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Importance of capturing heliospheric variability for studies of thermospheric vertical winds

机译:捕捉日球变化的重要性为研究thermospheric垂直风

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Using the Global Ionosphere Thermosphere Model with observed real-time heliospheric input data, the magnitude and variability of thermospheric neutral vertical winds are investigated. In order to determine the role of variability in the Interplanetary Magnetic Field (IMF) and solar wind density on the neutral wind variability, the heliospheric input data are smoothed. The effects of smoothing the IMF and solar wind and density on the vertical winds are simulated for the cases of no smoothing, 5-minute, and 12-minute smoothing. Various vertical wind acceleration terms, such as the nonhydrostatic acceleration, are quantified. Polar stereographic projections of the variabilities of vertical wind and ion flows are compared to highlight existing correlations. Overall, the smoother, that is, the less variable the IMF and solar wind parameters are, the weaker are the magnitude and the variability of the thermospheric vertical winds. Weaker IMF variability leads to smaller variability in ion flows, which in turn negatively impacts the variability and the magnitude of Joule heating. Small-scale temporal variation of the vertical wind acceleration, and thus the variability of the vertical wind, is dominated by the nonhydrostatic term that is controlled primarily by the temporal variation of the Joule heating, which in turn is related to ion flow variations that are shaped by the IMF in the high-latitude thermosphere. Wavelet analysis of the vertical wind data shows that gravity waves of ?5 and ?10-minute periods are more prominent when the model is run with high-resolution real-time IMF and solar wind data. Better capturing of the temporal variation of the IMF and solar wind parameters is crucial for modeling the variability and magnitude of thermospheric vertical winds.
机译:使用全球电离层热电离层模型实时观察日球输入数据,thermospheric的大小和变化中性的垂直风了。确定角色的变化行星际磁场(IMF)和太阳能风能密度中性风的变化,日球输入数据平滑。平滑的国际货币基金组织和太阳风和密度垂直风的模拟为例不平滑,5分钟,12分钟平滑。条款,如nonhydrostatic加速度,是量化。垂直风的的可变性和离子流比较强调现有的的相互关系。国际货币基金组织和太阳风参数变量,较弱的大小和吗thermospheric垂直风的变化。较弱的国际货币基金组织的变化会导致小离子流动变化,反过来可变性和负面影响级的焦耳加热。垂直风加速度的变化,因此,垂直风的变化,这是由nonhydrostatic术语主要由时间的变化控制的电阻加热,进而有关离子流的变化是由国际货币基金组织高纬度地区的热大气层。重力垂直风的数据显示一波又一波的5 ? 10分钟的时间更多著名的模型运行时高分辨率实时IMF和太阳风数据。国际货币基金组织和太阳风参数是至关重要的建模的可变性和大小thermospheric垂直风。

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