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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The Physical Mechanisms for the Sunrise Enhancement of Equatorial Ionospheric Upward Vertical Drifts
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The Physical Mechanisms for the Sunrise Enhancement of Equatorial Ionospheric Upward Vertical Drifts

机译:日出的物理机制增强的赤道电离层上升垂直漂移

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Satellite and incoherent scatter radar observations have shown frequently a strong enhancement of upward vertical E × B drifts in the equatorial ionospheric F region near sunrise. Previous studies suggested that this enhancement is associated with the local equatorial wind dynamo, the same process used to explain the prereversal enhancement after sunset. However, this hypothesis has never been tested in a first-principles way. In this study, we explore the physical mechanisms responsible for the sunrise enhancement of equatorial upward vertical drifts using the Thermosphere-Ionosphere-Electrodynamics General Circulation Model. The model well reproduces the sunrise enhancement of upward vertical drifts observed at Jicamarca on 10 June 2004. The simulation results show that large eastward zonal electric fields occur around sunrise at all latitudes but with a peak at middle latitudes. Further numerical experiments reveal that the equatorial sunrise enhancement at solar minimum is primarily driven by the E region zonal wind dynamo at middle latitudes rather than by the local dynamo effect in the equatorial region. Specifically, the intensity of the equatorial eastward electric field near sunrise is determined by the magnitudes of westward wind and its longitudinal gradient at middle latitudes and the declination of the dawn termination.
机译:卫星和非相干散射雷达观察结果显示经常强烈增强向上的垂直E×B的雪堆赤道电离层F区附近的日出。先前的研究表明,这种增强与当地的赤道风发电机,用于解释相同的过程在日落之后prereversal增强。在这一假设从来没有测试采用的方式。负责的物理机制日出增强赤道向上垂直飘使用Thermosphere-Ionosphere-Electrodynamics一般循环模型。日出增强向上垂直漂移观察到Jicamarca 2004年6月10日。仿真结果表明,大型东纬向电场发生在日出在中纬度地区纬度,但高峰。进一步的数值实验表明,在太阳赤道日出增强主要是由E地区纬向风发电机在中纬度地区而不是的在赤道地区当地发电机效应。具体来说,赤道的强度日出东附近的电场由西风和的大小其纵向梯度在中纬度地区黎明的赤纬终止。

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