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Preliminary Analysis on the Interplanetary Cause of Geomagnetically Induced Current and Its Effect on Power Systems

机译:浅析地磁感应电流的星际原因及其对电力系统的影响

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Using the detected events of geomagnetically induced current (GIC) in the Ling'ao nuclear power plant from 2004 to 2005, and focusing on the interplanetary cause of GIC and its effect on power systems, we have analyzed the corresponding solar driving sources and interplanetary solar wind structures, and performed spectral analysis on the most intense GIC event by means of wavelet transform. The results of this study show that:(1) Most GIC events were driven mainly by the halo coronal mass ejections, the interplanetary cause of GIC events includes the shock sheath, magnetic cloud, and multiplex interplanetary solar wind structure. (2) Based on the strongest GIC event on 2001 November 9, we find that the fluctuation of GIC in the earlier stage was related to the magnetic cloud boundary layer, and the variation of GIC intensity in the later stage was caused by magnetic cloud itself. (3) Compared to the frequency of the power system (50 Hz), the GIC can be equivalent to a quasi direct current. The energy of the GIC is embodied in the two time intervals in the wavelet power spectrum:the first interval is shown as an impulsive type and with a weaker intensity, and the second one is stronger. Regarding to the cumulative time of the transformer temperature rise caused by GIC, the second interval has a longer duration than the first one. Hence, during the second interval, it is more harmful to the power systems and devices. (4) With a correlation analysis, the correlations of the SYM-H index and dB_x/dt with the GIC are significantly stronger than those of other geomagnetic indices with the GIC.
机译:利用2004-2005年临澳核电厂的地磁感应电流(GIC)事件,重点研究了星际引起的行星间运动及其对电力系统的影响,我们分析了相应的太阳驱动源和星际太阳风结构,并通过小波变换对最强烈的GIC事件进行频谱分析。研究结果表明:(1)大部分GIC事件主要由晕冠物质抛射驱动,GIC事件的行星际原因包括激波鞘,磁云和多重星际太阳风结构。 (2)基于2001年11月9日最强的GIC事件,我们发现早期GIC的波动与磁云边界层有关,而后期GIC强度的变化是由磁云本身引起的。 (3)与电力系统的频率(50 Hz)相比,GIC可以等效于准直流电。 GIC的能量体现在小波功率谱中的两个时间间隔中:第一个间隔显示为脉冲型且强度较弱,第二个间隔较强。关于由GIC引起的变压器温度上升的累积时间,第二个间隔的持续时间比第一个间隔的持续时间长。因此,在第二时间间隔内,它对电力系统和设备的危害更大。 (4)通过相关分析,SYM-H指数和dB_x / dt与GIC的相关性明显强于其他地磁指数与GIC的相关性。

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