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Regional manifestations of storm meteorological phenomena in the atmosphere and ionosphere

机译:大气和电离层中风暴气象现象的区域表现

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Ensuring reliable functioning and stability of GNSS systems in any natural and man-made conditions is an urgent task. Understanding the physico-chemical processes developing in the atmosphere is important for successful solving these problems. The paper presents the results of the analysis of observations of atmospheric and ionospheric parameters during the development of storm meteorological disturbances in the Kaliningrad region. The data of observations of the atmosphere and ionosphere parameters were obtained using the methods of lidar sensing of the troposphere and vertical sensing of the ionosphere. Analysis of observations of atmospheric and ionospheric parameters showed that the development of such meteorological disturbances is accompanied by increased activity of wave processes in the troposphere with periods of 2-20 minutes. Perturbations with the same periods are observed in variations of ionospheric parameters. The obtained results indicate the correlation of dynamic processes in the lower atmosphere and ionosphere.
机译:确保GNSS系统在任何自然和人为条件下的GNSS系统的可靠功能和稳定性是一个紧急的任务。了解在大气中发展的物理化学过程对于成功解决这些问题是重要的。本文介绍了在加里宁格勒地区风暴气象干扰发展过程中的大气和电离层参数分析的结果。利用激光脉络膜的激光传感方法和电离层的垂直感测,获得了大气和电离层参数的观察数据。大气和电离层参数的观察分析表明,这种气象障碍的发展伴随着对流层中的波浪过程的活性增加了2-20分钟。在电离层参数的变化中观察到具有相同时段的扰动。所得结果表明,动态过程在低层大气和电离层中的相关性。

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