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SENSITIVITY ANALYSIS AND APPLICATION OF NATURAL FREQUENCY OF TORSIONAL VIBRATION OF ROTOR SYSTEM

机译:转子系统扭转振动固有频率的灵敏度分析与应用

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摘要

The disturbance of electric power system makes large-scale turbine-generator shafts generate torsional vibration. A available method to restrain the torsional vibration of turbine -generator shafts is that all the natural frequencies of torsional vibration of turbine-generator shafts must keep away from the working frequency and its harmonic frequencies as well as all the frequencies that possibly bring on interaction between turbine-generator and electric power system so that the torsional resonation of shafts may not occur. A dynamic design method for natural frequencies of torsional vibration of rotor system based on sensitivity analysis is presented. The sensitivities of natural frequency of torsional vibration to structure parameters of rotor system are obtained by means of the theory of sensitivity. After calculated the torsional vibration dynamic characteristics of original shafts of a torsional vibration stand that simulates the real shafts of 300MW turbine-generator, the dynamic modification for the torsional vibration natural frequency is carried out by the sensitivity analysis method, which makes the first-five natural frequencies of torsional vibration of the stand is very close to the design object. It is proved that the sensitivity analysis method can be used to the dynamic adjustment and optimal design of real shafts of turbine-generator.
机译:电力系统的干扰使大型涡轮发电机轴产生扭转振动。抑制汽轮发电机轴扭转振动的一种可用方法是,汽轮发电机轴扭转振动的所有固有频率必须远离工作频率及其谐波频率,以及所有可能引起两者之间相互作用的频率。涡轮发电机和电力系统,以免发生轴的扭转共振。提出了基于灵敏度分析的转子系统扭转振动固有频率动态设计方法。利用灵敏度理论获得了扭转振动固有频率对转子系统结构参数的灵敏度。在模拟了300MW汽轮发电机实际轴的扭转振动台架原始轴的扭转振动动力学特性之后,通过灵敏度分析法对扭转振动固有频率进行了动态修正,使得前五点支架的扭转振动固有频率非常接近设计目标。实践证明,灵敏度分析方法可用于汽轮发电机实轴的动态调整和优化设计。

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