基于BDS-GEO预报模式的中国电离层扰动探测——以2017年5月地磁风暴为例

IF 2.6 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
Jintao Wang, Jun Tang, Chaoqian Xu, Liang Zhang, Youkun Wang
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引用次数: 0

摘要

本文利用综合数据集研究了2017年5月地磁风暴期间中国上空的电离层扰动,包括来自北斗导航卫星系统(BDS)对地静止轨道(GEO)观测的总电子含量(TEC)测量数据、电离层探空数据、Swarm卫星数据和全球导航卫星系统(GNSS)无线电掩星(RO)数据。使用Prophet预测模型识别TEC异常,并将结果与三种滑动时间窗方法进行比较,结果一致。在风暴主阶段,TEC显著增加是由与行星际磁场(IMF) Bz波动有关的快速穿透电场(PPEF)驱动的。在恢复阶段,5月29日晚TEC增加,与IMF Bz南向转向和PPEF西向有关。值得注意的是,5月29日上午KUN1站观测到的TEC负风暴很可能是由于恢复阶段东向过屏蔽电场(OPEF)驱动f层抬升,引起瑞利-泰勒不稳定,导致等离子体气泡的形成。此外,COSMIC和Swarm卫星测量的电子密度(Ne)以及电离层F2层参数临界频率(foF2)和峰高(hmF2)在风暴期间显著增加。5月30日00:00 - 12:00 UT在中国观测到电离层负响应,可能是由热层成分变化引起的。本研究强调了BDS-GEO卫星在监测电离层TEC变化、捕捉扰动时空特征以及验证Prophet模型检测地磁风暴期间TEC异常波动方面的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ionospheric Disturbances Detection Based on BDS-GEO Observations With Prophet Model Over China: A Case Study of May 2017 Geomagnetic Storm

We investigate ionospheric disturbances over China during the May 2017 geomagnetic storm using an integrated data set, including total electron content (TEC) measurements from BeiDou Navigation Satellite System's (BDS) Geostationary Earth Orbit (GEO) observations, ionosonde data, Swarm satellites, and global navigation satellite system (GNSS) radio occultation (RO) data. TEC anomalies were identified using the Prophet forecasting model, and results were compared with three sliding time window methods, showing consistent outcomes. The significant TEC increase during the storm's main phase was driven by prompt penetration electric fields (PPEF) linked to interplanetary magnetic field (IMF) Bz fluctuations. During the recovery phase, TEC increased on May 29 night, associated with southward IMF Bz turning and westward PPEF. Notably, the TEC negative storm observed at the KUN1 station on the morning of May 29 was likely caused by F-layer uplift driven by the eastward overshielding electric field (OPEF) during the recovery phase, which induced Rayleigh-Taylor instability and resulted in the formation of plasma bubbles. Additionally, the electron density (Ne) measured by COSMIC and Swarm satellites, along with ionospheric F2 layer parameters critical frequency (foF2) and peak height (hmF2) showed significant increases during the storm. A negative ionospheric response was observed over China on May 30 from 00:00 to 12:00 UT, likely caused by thermosphere composition changes. This study highlights the efficiency of BDS-GEO satellites in monitoring ionospheric TEC variations, capturing spatiotemporal characteristics of disturbances, and validating the Prophet model for detecting anomalous TEC fluctuations during geomagnetic storms.

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来源期刊
Journal of Geophysical Research: Space Physics
Journal of Geophysical Research: Space Physics Earth and Planetary Sciences-Geophysics
CiteScore
5.30
自引率
35.70%
发文量
570
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