Prediction of the space weather disturbances

D. Blagoveshchensky
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Abstract

Little-known mechanisms of formation of /spl Delta/f/sub 0/F2 ionospheric positive peaks during 6-8 hours before T/sub 0/ (onset of the expansion phase of an isolated substorm) are considered in details. They are connected with an impact of the high-speed particles in the foreshock region of solar wind on the Earth's magnetosphere. Here, the main feature is an entirely different channel of solar wind penetration in the ionosphere. This channel realizes the transmission of energy through the entry layer into the inner magnetosphere and through the day-time cusp into the ionosphere as distinct from the classical channel which describes all three substorm phases, namely, through the magnetospheric tail, plasma sheet and auroral ionosphere. The ionospheric effect due to a cusp and magnetospheric entry layer manifests most likely at high latitudes (polar cap and auroral oval). Enhancement of /spl Delta/f/sub 0/F2 values can be used for prediction of the near Earth disturbance onset and accordingly of space weather problems concerning operation of cosmic apparatus and systems of communications, orientation, and navigation.
空间天气扰动预测
详细讨论了在T/sub 0/(孤立次暴膨胀阶段的开始)之前6-8小时内/spl Delta/f/sub 0/F2电离层正峰的形成机制。它们与太阳风前震区高速粒子对地球磁层的影响有关。这里的主要特征是太阳风在电离层中的穿透通道完全不同。该通道实现了能量通过入口层进入内磁层和通过白天尖峰进入电离层的传输,这与描述所有三个亚暴阶段的经典通道(即通过磁层尾巴、等离子体片和极光电离层)不同。电离层效应主要表现在高纬度地区(极帽和极光椭圆)。/spl Delta/f/sub 0/F2值的增强可用于预测近地扰动的发生,从而预测有关宇宙仪器和通信、定位和导航系统运行的空间天气问题。
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