首页> 外文期刊>International Journal of Advanced Astronomy >SCINDA-GPS derived TEC depletions and amplitude scintillations over Kisumu, Kenya during selected quiet and storm days of 2013 and 2014
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SCINDA-GPS derived TEC depletions and amplitude scintillations over Kisumu, Kenya during selected quiet and storm days of 2013 and 2014

机译:Scinda-gps在2013年和2014年选定的安静和风暴日期间,Kisumu,肯尼亚衍生出TEC耗尽和幅度闪烁

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Total Electron Content (TEC) depletion and amplitude scintillation (S 4 ) can be derived from, SCINDA-GPS receivers situated in various parts of the equatorial region. In this paper we present results of characterization of TEC depletions and amplitude scintillations over Kisumu, Kenya (Geomagnetic coordinates: 9.64 o S, 108.59 o E; Geographic coordinates: 0.02 o S, 34.6 o E) for both selected geomagnetically quiet and geomagnetically disturbed conditions between 1 st January 2013 and 31 st December 2014 using data derived from the Kisumu NovAtel GSV4004B SCINDA-GPS receiver situated at Maseno University. TEC depletions and amplitude scintillations affect Global Positioning System (GPS) signals in the ionosphere as they propagate from the satellite to the receiver. This study aims to investigate day to day variability of TEC depletions and amplitude scintillations over Kisumu, Kenya during both geomagnetically quiet and geomagnetically disturbed days of 2013 and 2014 which was a high solar activity period for Solar Cycle 24. Seasonal variability of TEC depletions and S 4 index is also presented. The Receiver Independent Exchange (RINEX) data for the years 2013 and 2014 was retrieved from the Kisumu SCINDA-GPS receiver, processed to obtain Vertical Total Electron Content (VTEC), S 4 and Universal Time (UT) and fed into MATLAB to generate VTEC and S 4 plots against UT for each selected quiet and storm day within the 2013 and 2014 period. The obtained results showed a diurnal variation of TEC where TEC was minimum at pre-sunrise, maximum during daytime and minimum during nighttime. The minimum TEC during pre-sunrise and nighttime was attributed to reduced solar intensity while maximum TEC during daytime is attributed to increased solar intensity. Most of the selected quiet and storm days of the years 2013 and 2014 showed TEC depletions and TEC enhancements corresponding with enhanced amplitude scintillations between 1800UT and 20:00UT. This might be attributed to the rapid rise of the F-layer and the increase in the vertical E x B plasma drift due to the Pre-reversal Enhancement (PRE) of the eastward electric field. Post-midnight TEC depletions and amplitude scintillations were observed for some days and this was attributed to the effect of zonal winds which brought post-midnight enhancement of the E x B drift. The percentage occurrence of amplitude scintillations for the selected quiet and storm days exhibited a seasonal dependence with equinoctial months having higher occurrences than the solstitial months. The higher average S 4 index during equinoctial months might be attributed to increased solar intensity resulting from the close alignment of the solar terminator and the geomagnetic meridian.
机译:总电子含量(TEC)耗尽和幅度闪烁(S 4)可以源自位于赤道区域的各个部分中的Scinda-GPS接收器。在本文中,我们在Kenya,肯尼亚(地磁坐标:9.64 o S,108.59 o e E)的表征表征TEC耗尽和幅度闪烁的结果。选择地磁安静和地磁干扰条件2013年1月1日至2014年12月31日在2014年12月31日,使用源自Kisumu Novatel GSV4004B Scinda-GPS接收器位于Maseno大学的数据。 TEC耗尽和幅度闪烁在电离层中影响到电离层中的全球定位系统(GPS)信号,因为它们从卫星传播到接收器。本研究旨在调查2013年和2014年地质安静和地磁干扰的日期,肯尼亚在肯尼亚的日常变异,肯尼亚的幅度闪烁,这是太阳循环的高太阳能活动时间24. TEC耗尽和S的季节性变异性还提出了4个索引。从Kisumu Scinda-GPS接收器检索到2013年和2014年的接收器独立交换(RINEX)数据,加工以获得垂直的总电子含量(VTEC),S 4和通用时间(UT),并将其送入MATLAB以产生VTEC和2013年和2014年期间的每个选定的安静和风暴日为ut的4个地块。所得结果表明,TEC在日出前的TEC最小,白天期间最大,最小在夜间最小。日出前和夜间期间的最小TEC归因于太阳能减小,而白天期间的最大TEC归因于太阳能提高。 2013年和2014年的大多数选定的安静和风暴日,表明TEC消耗和TEC增强与1800t至20之间的增强幅度闪烁相对应。这可能归因于F层的快速升高以及由于东电场的预翻转增强(PRE),垂直E×B等离子体漂移的速度增加。午夜后脱落耗尽和振幅闪烁有几天,这归因于带来午夜漂移后午夜增强的区域风的影响。所选择的安静和雨天的幅度闪烁的百分比表现出季节性依赖性,其患有比持次次数更高的障碍月份。在均衡月期间的较高平均S 4指数可能归因于太阳能终端和地磁子午线的紧密对准而增加的太阳能强度。

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