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Global distribution of the thermospheric disturbances produced by effects from the upper and lower regions: simulations by a whole atmosphere GCM

机译:由上部和下部区域产生的热球扰动的全球分布:整个大气层的模拟GCM

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It is well-known that low-latitude ionospheric/thermospheric disturbances are sometimes generated in association with the passage of traveling ionospheric/atmospheric disturbances (TIDs/TADs) produced in the high-latitude region and that the low-latitude ionosphere/thermosphere should be strongly coupled with the lower atmosphere. These facts suggest that the appearance of thermospheric disturbances with complex structures in the low-latitude region are the result of a superposition of disturbances which have different origins. We have investigated the lower atmospheric effects oil the morphology of the thermospheric disturbances in response to changes in the geomagnetic activity by Using a whole atmosphere general circulation model (GCM). In order to suppress the lower atmospheric effects, we set the global mean temperature and zero-wind below about 80-km altitude in the GCM. The simulation results show that the lower atmospheric effects call produce latitudinal and longitudinal structures in the low-latitude thermosphere. These lower atmospheric effects also modulate the amplitudes and structures of TADs propagating from the high- to low-latitude regions. Our results suggest that the lower atmospheric effects can produce variability in the TIDs/TADs, which in turn would create conditions Conducive to plasma instabilities in the low-latitude ionosphere.
机译:众所周知,低纬度电离层/热层扰动有时是与高纬度地区产生的行进电离层/大气层扰动(TIDs / TADs)的通过相关联的,而低纬度电离层/热层扰动应是与低层大气强烈耦合。这些事实表明,低纬度地区具有复杂结构的热层扰动的出现是源于不同扰动叠加的结果。我们已经通过使用整体大气总环流模型(GCM)研究了响应于地磁活动变化的热效应扰动形态的较低大气效应。为了抑制较低的大气影响,我们在GCM中将全球平均温度和零风设置为低于80公里的高度。模拟结果表明,较低的大气影响导致在低纬度热圈中产生纬度和纵向结构。这些较低的大气效应也调节了从高纬度到低纬度地区传播的TAD的振幅和结构。我们的结果表明,较低的大气影响可能会在TID / TAD中产生变化,进而会产生有利于低纬度电离层等离子体不稳定的条件。

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