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Geomagnetically induced currents in the Irish power network during geomagnetic storms

机译:地磁暴期间爱尔兰电网中的地磁感应电流

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Geomagnetically induced currents (GICs) are a well-known terrestrial space weather hazard. They occur in power transmission networks and are known to have adverse effects in both high-latitude and midlatitude countries. Here we study GICs in the Irish power transmission network (geomagnetic latitude 54.7–58.5°N) during five geomagnetic storms (6–7 March 2016, 20–21 December 2015, 17–18 March 2015, 29–31 October 2003, and 13–14 March 1989). We simulate electric fields using a plane wave method together with two ground resistivity models, one of which is derived from magnetotelluric measurements (magnetotelluric (MT) model). We then calculate GICs in the 220, 275, and 400 kV transmission network. During the largest of the storm periods studied, the peak electric field was calculated to be as large as 3.8 V km, with associated GICs of up to 23 A using our MT model. Using our homogenous resistivity model, those peak values were 1.46 V km and 25.8 A. We find that three 400 and 275 kV substations are the most likely locations for the Irish transformers to experience large GICs.
机译:地磁感应电流(GIC)是一种众所周知的陆地空间天气危害。它们出现在输电网络中,并且已知在高纬度和中纬度国家都有不利影响。在这里,我们研究了五次地磁风暴(2016年3月6日至7日,2015年12月20日至21日,2015年3月17日至18日,2003年10月29日至31日和13日)在爱尔兰输电网络(地磁纬度54.7-58.5°N)中的GIC。 – 1989年3月14日)。我们使用平面波方法以及两个接地电阻率模型来模拟电场,其中两个接地电阻率模型是从大地电磁测量(大地电磁(MT)模型)得出的。然后,我们计算220、275和400 kV传输网络中的GIC。在研究的最大风暴期间,使用我们的MT模型,计算出的峰值电场最大为3.8 V km,相关的GIC高达23A。使用我们的均匀电阻率模型,这些峰值分别为1.46 V km和25.8A。我们发现三个400和275 kV变电站是爱尔兰变压器体验大型GIC的最可能地点。

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