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Time Evolution of Storms Producing Terrestrial Gamma-Ray Flashes Using ERA5 Reanalysis Data, GPS, Lightning and Geostationary Satellite Observations

机译:使用ERA5再分析数据,GPS,闪电和地球静止卫星观测产生陆地伽马射线闪烁风暴的时间演变

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摘要

In this article, we report the first investigation over time of the atmospheric conditions around terrestrial gamma-ray flash (TGF) occurrences, using GPS sensors in combination with geostationary satellite observations and ERA5 reanalysis data. The goal is to understand which characteristics are favorable to the development of these events and to investigate if any precursor signals can be expected. A total of 9 TGFs, occurring at a distance lower than 45 km from a GPS sensor, were analyzed and two of them are shown here as an example analysis. Moreover, the lightning activity, collected by the World Wide Lightning Location Network (WWLLN), was used in order to identify any links and correlations with TGF occurrence and precipitable water vapor (PWV) trends. The combined use of GPS and the stroke rate trends identified, for all cases, a recurring pattern in which an increase in PWV is observed on a timescale of about two hours before the TGF occurrence that can be placed within the lightning peak. The temporal relation between the PWV trend and TGF occurrence is strictly related to the position of GPS sensors in relation to TGF coordinates. The life cycle of these storms observed by geostationary sensors described TGF-producing clouds as intense with a wide range of extensions and, in all cases, the TGF is located at the edge of the convective cell. Furthermore, the satellite data provide an added value in associating the GPS water vapor trend to the convective cell generating the TGF. The investigation with ERA5 reanalysis data showed that TGFs mainly occur in convective environments with unexceptional values with respect to the monthly average value of parameters measured at the same location. Moreover, the analysis showed the strong potential of the use of GPS data for the troposphere characterization in areas with complex territorial morphologies. This study provides indications on the dynamics of con-vective systems linked to TGFs and will certainly help refine our understanding of their production, as well as highlighting a potential approach through the use of GPS data to explore the lightning activity trend and TGF occurrences.
机译:在这篇文章中,我们报道过的地面周围的伽马射线闪光(TGF)发生的大气条件时第一次调查,与静止卫星观测和ERA5再分析资料结合使用GPS传感器。我们的目标是要了解它的特性有利于这些事件的发展,并以调查是否任何前驱信号可以预期的。总共9个TGFs,在距离发生低于从GPS传感器45公里进行了分析和它们中的两个在此作为示例示出的分析。此外,雷电活动,由World Wide闪电定位网(WWLLN)收集,是为了识别与TGF发生和水汽(PWV)的趋势的任何链接和相关性使用。 GPS的组合使用,并确定了行程速度的趋势,对于所有的情况下,重复图案,其中增加PWV上的约两个小时的TGF发生,可以被放置在闪电峰内之前的时间尺度观察。在PWV趋势和TGF发生之间的时间关系是严格地与GPS传感器相对于TGF坐标位置。这些风暴由对地静止传感器观察的生命周期描述TGF-产生云激烈具有广泛的扩展,并且在所有情况下,TGF位于对流小区的边缘。此外,卫星数据提供在相关联的GPS水蒸气趋势于对流单元中产生的TGF附加值。与ERA5再分析数据的调查表明,TGFs主要相对于在相同位置测量的参数的月平均值均发生在用平常值对流环境。此外,分析显示,与复杂的领土形貌地区使用GPS数据进行对流层特性的强大潜力。这项研究提供了连接到TGFs CON-vective系统的动力学适应症和肯定会帮助改进我们自己生产的理解,以及突出通过使用GPS数据的潜在的方法来探索雷电活动趋势和TGF发生。

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