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Study of the ionosphere during a magnetospheric storm using data on the ground and in space

机译:利用地面和空间数据研究磁层风暴期间的电离层

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For the magnetospheric storm of May 14-16, 1997 geophysical data of satellites DMSP and IMP-8 are compared with data of radio propagation on the high-latitude HF radio path of Heiss Island - St. Petersburg and data from European ionosondes. Peculiarities of variations of the operational frequencies range MOF-LOF (maximum and lowest observed frequencies) on the path were considered. The range has been determined by the method of oblique ionospheric sounding (OIS). The latter is more informative for observations during a magnetic storm compared to the vertical sounding method. Nevertheless, an analysis of variations of the critical frequency of the ionospheric F2 layer from the chain of European ionosondes was carried out. For interpretation of results, data of magnetospheric parameters, AE-indexes and riometer data were used. The variations of both frequency range on the path and critical frequencies of the F2 layer through the ionosondes chain during the disturbed period had certain regularities of behaviour. These regularities are being explained from the physical point of view. The analysis of the satellite DMSP data has showed that a magnetospheric disturbance causes displacement equatorward of precipitation and some growth of its width and energy.
机译:对于1997年5月14日至16日的磁层风暴,将DMSP和IMP-8卫星的地球物理数据与在圣彼得堡Heiss Island的高纬度HF无线电路径上的无线电传播数据以及来自欧洲离子探空仪的数据进行了比较。考虑了路径上的工作频率范围MOF-LOF(最大和最小观测频率)变化的特殊性。该范围已通过斜向电离层探测法(OIS)确定。与垂直探测方法相比,后者对于磁暴期间的观测更为有用。然而,从欧洲离子探空仪链上分析了电离层F2层临界频率的变化。为了解释结果,使用了磁层参数,AE指数和测距仪数据。 F2层的路径和临界频率在受干扰期间通过离子探空仪链的变化都具有一定的规律性。从物理角度解释了这些规律性。对卫星DMSP数据的分析表明,磁层扰动会导致降水向赤道位移,并导致其宽度和能量的增加。

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