用ETAP分析340兆瓦核电站的潮流和电压稳定性及补救措施

Muhammad Aman Ullah, A. Qaiser, Q. Saeed, Abdul Rehman Abbasi, Iftikhar Ahmed, A. Q. Soomro
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引用次数: 2

摘要

电力系统的潮流和电压稳定性分析对于设计和运行阶段的性能监测以及确保电网的稳定可靠运行至关重要。本文利用电瞬态分析程序(ETAP)建立了340 MWe核电站的电气模型,并进行了潮流和电压稳定分析。研究了外网不稳定引起的欠压和过压暂态对核电厂电力系统的影响。利用牛顿-拉夫森算法进行潮流分析,识别出电网暂态引起的欠压母线,并采用变压器有载分接开关和无功补偿对母线电压进行改善。利用最优电容放置模块,提出了电容器组及其最优位置。同样,在过电压暂态的情况下,也给出了核电站电力系统电压的扰动方式和克服方法。由于核反应堆启动是耗时且昂贵的,因此该结果是有益的,因为它们消除了由于“反应堆冷却剂泵总线低压”信号而不希望发生的核电厂反应堆跳闸的机会。在核电厂的电压稳定性方面已经取得了可喜的成果。
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Power flow & voltage stability analyses and remedies for a 340 MW nuclear power plant using ETAP
Power flow & voltage stability analyses of a power system are essential for both design and operating stage performance monitoring and to ensure stable and reliable grid operations. In this work, electrical model of a 340 MWe Nuclear Power Plant (NPP) is developed on Electrical Transient Analyzer Program (ETAP), and power flow & voltage stability analyses are performed. Effects of under-& over-voltage transients due to instability in outer power grid on NPP electrical system are then studied. Using power flow analysis that exploits Newton-Raphson algorithm, buses operating at under-voltages, due to power grid transient, are identified and their voltages are improved using on-load tap changer of transformer and reactive power compensation. Capacitor banks and their optimal positions are suggested by using optimal capacitor placement module. Similarly, in case of over-voltage transient, the way the voltages of NPP electrical system are disturbed and methods to overcome them are also implemented. As the nuclear reactor startup is time consuming and expensive, so the results are beneficial since they eliminate the chances of undesired NPP reactor trip due to “reactor coolant pumps buses low voltage” signal. Promising results have been accomplished regarding voltage stability of the NPP.
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