Estimating Geomagnetically Induced Currents in High-Voltage Power Lines for the Territory of Kazakhstan

IF 3.7 2区 地球科学
Space Weather Pub Date : 2023-12-08 DOI:10.1029/2023sw003639
A. B. Andreyev, S. N. Mukasheva, V. I. Kapytin, O. I. Sokolova
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Abstract

Extreme solar events, such as powerful solar flares are accompanied by the release of strong solar disturbances, such as coronal mass ejections (CMEs). The impact of CMEs on the Earth's magnetosphere causes geomagnetic storms, which trigger geomagnetic effects measurable in the ionosphere, upper atmosphere, and on and in the ground. During extreme cases, rapidly changing geomagnetic fields generate intense geomagnetically induced currents (GICs), which can cause dramatic effects on man-made technological systems, including transmission lines and pipelines. In countries with large territories such as Kazakhstan, long power lines contribute to high values of induced currents during periods of extreme geoeffective solar events. It is of interest to estimate the values of GICs in an extensive network of power lines on the territory of Kazakhstan. However, there are no estimations of induced currents in power lines in Kazakhstan, and most estimation techniques are made difficult because of absence of field measurements of Earth conductivity. This study aims to model geoelectric fields on the surface of the Earth for Kazakhstan and to estimate the values of the GICs in 500 kV power lines. This study also compares between two methods for calculating induced voltages in power lines: one based on linear paths and the other based on curvilinear paths between substations of transmission power lines.
估算哈萨克斯坦境内高压电线的地磁诱导电流
极端太阳事件,如强烈的太阳耀斑,伴随着强烈的太阳扰动,如日冕物质抛射(CMEs)的释放。日冕物质抛射对地球磁层的影响会导致地磁暴,引发电离层、高层大气、地面和地下可测量到的地磁效应。在极端情况下,瞬息万变的地磁场会产生强烈的地磁感应电流(GIC),对输电线和管道等人造技术系统造成巨大影响。在哈萨克斯坦等幅员辽阔的国家,长长的输电线在太阳极端地磁效应事件期间会产生很高的感应电流值。估算哈萨克斯坦境内庞大的输电线网络中的 GIC 值很有意义。然而,目前还没有对哈萨克斯坦境内电力线路中的感应电流进行估算,而且由于缺乏对地球电导率的实地测量,大多数估算技术都很困难。本研究旨在为哈萨克斯坦的地球表面地质电场建模,并估算 500 kV 输电线的 GIC 值。本研究还比较了计算输电线路感应电压的两种方法:一种基于线性路径,另一种基于输电线路变电站之间的曲线路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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29.70%
发文量
166
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