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电离层-均匀地球模型中地表水平电偶极子激发的电磁场 被引量:11
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作者 徐志锋 吴小平 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2010年第10期2497-2506,共10页
本文在电离层-均匀地球模型中使用Debye势方法,在电磁场一般性边界条件下导出了地表水平电偶极子源在地球介质中激发的电磁场的表达式.对球Bessel函数使用指数函数近似,并采用加速算法,计算了地表及地下的电磁场.其正确性得到理论计算... 本文在电离层-均匀地球模型中使用Debye势方法,在电磁场一般性边界条件下导出了地表水平电偶极子源在地球介质中激发的电磁场的表达式.对球Bessel函数使用指数函数近似,并采用加速算法,计算了地表及地下的电磁场.其正确性得到理论计算和实际观测数据的多方面支持.结果表明,在收发距离大于1000 km,电磁场强度很稳定,几乎没有衰减的迹象;电磁场受电离层的影响很大,由于电离层高度升高或电导率减小引起的电磁场幅度的减少可以达到50%,但是由电场和磁场得到的视电阻率变化却很小. 展开更多
关键词 超低频/极低频电磁波 水平电偶极子 地球-电离层系统
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Numerical study on the response of the Earth's magnetosphere-ionosphere system to a super solar storm 被引量:3
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作者 WANGChi LI Hui +2 位作者 GUO XiaoCheng DING Kai HUANG ZhaoHui 《Science China Earth Sciences》 SCIE EI CAS 2012年第6期1037-1042,共6页
With the approaching of the 24th solar cycle peak year (2012-2014), the impacts of super solar storms on the geospace envi- ronment have drawn attentions. Based on the geomagnetic field observations during Carringto... With the approaching of the 24th solar cycle peak year (2012-2014), the impacts of super solar storms on the geospace envi- ronment have drawn attentions. Based on the geomagnetic field observations during Carrington event in 1859, we estimate the interplanetary solar wind conditions at that time, and investigate the response of the magnetosphere-ionosphere system to this extreme solar wind conditions using global 3D MHD simulations. The main findings include: l) The day-side magnetopause and bow shock are compressed to 4.3 and 6.0 Re (Earth radius), and their flanks are also strongly compressed. The magneto- pause shifts inside the geosynchronous orbit, exposing geosynchronous satellites in the solar wind in the magnetosheath. 2) During the storm, the region-1 current increases by about 60 times, and the cross polar potential drop increases by about 80 times; the reconnection voltage is about 5 to 6 times larger than the average storms, which means a larger amount of the solar wind energy enters the magnetosphere, resulting in strong space weather phenomena. 展开更多
关键词 space weather solar storm magnetosphere-ionosphere system numerical simulation
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