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首页> 外文期刊>Analysis and applications >Day-to-Day Variability of Prereversal Enhancement in the Vertical Ion Drift in Response to Large-Scale Forcing From the Lower Atmosphere
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Day-to-Day Variability of Prereversal Enhancement in the Vertical Ion Drift in Response to Large-Scale Forcing From the Lower Atmosphere

机译:垂直离子漂移中的常规增强的日常变异,响应于大气层大规模强迫

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摘要

Equatorial plasma bubbles (EPBs) are plasma density irregularities found in the equatorial ionosphere after sunset and are closely related to the upward ExB drift before it reverses to the generally downward direction at nighttime, referred to as prereversal enhancement (PRE). Although the seasonal variation of PRE and EPB have been generally associated with F and E region dynamo, large variability of EPB occurrence from one day to the next is still puzzling and poses a challenge for equatorial space weather research and forecast. This study shows that the PRE variability is strongly affected by the large-scale lower atmosphere variability on day-to-day weather scales through the E region dynamo at middle latitudes in the summer hemisphere. The whole atmosphere general circulation model with interactive ionosphere electrodynamics employed in the study does not resolve EPB due to insufficient model resolution, but EPB occurrence rate can be deduced from the simulated PRE using an empirical relation. The deduced EPB rate is in good agreement with the observed rates, suggesting the important role of large-scale dynamics and electrodynamics in preconditioning EPB and the feasibility of probabilistic forecast of EPB using a whole atmosphere model.
机译:赤道等离子体泡沫(EPB)是在日落后赤道电离层中发现的等离子体密度不规则,并且与向上的EXB漂移密切相关,然后在夜间逆转到一般向下方向,称为预级增强(Pre)。虽然预先和EPB的季节变化一般与F和E区域发电机有关,但EPB发生的大量可变性从一天到下一个仍然是令人费解的,并且对赤道空间天气研究和预测构成了挑战。本研究表明,通过在夏季半球中的中部纬度的E区发电机,通过日常天气鳞片的大规模降低大气变异性强烈影响。由于模型分辨率不足,研究具有在研究中使用的交互式电离层电动动力学的整个气氛一般循环模型,但是由于模型分辨率不足,但可以从模拟的预先使用经验关系来推导EPB发生率。推导出的EPB率与观察到的速率吻合良好,表明大规模动力学和电动在预处理EPB中的重要作用以及使用整个大气模型的EPB概率预测的可行性。

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