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首页> 外文期刊>Astronomische Nachrichten: A Journal on all Fields of Astronomy >A statistical analysis on the relationship between thunderstorms and the sporadic E Layer over Rome
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A statistical analysis on the relationship between thunderstorms and the sporadic E Layer over Rome

机译:雷暴与罗马零星E层关系的统计分析。

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Meteorological processes (cold fronts, mesoscale convective complexes, thunderstorms) in the troposphere can generate upward propagating waves in the neutral atmosphere affecting the behaviour of the ionosphere. One type of these waves are the internal atmospheric gravity waves (AGWs) which are often generated by thunderstorms. Davis & Johnson (2005) found in low pressure systems that a localized intensification of the sporadic E layer (Es) can be attributed to lightnings. To confirm this result, we have performed two different statistical analysis using the time series of the critical frequency (foEs), the virtual height of the sporadic E layer (h'Es), and meteorological observations (lightnings, Infrared maps) over the ionospheric station of Rome (41.9° N, 12.5° E). In the first statistical analysis, we separated the days of 2009 into two groups: stormy days and fair-weather days, then we studied the occurrence and the properties of the Es separately for the two different groups. No significant differences have been found. In the second case, a superposed epoch analysis (SEA) was used to study the behaviour of the critical frequency and virtual height 100 hours before and after the lightnings. The SEA shows a statistically significant decrease in the critical frequency after the time of the lightnings, which indicates a sudden decrease in the electron density of the sporadic E layer associated with lightnings.
机译:对流层中的气象过程(冷锋,中尺度对流复合体,雷暴)可在中性大气中产生向上传播的波,从而影响电离层的行为。这些波的一种是内部大气重力波(AGW),通常由雷暴产生。 Davis&Johnson(2005)在低压系统中发现,零星E层(Es)的局部增强可能归因于雷电。为了确认这一结果,我们使用临界频率(foEs)的时间序列,零星E层的虚拟高度(h'Es)和电离层的气象观测(闪电,红外图)进行了两种不同的统计分析罗马站(北纬41.9°,东经12.5°)。在第一个统计分析中,我们将2009年的日子分为两类:暴风雨天和天气晴朗的日子,然后分别研究了两个不同组的Es的发生和性质。未发现明显差异。在第二种情况下,使用叠加时代分析(SEA)研究雷电前后100小时的临界频率和虚拟高度的行为。 SEA显示在闪电发生之后,临界频率在统计上显着降低,这表明与闪电相关的零星E层的电子密度突然降低。

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