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GPS TEC variations under quiet and disturbed geomagnetic conditions during the descending phase of 24th solar cycle over the Indian equatorial and low latitude regions

机译:在印度赤道和低纬度地区的第24届太阳循环的下降阶段,在安静和干扰的地磁条件下的GPS TEC变化

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摘要

The present study is focused to understand the geomagnetic storm effects on the short- and long-term variations of ionospheric Total Electron Content (TEC) over the equatorial and low latitude sectors. GPS-TEC observations over a near equatorial station Bangalore and low latitude stations Waltair and Hyderabad during the declining phase of the 24th solar cycle (2015-2019) is analysed. The TEC variations during quiet and disturbed conditions are individually analysed to understand the geomagnetic storm effects on the diurnal, seasonal and solar activity variations. The seasonal variations of disturbed time TEC are following the quiet time trend with equinoctial maximum and summer minimum in the moderate solar activity periods. But, during low solar activity periods, the seasonal dependence of disturbed time TEC is different than that of quiet time. The difference in TEC during disturbed and quiet times is higher during moderate solar activity than that of low solar activity conditions. The TEC difference between disturbed and quiet periods is found to be maximum during summer months of moderate solar activity periods. Further, correlation analysis between F 10.7 cm solar flux and TEC during quiet and disturbed conditions is carried out for three different locations. It is found that the correlation between TEC and F 10.7 cm solar flux is higher during quiet time compared to that during disturbed periods with more correlation at the equator than at low latitudes.
机译:本研究专注于了解地磁风暴对赤道和低纬度扇区上的电离层总电子含量(TEC)的短期和长期变化的影响。分析了GPS-TEC在第24届太阳循环(2015-2019)下降期间的近赤道站班加罗尔和低纬度站Waltair和Hyderabad。在安静和扰乱的条件下的TEC变化是单独分析的,以了解对昼夜季节性和太阳能活动变化的地磁风暴影响。干扰时间TEC的季节变化是在适度的太阳能期间具有equincectial最高和夏季最小的安静时间趋势。但是,在低太阳能活动期间,干扰时间TEC的季节性依赖性与安静时期的速度不同。在温度和安静时间期间的TEC的差异在适度的太阳能活动中比低太阳能活性条件的差异更高。在适度的太阳能活动期间,发现干扰和安静时期之间的TEC差异最多。此外,对三个不同位置进行了在安静和干扰条件下的F 10.7cm太阳能通量和TEC之间的相关分析。结果发现,与在赤道的低纬度下的受干扰时段相比,TEC和F 10.7cm太阳能通量之间的相关性在安静的时间内更高。

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