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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Midlatitude F region peak height changes in response to interplanetary magnetic field conditions and modeling results
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Midlatitude F region peak height changes in response to interplanetary magnetic field conditions and modeling results

机译:中间纬度F区峰值高度的变化对行星际磁场的反应条件和建模结果

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摘要

The response of the electron density peak height of the F2 region, hmF2, to geomagnetic storms has been investigated and a characteristic behavior of the peak height disturbance in relation to local-time, season and conditions of the interplanetary magnetic field has been obtained. The experimental results support the storm scenario which the change in the thermospheric wind is the main physical mechanism raising the ionospheric peak height. A real-time forecasting tool modeling the hmF2 disturbance, hmF2, by analytical time-dependent functions has been developed. The empirical model predicts hmF2 for latitudes of the Iberian Peninsula with an 86% of success and without false alarms. The behavior of the model fits to the experimental observations at other latitudes and longitudes within Europe which would allow extending its usefulness at wider latitudinal ranges.
机译:电子密度的响应峰值的高度hmF2 F2的地区,地磁暴被调查和行为特征峰高干扰的关系本地时间、季节和条件的行星际磁场获得。实验结果支持了风暴thermospheric场景的变化风是提高的主要物理机制电离层峰值高度。工具建模hmF2扰动,hmF2分析时间函数发展。纬度的伊比利亚半岛的86%成功,没有假警报。模型符合实验观测在欧洲其他纬度和经度这将允许扩展它的用途吗更广泛的纬度的范围。

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