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Experience of Development and Implementation of New Electrohydraulic Turbine Control Systems of the Leningrad Metal Plant for Nuclear Power Plants

机译:核电厂列宁格勒金属厂新型电液涡轮控制系统开发和实施的经验

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An experience of development and implementation of electrohydraulic control systems with the application of microprocessor systems is considered by the example of a K-1000-60/3000 turbine of plants nos. 3 and 4 of the Kalininskaya nuclear power plant (NPP). The long-term operation of the electrohydraulic control system on power generation unit no. 3 of the Kalininskaya NPP, which encloses the electronic part of the control system (EPCS), confirmed wide possibilities of the system. Modern requirements to the power control of power generating units were a basis for the development of the control system with the extended functions of the microprocessor part and with the individual control of control valves with the use of a hydroelectric drive. The system was developed and implemented on the K-1000-60/3000 turbine of plant no. 4. Test results for power generating unit no. 4 allowed one to make a decision of putting into commercial operation of the mode of the total primary control of frequency (TPCF). For the first time, the possibility of the operation of the power generating unit of the NPP with the water-moderated water-cooled power reactor (WWPR) was tested and proved in the mode of the normalized primary control of frequency (NPCF) with the power errors up to ±2% of nominal without the displacement of control rods of the reactor only due to the use of the self-control effect of the reactor plant.
机译:以编号为K.的工厂的K-1000-60 / 3000涡轮机为例,考虑了在电动液压控制系统的应用和微处理器系统的开发方面的经验。 Kalininskaya核电厂(NPP)的第3和第4条。电动液压控制系统在第2号发电机组上的长期运行Kalininskaya NPP的3封装了控制系统(EPCS)的电子部分,确认了该系统的广泛可能性。发电机单元功率控制的现代要求是开发控制系统的基础,该控制系统具有微处理器部分的扩展功能,并且通过使用水力驱动器对控制阀进行单独控制。该系统是在No.1工厂的K-1000-60 / 3000涡轮机上开发和实施的。 4.发电单元编号的测试结果。 4允许人们决定将频率总控制模式(TPCF)投入商业运营。首次测试了NPP发电机组与水控水冷动力堆(WWPR)一起运行的可能性,并以归一化频率主控制(NPCF)模式进行了验证。仅由于使用反应堆设备的自控制效应,在没有移动反应堆控制杆的情况下,最大功率误差可达标称值的±2%。

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