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Electric power frequency and nuclear safety - Subsynchronous resonance case study

机译:电力频率与核安全-次同步谐振案例研究

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The increase of the alternate current frequency results in increased rotational speed of the electrical motors and connected pumps. The consequence for the reactor coolant pumps is increased flow in primary coolant system. Increase of the current frequency can be initiated by the subsynchronous resonance phenomenon (SSR).This paper analyses the implications of the SSR and consequential increase of the frequency on the nuclear power plant safety. The Simulink MATLAB?model of the steam turbine and governor system and RELAP5 computer code of the pressurized water reactor are used in the analysis.The SSR results in fast increase of reactor coolant pumps speed and flow in the primary coolant system. The turbine trip value is reached in short time following SSR. The increase of flow of reactor coolant pumps results in increase of heat removal from reactor core. This results in positive reactivity insertion with reactor power increase of 0.5% before reactor trip is initiated by the turbine trip. The main parameters of the plant did not exceed the values of reactor trip set points. The pressure drop over reactor core is small discarding the possibility of core barrel lift.
机译:交流频率的增加导致电动机和连接的泵的转速增加。反应堆冷却剂泵的结果是增加了主冷却剂系统中的流量。当前频率的增加可以由次同步共振现象(SSR)引发。本文分析了SSR和随之而来的频率增加对核电站安全的影响。分析中使用了SimulinkMATLAB®汽轮机和调速器系统模型以及压水堆的RELAP5计算机代码。SSR使得反应堆冷却剂泵的速度和主冷却剂系统中的流量快速增加。 SSR之后的短时间内达到了涡轮跳闸值。反应堆冷却剂泵流量的增加导致从反应堆堆芯排热的增加。这导致积极的反应堆插入,在涡轮机跳闸引发反应堆跳闸之前,反应堆功率增加了0.5%。电厂的主要参数未超过反应堆跳闸设定点的值。反应堆堆芯上的压降很小,从而消除了堆芯筒升起的可能性。

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