首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Effect of intrinsic magnetic field decrease on the lowto middle-latitude upper atmosphere dynamics simulated by GAIA
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Effect of intrinsic magnetic field decrease on the lowto middle-latitude upper atmosphere dynamics simulated by GAIA

机译:固有磁场的影响在减少lowto中纬度上层大气动力学模拟的盖亚

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摘要

The effects of decreasing the intrinsic magnetic field on the upper atmospheric dynamics at low to middle latitudes are investigated using the Ground-to-topside model of Atmosphere and Ionosphere for Aeronomy (GAIA). GAIA incorporates a meteorological reanalysis data set at low altitudes (<30 km), which enables us to investigate the atmospheric response to various waves under dynamic and chemical interactions with the ionosphere. In this simulation experiment, we reduced the magnetic field strength to as low as 10% of the current value. The averaged neutral velocity, density, and temperature at low to middle latitudes at 300 km altitude show little change with the magnetic field variation, while the dynamo field, current density, and the ionospheric conductivities are modified significantly. The wind velocity and tidal wave amplitude in the thermosphere remain large owing to the small constraint on plasma motion for a small field. On the other hand, the superrotation feature at the dip equator is weakened by 20% for a 10% magnetic field because the increase in ion drag for the small magnetic field prevents the superrotation.
机译:减少固有磁场的影响在上层大气动力低中纬度地区使用的调查Ground-to-topside的氛围和模式电离层对高层大气物理学(盖亚)。低气象再分析数据集海拔(< 30公里),它使我们能够研究大气响应不同波在动态和化学相互作用电离层。实验中,我们减少了磁场强度低至10%的当前值。中性平均速度、密度和温度低,中纬度地区300公里高度显示与磁场变化不大场变化,而发电机领域,电流密度,和电离层导率大幅修改。潮汐波振幅的热大气层仍然存在由于大小限制等离子体运动的一个小领域。在磁赤道superrotation特性削弱了磁场,因为10%的20%小磁离子的增加阻力防止superrotation领域。

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