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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Interhemispheric Comparisons of Large Nighttime Magnetic Perturbation Events Relevant to GICs
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Interhemispheric Comparisons of Large Nighttime Magnetic Perturbation Events Relevant to GICs

机译:大型夜间两半球间的比较磁扰动与新加坡政府投资公司相关的事件

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Nearly all studies of impulsive magnetic perturbation events (MPEs) with large magnetic field variability (dB/dt) that can produce dangerous geomagnetically induced currents (GICs) have used data from the Northern Hemisphere. Here we present details of four large-amplitude MPE events (|ΔB_x| > 900 nT and |dB/dt| > 10 nT/s in at least one component) observed between 2015 and 2018 in conjugate high-latitude regions (65-80° corrected geomagnetic latitude), using magnetometer data from (1) Pangnirtung and Iqaluit in eastern Arctic Canada and the magnetically conjugate South Pole Station in Antarctica and (2) the Greenland West Coast Chain and two magnetically conjugate chains in Antarctica, AAL-PIP and BAS LPM. From one to three different isolated MPEs localized in corrected geomagnetic latitude were observed during three premidnight events; many were simultaneous within 3 min in both hemispheres. Their conjugate latitudinal amplitude profiles, however, matched qualitatively at best. During an extended postmidnight interval, which we associate with an interval of omega bands, multiple highly localized MPEs occurred independently in time at each station in both hemispheres. These nighttime MPEs occurred under a wide range of geomagnetic conditions, but common to each was a negative interplanetary magnetic field B_z that exhibited at least a modest increase at or near the time of the event. A comparison of perturbation amplitudes to modeled ionospheric conductances in conjugate hemispheres clearly favored a current generator model over a voltage generator model for three of the four events; neither model provided a good fit for the premidnight event that occurred near vernal equinox.
机译:几乎所有的研究脉冲磁场(mp)与大磁扰动事件场变化(dB / dt)可以产生危险的眼睛感应电流(gic)使用来自北半球的数据。我们提出四个大幅度MPE的细节至少一个组件)观察到2015之间2018年(65 - 80°共轭高纬度地区纠正地磁纬度),使用从(1)Pangnirtung和磁强计数据在加拿大北极地区和东部建立磁共轭南极站南极和格陵兰西海岸(2)链和两个磁共轭链南极洲,AAL-PIP BAS行分钟。三个不同的独立议员本地化纠正地磁纬度观察在三个premidnight事件;在两个半球同时在3分钟。共轭纬度的振幅配置文件,然而,与定性。我们延长postmidnight间隔联想到ω乐队的一个区间,多个高度本地化的议员在每个站在这两个独立的时间半球。广泛的地磁条件,但是普遍都是负面的星际磁场说是表现出至少一个适度增加达到或接近事件的时间。扰动振幅的比较在共轭模型电离层电导半球明显青睐电流发生器在电压发生器模型三的模型四事件;适合premidnight事件发生近了春分。

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