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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Daytime Ionospheric TECWeather Study Over Latin America
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Daytime Ionospheric TECWeather Study Over Latin America

机译:白天电离层TECWeather学习拉丁语美国

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The present work is the first of a two-part weather study of the ionospheric Total Electron Content (TEC), based on data collected by four ground-based Global Navigation Satellite System networks that cover the whole Latin America from the Patagonia to the north of Mexico. From the best of our knowledge, the maps presented here are the first TEC maps obtained using ground-based data that covers the entire Latin America region, which represent an advance to the space weather monitoring and forecasting of the ionosphere. This work provides a qualitative and quantitative daytime analysis of the ionospheric TEC variation, which encompasses: (a) the response of TEC to the solar flux at midday; (b) the seasonal variation of TEC in different latitudinal ranges; and (c) the North-South asymmetry of TEC over Latin America. The response to the solar flux is based on day-to-day TEC variations during two periods of different solar activity conditions: 2011 (ascending phase) and 2014 (maximum). The approximations of meridional wind component derived from Horizontal Wind Model-14 model and h_mF_2 obtained from International Reference Ionosphere model were used. Equinoctial asymmetries with an opposite configuration in high and moderate solar activity were identified in the TEC variation. For 2011, it was related to the solar flux change. However, in 2014, according to the h_mF_2 variation, the influence of neutral wind becomes dominant. Among the results, we highlight an absence of winter anomaly in the Northern Hemisphere in 2014 and a stronger annual anomaly for latitudes under ?20°.
机译:目前的工作是第一个两部分天气研究电离层总电子根据收集的数据内容(TEC),四个地面全球导航卫星系统网络覆盖了整个拉丁美洲墨西哥北部的巴塔哥尼亚。我们所知,本文提供的地图是第一个侦探地图获得使用吗地面数据覆盖整个拉丁美洲美国地区,这代表着进步空间天气监测和预测的电离层。电离层的白天定量分析TEC变化,包括:(a)中午回应的TEC太阳能通量;TEC的季节性变化不同纬度的范围;不对称的侦探在拉丁美洲。太阳能通量是基于日常侦探变化在两个时期不同的太阳能活动条件:2011(提升阶段)2014(最大)。风风组件来自水平Model-14模型和h_mF_2获得国际参考电离层模型使用。配置高和温和的太阳活动确定了TEC变化。这是有关太阳能通量变化。2014年,根据h_mF_2变异中性风的影响,成为主导。结果,我们强调没有冬天异常在北半球,2014年更强的年度异常纬度下? 20°。

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