与叶片弹性振动耦合问题的方法,可以预测粘性气流中非定常载荷与叶片振动的幅频频谱。计算结果表明,在汽轮机的名义运行模式下,前五种自然形式的叶片振荡不存在颤振和自振荡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aeroelastic Behavior of Long Blades of Last Stage of a 220 MW Steam Turbine
The phenomenon of flutter in steam turbines is quite rare, but when it occurs, the risk of damaging the blades and putting the whole unit out of service increases significantly. Currently, there is a tendency to increase the length of the blades of the last stages of powerful steam turbines, as a result of which the amplitude-frequency characteristics of the blade oscillations change, which can lead to the occurrence of uncontrolled self-excited oscillations. The paper presents the results of a numerical analysis of the aeroelastic characteristics of blade row of the last stage rotor of a 200 MW steam turbine, in which, during modernization, the length of the blades increased to 1200 mm, which made it necessary to check the resistance to flutter in operating modes. The analysis used the method of solving the coupled problem of unsteady aerodynamics and elastic blade vibrations, which allows to predict the amplitude-frequency spectrum of unsteady loads and blade vibrations in a viscous gas flow. The results of the calculations showed the absence of flutter and self-oscillations on the first five natural forms of blade oscillations in the nominal mode of operation of the steam turbine.
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