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首页> 外文期刊>IEE proceedings. Part C >Damping torsional oscillations due to network faults using the dynamic flywheel damper
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Damping torsional oscillations due to network faults using the dynamic flywheel damper

机译:使用动态飞轮阻尼器来抑制由于网络故障引起的扭转振荡

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摘要

The technical feasibility of using a dynamic flywheel damper to damp shaft torsional oscillations in large turbine generators is investigated. Torsional damping is achieved using the slide friction force of the flywheel damper based on generator speed. A system is defined and the shaft torques following various electrical system disturbances are evaluated and analysed. It is shown that substantial damping can be implemented with a well designed flywheel damper, thus reducing the risk of significant shaft damage due to network disturbances. The equivalent models and designs for the flywheel dampers fitted into the shaft couplings of turbine mechanical systems are also described. This method can effectively damp the torsional oscillations due to the high reliability of the damper.
机译:研究了使用动态飞轮阻尼器来阻尼大型涡轮发电机中轴扭转振动的技术可行性。扭转阻尼通过基于发电机转速的飞轮阻尼器的滑动摩擦力实现。定义了一个系统,并评估和分析了各种电气系统扰动后的轴转矩。结果表明,设计合理的飞轮阻尼器可以实现充分的阻尼,从而降低了由于网络干扰而造成重大轴损坏的风险。还介绍了安装在涡轮机械系统的联轴器中的飞轮阻尼器的等效模型和设计。由于阻尼器的高可靠性,该方法可以有效地阻尼扭转振动。

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