首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Ampère force exerted by geomagnetic Sq currents and thermospheric pressure difference
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Ampère force exerted by geomagnetic Sq currents and thermospheric pressure difference

机译:通过地磁平方电流安培力和thermospheric压差

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The Ampère force exerted by meridional Sq currents was estimated, and its relationship with a neutral pressure difference was examined. It was found that the annual Ampère force correlates very well with the difference between its maximum and minimum pressures integrated above 120 km for solar activity variation. Furthermore, these two values were almost the same around the Sq current vortex during the equinox. This means that the pressure difference balances with Ampère force, and thus, a neutral wind blows roughly in the opposite direction of the pressure gradient. As a result, the intensity of the resultant ionospheric dynamo current is controlled by the pressure difference, and thus, it is possible to infer the pressure difference fromthe geomagnetic field only at least the annualmean in equinox. At Kakioka, there was seasonal variation such that the pressure difference in the local summer and winter was smaller and larger than the Ampère force, respectively. This characteristic is likely due to the contribution of the interhemispheric field-aligned currents driven by the ionospheric dynamo to the Sq field.
机译:子午平方电流安培力据估计,及其关系中性的压差是检查。发现,一年一度的安培力有关很好地与它的最大的区别和最小压力综合120公里以上太阳活动变化。在平方值几乎相同的电流在equinox漩涡。用安培力压差平衡,因此,中性风的左右相反方向的压力梯度。因此,合成的强度电离层发电机电流的控制压差,因此,它是可能的推断出从地磁压差只有至少annualmean equinox。Kakioka,季节性变化等当地的夏季和压差冬天又小又大于安培力,分别。可能的贡献两半球间的field-aligned电流驱动电离层发电机的平方。

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