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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Global ionospheric and thermospheric response to the 5 April 2010 geomagnetic storm: An integrated data-model investigation
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Global ionospheric and thermospheric response to the 5 April 2010 geomagnetic storm: An integrated data-model investigation

机译:全球电离层和thermospheric回应2010年4月5日地磁风暴:一个集成的数据模型的调查

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摘要

We present a case study of the 5 April 2010 geomagnetic storm using observations and numerical simulations. The event was driven by a fast-moving coronal mass ejection and despite being a moderate storm with a minimum Dst near °50 nT, the event exhibited elevated thermospheric density and surges of traveling atmospheric disturbances (TADs) more typically seen during major storms. The Thermosphere-Ionosphere-Mesosphere-Electrodynamics General Circulation Model (TIMEGCM) was used to assess how these features were generated and developed during the storm. The model simulations gave rise to TADs that were highly nonuniform with strong latitude and longitude/local time dependence. The TAD phase speeds ranged from 640m/s to 780m/s at 400 km and were ~5% lower at 300 km and approximately 10–15% lower at 200 km. In the lower thermosphere around 100 km, the TAD signatures were nearly unrecognizable due to much stronger influence of upward propagating atmospheric tides. The thermosphere simulation results were compared to observations available from the Gravity Field and Steady-State Ocean Circulation Explorer (GOCE), CHAllenging Minisatellite Payload (CHAMP) and Gravity Recovery and Climate Experiment (GRACE) satellites. Comparison with GOCE data shows that the TIMEGCM reproduced the cross-track winds over the polar region very well. The model-data comparison also revealed some differences, specifically, the simulations underestimated neutral mass density in the upper thermosphere above ~300 kmand overestimated the stormrecovery tome by 6 h. These discrepancies indicate that some heating or circulation dynamics and potentially cooling processes are not fully represented in the simulations, and also that updates to some parameterization schemes in the TIMEGCM are warranted.
机译:我们提出一个案例研究的2010年4月5日使用观察和地磁风暴数值模拟。快速移动的日冕物质抛射,尽管作为一个温和的风暴,最低Dst附近°50元,事件表现出升高thermospheric密度和激增的旅行大气扰动(TADs)更为典型在大风暴。

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