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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Field-aligned neutral wind bias correction scheme for global ionospheric modeling at midlatitudes by assimilating FORMOSAT-3/COSMIC h_mF_2 data under geomagnetically quiet conditions
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Field-aligned neutral wind bias correction scheme for global ionospheric modeling at midlatitudes by assimilating FORMOSAT-3/COSMIC h_mF_2 data under geomagnetically quiet conditions

机译:通过在地磁安静条件下吸收FORMOSAT-3 / COSMIC h_mF_2数据,对中纬度全球电离层建模的场对准中性风偏校正方案

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摘要

This study demonstrates the usage of a data assimilation procedure, which ingests the FORMOSAT-3/COSMIC (F3/C) hmF2 observations to correct the model wind biases to enhance the capability of the new global Ionosphere Plasmasphere Electrodynamics (IPE) model under geomagnetically quiet conditions. The IPE model is built upon the field line interhemispheric plasma model with a realistic geomagnetic field model and empirical model drivers. The h_mF_2 observed by the F3/C radio occultation technique is utilized to adjust global thermospheric field-aligned neutral winds (i.e., a component of the thermospheric neutral wind parallel to the magnetic field) at midlatitudes according to a linear relationship between time differentials of the field-aligned wind and h_mF_2. The adjusted winds are further applied to drive the IPE model. The comparison of the modeled electron density with the observations of F3/C and ground-based GPS receivers at the 2012 March equinox suggests that the modeled electron density can be significantly improved in the midlatitude regions of the Southern Hemisphere, if the wind correction scheme is applied. Moreover, the F3/C observation, the IPE model, and the wind bias correction scheme are applied to study the 2012 Southern Hemisphere Midlatitude Summer Nighttime Anomaly (southern MSNA)/Weddell Sea Anomaly (WSA) event at December solstice for examining the role of the neutral winds in controlling the longitudinal variation of the southern MSNA/WSA behavior. With the help of the wind bias correction scheme, the IPE model better tracks the F3/C-observed eastward movement of the southern MSNA/WSA feature. The apparent eastward movement of the southern MSNA/WSA features in the local time coordinate is primarily caused by the longitudinal variation in the declination angle of the geomagnetic field that controls the field-aligned projection of both geographic meridional and zonal components of the neutral wind. Both the IPE simulations and the F3/C observations show the significant longitudinal variation in the speed of the eastward movement of the southern MSNA/WSA.
机译:这项研究演示了数据同化程序的用法,该程序吸收了FORMOSAT-3 / COSMIC(F3 / C)hmF2观测值,以校正模型风偏,以增强新的全球电离层等离子体电动力学(IPE)模型在地磁静默下的能力条件。 IPE模型建立在场线半球等离子模型的基础上,具有现实的地磁场模型和经验模型驱动器。通过F3 / C无线电掩星技术观察到的h_mF_2被用于根据中纬度时间差之间的线性关系来调整中纬度的整体热球场对准的中性风(即,与大气平行的热球中性风的分量)。场对准的风和h_mF_2。调整后的风将进一步应用于驱动IPE模型。将模拟的电子密度与2012年3月春分点的F3 / C和地面GPS接收器进行的比较表明,如果采用风校正方案,则可以在南半球中纬度地区显着改善模拟的电子密度。应用。此外,F3 / C观测,IPE模型和风偏校正方案被用于研究12月至2012年南半球中纬度夏季夜间异常(MSNA南部)/ Weddell海洋异常(WSA)事件,以检查中性风控制着南部MSNA / WSA行为的纵向变化。借助风偏校正方案,IPE模型可以更好地跟踪F3 / C观测到的南部MSNA / WSA特征的东移。 MSNA / WSA南部特征在当地时间坐标中的明显东移主要是由地磁场偏角的纵向变化引起的,该偏角控制中性风的地理子午和纬向分量的场对准投影。 IPE模拟和F3 / C观测都表明,南部MSNA / WSA的东移速度有明显的纵向变化。

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