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The influence of rotor damping system of turbine generator on small disturbance characteristic

机译:汽轮发电机转子阻尼系统对小扰动特性的影响

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In this paper, we study the influence of rotor damping system on small disturbance characteristic of turbine generator connected to power system. Considering the complex rotor damping structure of turbine generator, we establish Field-circuit Coupled Time-Step Finite Element Model and test this model by the experiment of 7.5 kW model machine. Based on this model, we take a 300 MW turbine generator as an example to study the influence of damping bar, rotor iron core and conductive slot wedge on small disturbance characteristic. We investigate the importance of the rotor damping system to small disturbance characteristic and find its impact is not negligible. By comparing the small disturbance characteristic indexes affected by three components of rotor damping system respectively, we conclude that the rotor slot wedge plays a leading role in small disturbance characteristic.
机译:本文研究了转子阻尼系统对电力系统涡轮发电机小扰动特性的影响。 考虑到涡轮发电机的复合转子阻尼结构,我们建立了现场电路耦合时间阶跃有限元模型,并通过7.5千瓦模型机的实验测试了该模型。 基于该模型,我们采取了300 MW涡轮发电机,以研究阻尼杆,转子铁芯和导电槽楔对小扰动特性的影响。 我们调查转子阻尼系统对小扰动特性的重要性,并发现其影响并不可忽略不计。 通过分别比较转子阻尼系统的三个部件影响的小扰动特性指标,我们得出结论,转子槽楔在小扰动特性中起着主导作用。

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