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Storm Time Ionospheric-Tropospheric Dynamics: a Study Through Ionospheric and Lower Atmospheric Variability Features of High/Mid and Low Latitudes

机译:风暴时间电离层 - 对流层动力学:通过电离层和低纬度和低纬度的大气变异特征研究

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摘要

Geomagnetic storm is one of the major disturbances in Earth's magnetosphere and its effect on ionosphere is a well studied area, yet there are a few aspects still require attention for possible framing of a reliable comprehensive model associating lower atmospheric variabilities. One of them is the role of storm time coupling mechanisms between high/mid latitudes and equatorial anomaly crest region in modifying ionospheric parameters and their simultaneous effect at the lower altitudes. In this background the paper presents a comparative analysis of the magnetic storm induced effects on the ionosphere for a few events of weak to very strong intensity, covering periods from 2011 to 2015 by utilizing foF(2) data collected at high/mid latitude station of IZMIRAN (55.47 degrees N, 37.30 degrees E, ? = +50.82 degrees) and mid latitude station Alma-Ata (43.25 degrees N, 76.92 degrees E, ? = +33.42 degrees) and Total Electron Content (TEC) profiles of Guwahati (26.148 degrees N, 91.73 degrees E, ? = +12.30 degrees), an equatorial anomaly crest station. The modulation characters in storm time density at the latitudinal zone of study area are presented in association with lower atmospheric variability. In support to the observed variations, the role of storm induced electric field in development process of equatorial anomaly is brought in to ambit of discussion along with possible reason for changes at lower altitudes.
机译:地磁风暴是地球磁层的主要紊乱之一,其对电离层的影响是一个良好的研究区,但有一些方面仍需要注意可靠的综合型号的可能框架,这些综合模型相关联的较低的大气变量。其中一个是在改变电离层参数的高/中纬度和赤道异常嵴区域之间的抗暴时间耦合机制的作用及其在较低海拔地区的同时效果。在该背景中,通过利用在高/中纬度站收集的FOF(2)数据,对极弱到极其强度,从2011年到2015年的弱势强度的磁阻诱导对电离层的磁风暴诱导效果的比较分析。 Izmiran(55.47度N,37.30度,?= +50.82度)和中纬度站Alma-ATA(43.25度N,76.92摄氏度,?= +33.42度)和Guwahati的全电子含量(TEC)型材(26.148度N,91.73度E,?= +12.30度),赤道异常嵴站。研究区域延迟区域的调制特征与较低的大气变异性相关联。为了支持观察到的变化,风暴诱导的电场在赤道异常发育过程中的作用被带入了讨论的范围,以及在较低海拔地区的变化的可能性。

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  • 来源
    《Geomagnetism and aeronomy》 |2018年第7期|共14页
  • 作者单位

    Gauhati Univ Dept Phys Gauhati 781014 Assam India;

    Gauhati Univ Dept Phys Gauhati 781014 Assam India;

    Gauhati Univ Dept Phys Gauhati 781014 Assam India;

    Natl Ctr Space Res &

    Technol Inst Ionosphere Alma Ata Kazakhstan;

    Russian Acad Sci IZMIRAN Pushkov Inst Terr Magnetism Ionosphere &

    Radio Wa Troitsk 108840 Russia;

    Russian Acad Sci IZMIRAN Pushkov Inst Terr Magnetism Ionosphere &

    Radio Wa Troitsk 108840 Russia;

    Russian Acad Sci IZMIRAN Pushkov Inst Terr Magnetism Ionosphere &

    Radio Wa Troitsk 108840 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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