首页> 外文期刊>African Journal of Environmental Science and Technology >Evaluating the rate of total electron content (TEC) production in ionosphere F2-layer to highlight winter anomaly by running thermosphere-Ionosphere-electrodynamics general circulation model
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Evaluating the rate of total electron content (TEC) production in ionosphere F2-layer to highlight winter anomaly by running thermosphere-Ionosphere-electrodynamics general circulation model

机译:通过运行热圈 - 电离层 - 电动力通用循环模型,评估电离层F2层中总电子含量(TEC)生产的速率以突出冬季异常

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The study deals with determining ionosphere parameter at low latitudes during the maximum of solar cycle 22 on quiet days. It uses Thermosphere-Ionosphere-Electrodynamics General Circulation Model (TIEGCM) to carry out Total Electron Content (TEC) parameter in the ionosphere region. TEC time variability on summer and winter highlights a seasonal anomaly, a phenomenon observed since 1965 and which appears while radiations coming from the sun are more intensive in summer than in winter under low latitudes. A mathematical approach integrating the time values of TEC parameter is developed to calculate TEC total value during all the season. The study shows that the seasonal anomaly phenomenon is not observed at every time between summer and winter. Comparison of the rate of electrons production matches with solar radiation intensity between summer and winter during a short period. Apparition of winter anomaly phenomenon shows that ultraviolet and X-rays emitted from the Sun are not the only causes of ionization of particles in ionosphere. Other chemical or physical phenomena also contribute to enhance the concentration of electrons in the atmosphere. The estimation of the rate of TEC production in ionosphere F2-layer enables a comparison of summer and winter behavior in ionosphere layer. The study offers a good knowledge of winter anomaly phenomenon.
机译:该研究涉及在安静的日子上最大的太阳循环22期间确定低纬度的电离层参数。它采用热圈 - 电离层电动力通用循环模型(TieGCM)在电离层区域中进行全电子含量(TEC)参数。 TEC时间可变性夏季和冬季突出了季节性异常,自1965年以来观察到的现象,而来自阳光的辐射在夏天比在低纬度的冬季更为密集。开发了一种数学方法,其集成了TEC参数的时间值,以计算所有季节期间的TEC总值。该研究表明,夏季和冬季之间每次都没有观察到季节性异常现象。短时间内夏季和冬季太阳辐射强度的电子生产比赛比较。冬季异常现象的幻影表明,从太阳发出的紫外线和X射线不是电离层中颗粒电离的唯一原因。其他化学或物理现象也有助于提高大气中的电子浓度。对电离层F2层中TEC产生率的估计能够比较电离层层中的夏季和冬季行为。该研究提供了对冬季异常现象的良好知识。

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