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Study on Variation Rate Characters of Mid-to-low Latitude Area Geomagnetic Field during Geomagnetic Storms

机译:地磁风暴期间中低纬度地形地磁场变化率特征研究

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Geomagnetic field changes acutely during geomagnetic storms. According to Faraday's law of electromagnetic induction, the change of the geomagnetic field produces geomagnetically induced current(GIC) in power grid, which directly damages the power equipment and threatens safe operation of power grid. The more dramatically geomagnetic field changes, the bigger geomagnetically induced current in power grid becomes, and thus, the greater harm it brings to power grid. In this paper, based on the H and D components of recent geomagnetic storm data measured by several mid-to-low latitude geomagnetic observatories, the variation law of the amplitude of north-south and east-west geomagnetic component change rate (dX/dt and dY/dt) pulse with geomagnetic latitude was analyzed when geomagnetic field changed very severely. Finally, the possibilities of power grid in different direction affected by GIC with the change of latitude were discussed. The analysis results will contribute to the evaluation, measurement and control of GIC in Chinese current and future power grid.
机译:在地磁风暴期间,地磁场急性变化。在电网,这直接损害了电力设备,威胁电网的安全运行,根据法拉第电磁感应定律,地磁场的变化产生地磁感应电流(GIC)。越大的地质磁场变化,电网中的更大的地磁感应电流变为,因此,它带来更大的危害它为电网带来了更大的危害。本文基于几个中低纬度地质磁性观测者测量的最近地磁风暴数据的H和D组分,南北地质磁性分量变化率的幅度变化规律(DX / DT当地质磁场变化非常严重时,分析了具有地磁纬度的DY / DT)脉冲。最后,讨论了随着纬度变化影响的不同方向的电网的可能性。分析结果将有助于中国电流和未来电网的评估,测量和控制GIC。

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