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CCI or CCF incident at Forsmark NPP 25 of July 2006

机译:CCI或CCF事件于2006年7月25日Forsmark NPP事件

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On Tuesday the 25 of July a two phase short circuit occurred when a breaker was operated in the 400 kV switch gear that connects Forsmark units 1 and 2 with the outer grid. Unit 2 was at the occurrence shut down for annual maintenance. Unit 1 was operating on full power. Each unit has two turbines. As a consequence of the short circuit the unit 1 generator bus bar voltages dropped substantially whereupon the induced magnetization in the generator tried to compensate for this. At the same time the 400 kV unit breakers was opened due to under- voltage. This resulted in a voltage peek of about 120% during approximately 1 second on the generator bus bars. The voltage transient resulted in the failure of two out of four UPS, sub divisions A and B. Both the rectifier and the inverter in the UPS tripped because of over-voltage. Normally the rectifiers shall trip before the inverters but in this case the voltage changed in such an unfortunate way that transient was let through the rectifiers and caused also the inverters to trip. UPS for sub division C and D functioned as expected. Unit 1 then went into house turbine operation but both turbines tripped within approximately 30 seconds. As the turbine speed decreased the voltage and frequency of the generator fell. When the frequency reached 47 Hz the circuit breakers for the 500 V bus bars opened resulting in a loss of power for sub divisions A and B because of the failure of UPS. As a result of the power loss in two sub divisions the reactor protection system initiated a reactor scram and isolation of the containment. Two out of four electrically operated pressure relief valves opened and two out of four high pressure emergency core cooling pumps started. The diesel generators for all four sub divisions started but in sub divisions A and B the diesel generators were not connected to the 500 V bus bars because of loss of information about the motor speed. The information was missing because of the failure of the two UPS. In the control room many alarms and other information from trains A and B was missing because of the loss of power in these two trains. Approximately 22 minutes after the initial incident the power for the 500 V bus bars in all four sub divisions was restored manually by connecting the station to the 70 kV grid. Two protections that should have prevented/restricted the effects of the incident did not work as expected due to inappropriate parameter settings (UPS) and incorrect installations (under frequency relays) performed when the plant electrical systems was modernized in 2005. The incident has led to a number of changes and adjustments in order to prevent that a similar event has the same consequences in the future. A comprehensive corrective action plan was developed and approved by the management and the authority. The plan includes actions and improvements in the following areas: 1. Improvements in the management decision making process 2. Improvements in the plant modification/modernization process and in the maintenance process. 3. Improved safety culture 4. A sixty item hardware improvement action plan, including e.g. improvements in the Human-Machine interface in the main control room.
机译:周二7月25日,在400 kV开关齿轮中运行断路器时,将发生两相短路的两个相短路,该开关齿轮将Formark单元1和2与外网连接到外网。单元2在发生年度维护时关闭。单元1在全功率上运行。每个单元都有两个涡轮机。由于短路的后果,单元1发电机母线杆电压基本上掉落,在那时发电机中的感应磁化试图补偿这一点。同时由于低压,400 kV单位断路器打开。这导致在发电机母线上大约1秒钟的电压PEEK大约120%。电压瞬变导致四个UPS,子部门A和B中的两个失败。由于过电压,整流器和UPS中的逆变器。通常,整流器应在逆变器之前跳闸,但在这种情况下,电压以这种不幸的方式改变了这种不幸的方式,即瞬态通过整流器透过并引起逆变器跳闸。子分割C和D按预期运行的UPS。然后单元1进入核心涡轮机操作,但两个涡轮机在大约30秒内跳闸。由于涡轮速度降低了发电机的电压和频率下降。当频率达到47Hz时,打开500 V母线的断路器,导致子部门A和B由于UPS的故障而导致的电力损失。由于两个子部门中的功率损耗,反应器保护系统启动了反应堆循环和隔离容纳。在四个电动压力释放阀中有两个,开启了四个高压应急芯冷却泵中的两个。对于所有四个子部门的柴油发电机开始但是在子部门A和B中,柴油发电机由于关于电动机速度的信息丢失而没有连接到500 V母线。由于两个UPS的失败,信息丢失了。在控制室中,由于这两列火车中的电力丢失,许多警报和来自火车A和B的其他信息缺失。在初始入射后大约22分钟通过将站连接到70 kV电网,手动修复了所有四个子部门中500 V母线的电源。应该防止/限制事件的效果的两个保护在2005年植物电气系统现代化时执行的不适当的参数设置(UPS)和不正确的安装(在频率继电器下)时,该事件的效果不起作用。事件导致了一些更改和调整,以防止类似的事件在未来具有相同的后果。通过管理和管理局制定和批准了全面的纠正措施计划。该计划包括以下领域的行动和改进:1。改进管理决策过程2.工厂修改/现代化过程和维护过程中的改进。 3.改进的安全文化4.六十件物品改进行动计划,包括例如:在主控制室中的人机界面的改进。

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