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Energy budget of the magnetosphere-ionosphere system in solar Cycle 23 被引量:3

Energy budget of the magnetosphere-ionosphere system in solar Cycle 23
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摘要 The energy budget of the magnetosphere-ionosphere (MI) system during 1998-2008 was examined by using Akasofu's epsilon function. The results showed that 1) the yearly average rate of solar wind energy input into the MI system was 4.51 GGJ (GGJ=1018 J), while the yearly average total dissipation was 4.30 GGJ; 2) the energy partitioning in the ring current and polar region was 56%:44%; 3) the energy input and dissipation processes continuously proceeded both in storm-substorm events and less disturbed intervals, suggesting the significant contribution of slow but long-lasting energy process during the less disturbance periods to the total energy budget. In addition, we found in this study an interesting phenomenon "self-adjustment ability" of the MI system which behaves just like a water reservoir. During solar active years, the input energy is more than the dissipated energy, implying that a portion of the input energy is not immediately released, but is stored in the magnetosphere. On the other hand, during less active years, the dissipated energy is more than the input energy, implying that the previously stored energy makes up for the energy input shortage in this period.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第5期1184-1188,共5页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China (Grant Nos. 40931056, 40874089) the National Basic Research Program of China ("973" Project) (Grant Nos. 2008CB425704)
关键词 solar wind-magnetosphere coupling coupling function MAGNETOTAIL energy budget 太阳活动周期 能量输入 信息系统 电离层 磁层 预算 平均增长率 输入能量
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