地磁感应电流和空间天气——奥地利目前和未来研究综述

Dennis Albert, T. Halbedl, H. Renner, R. Bailey, G. Achleitner
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引用次数: 4

摘要

导电接地电力传输网络为地面感应电流提供了低阻路径。高纬度地区或地球电导率低的地区特别容易受到由空间天气事件引起的地磁感应电流的影响。感应电流可能导致资产损坏或系统中断。奥地利作为欧洲阿尔卑斯山脉的一部分,导电性较低,输电网络中感应电流的风险较高,因此,研究了空间天气对电力系统的影响。在奥地利建立了两个独立的GICs模型,并通过与正在进行的变压器中性点电流测量的比较进行了验证。展望了空间天气预报、直流偏压下电力变压器及系统运行对策等今后的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geomagnetically induced currents and space weather - A review of current and future research in Austria
Conductive grounded electrical power transmission networks offer a low resistance path for currents induced in the ground. High latitude regions or those with low earth conductivity are especially affected by geomagnetically induced currents (GICs), which are caused by space weather events. Induced currents can cause damages of assets or system outages. Austria, as part of the European Alps with low conductive areas, tends to have a higher risk of induced currents in the electrical power transmission network, therefore, the effect of space weather in the power system has been investigated. Two independent models of GICs in Austria were set up and verified through comparison to ongoing transformer neutral point current measurements. Further research fields, such as space weather prediction, power transformers under dc bias and countermeasures for system operation are outlined.
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