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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Seasonal and hemispheric variations of the total auroral precipitation energy flux from TIMED/GUVI
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Seasonal and hemispheric variations of the total auroral precipitation energy flux from TIMED/GUVI

机译:季节性和半球总数的变化从定时/ GUVI极光降水能量通量

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The auroral hemispheric power (HP) has been calculated from the averaged energy flux derived from Far-ultraviolet emission observations made by the global ultraviolet imager (GUVI) instrument on board the Thermosphere Ionosphere Mesosphere Energetics and Dynamics (TIMED) satellite during 2002-2007. This HP was used to study how variations in seasonal and hemispheric asymmetries changed with changing geomagnetic activity. Our results showed that there were persistent seasonal and hemispheric differences in quiet conditions. There were HP differences of about 1-3 GW between the summer and winter seasons in each hemisphere and also between the two hemispheres during each solstice period for low geomagnetic activity (Kp≤3). The summer-winter asymmetry was 4-35 when HP was low. These summer-winter differences became negligible when geomagnetic activity was moderate to active. Similarly, there were also HP differences of about 2 GW between local summers of the two hemispheres during geomagnetically quiet conditions (Kp < 3) but not during higher Kp conditions. The hemispheric asymmetries between the two summer solstices were about 10-20 during quiet conditions, whereas there was no apparent hemispheric asymmetry between the two winter solstices under all Kp 1-5 conditions. Solar illumination effects were probably the primary cause of the seasonal and hemispheric variations of the auroral hemispheric power for these geomagnetically quiet conditions. During moderate and active conditions the conductivities were driven more by the production of ionization due to precipitation, so the precipitation was more symmetric.
机译:极光半球权力(HP)计算的平均能量通量从远紫外辐射观测由全球紫外成像仪(GUVI)仪器在热大气层电离层中间层能量学和动力学(时间)卫星在2002 - 2007。研究季节性和半球的变化不对称改变了地磁变化活动。持续的季节性和半球的差异在安静的环境下。关于1 - 3 GW在夏季和冬季之间每个半球季节之间两个半球每个夏至期间低地磁活动(Kp≤3)。当惠普summer-winter不对称是4% -35%低。微不足道的地磁活动时是温和的活跃。之间的差异2 GW当地夏季在眼睛的两个半球安静的条件(Kp < 3)但不是在更高Kp的条件。两个夏天二至点之间10% - -20%在安静的环境下,而在那里之间没有明显的半球不对称在所有Kp 1 - 5条件下两个冬至日有关。可能是太阳能照明效果季节性和半球的主要原因极光半球力量的变化这些眼睛安静的条件。温和的和活跃的条件导率驱动电离的生产吗由于降水,降水更多的对称。

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