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DYNAMIC SIMULATION STUDIES OF PERFORMED ADDITIONAL TESTS DURING FAT FOR EMERGENCY DIESEL GENERATORS AT NUCLEAR POWER PLANT

机译:核电站应急柴油发电机FAT附加试验的动态仿真研究。

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In 2004, a decision was made to perform a modernization and a new power uprate of unit 2 at Oskarshamn nuclear power plant in Sweden. Among the most important reasons for this decision were new safety regulations from Swedish Radiation Safety Authority and ageing of important components. A project was established and became the largest nuclear power modernization in the world. The modernization led to the need of analysing the auxiliary power system to ensure that it could supply the unit after the uprate, given tolerances on current, voltage and frequency. During the process of developing models for the diesel generator sets, it turned out that the suppliers could not deliver enough satisfactory material for modelling the diesel engines, the speed controllers and the magnetization systems. Therefore, Oskarshamn nuclear power plant with the help of the manufacturers of the diesel generator sets carried out additional measurements in order to collect data for modelling. Based on electric circuit diagrams provided by the manufacturers, block diagrams of the magnetization systems were made. For the speed controllers, no information was available at all so it was assumed that the controller was of Pi-type. The parameters of the magnetization systems and the speed controllers were then tuned using the measurement results. Finally, a comparison between simulated results and the measurement results were made, showing good agreement. This is especially true in the most commonly used operating interval of the diesel generator sets.
机译:2004年,决定在瑞典的奥斯卡汉姆核电站进行2号机组的现代化改造并提高功率。做出此决定的最重要原因是瑞典辐射安全局的新安全规定以及重要组件的老化。建立了一个项目,该项目成为世界上最大的核电现代化。现代化导致需要分析辅助电源系统,以确保在给定电流,电压和频率公差的情况下,辅助电源系统可以在升级后为设备供电。在开发柴油发电机组模型的过程中,结果发现供应商无法提供足够令人满意的材料来对柴油发动机,速度控制器和磁化系统进行建模。因此,奥斯卡汉姆核电站在柴油发电机组制造商的帮助下进行了额外的测量,以收集用于建模的数据。根据制造商提供的电路图,制作了磁化系统的框图。对于速度控制器,根本没有可用的信息,因此假定该控制器为Pi型。然后使用测量结果来调整磁化系统和速度控制器的参数。最后,对模拟结果与测量结果进行了比较,显示出很好的一致性。在柴油发电机组最常用的运行间隔中尤其如此。

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