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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Quiet-Time Day-to-Day Variability of Equatorial Vertical E × B Drift From Atmosphere Perturbations at Dawn
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Quiet-Time Day-to-Day Variability of Equatorial Vertical E × B Drift From Atmosphere Perturbations at Dawn

机译:赤道垂直e×b的安静时间日常变异,黎明的大气扰动漂移

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摘要

Ionospheric day-to-day variability is ubiquitous, even under undisturbed geomagnetic and solar conditions. In this paper, quiet-time day-to-day variability of equatorial vertical E × B drift is investigated using observations from ROCSAT-1 satellite and the Whole Atmosphere Community Climate Model with thermosphere and ionosphere eXtension (WACCM-X) v2.1 simulations. Both observations and model simulations illustrate that the day-to-day variability reaches the maximum at dawn, and the variability of dawn drift is largest around June solstice at ~90-180°W. However, there are significant challenges to reproduce the observed magnitude of the variability and the longitude distributions at other seasons. Using a standalone electro-dynamo model, we find that the day-to-day variability of neutral winds in the E-region (≤~130 km) is the primary driver of the day-to-day variability of dawn drift. Ionospheric conductivity modulates the drift variability responses to the E-region wind variability, thereby determining its strength as well as its seasonal and longitudinal variations. Further, the day-to-day variability of dawn drift induced by individual tidal components of winds in June are examined: DW1, SW2, D0, and SW1 are the most important contributors.
机译:即使在不受干扰的地磁和太阳能条件下,普遍存在的电离层日至日变异性。在本文中,使用来自Rocsat-1卫星和全部大气群落气候模型的观测,研究了赤道​​垂直E×B漂移的安静时日变异性,并与热圈和电离层延伸(WACCM-X)v2.1模拟。两者的观察和模型模拟都表明,日常变异性达到黎明的最大值,黎明漂移的可变性在〜90-180°W左右六月溶剂。然而,具有重现观察到的可变性和经度分布在其他季节的挑战存在重大挑战。使用独立的电动发电机模型,我们发现E区中性风的日常变异(≤〜130公里)是黎明漂移日常变异性的主要驱动器。电离层电导率调制漂移变化响应对E区风变性,从而确定其强度以及其季节性和纵向变化。此外,6月份随风的各个潮汐组分诱导的黎明漂移的日常变异性:DW1,SW2,D0和SW1是最重要的贡献者。

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