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国家自然科学基金(41204118)

作品数:3 被引量:2H指数:1
相关作者:王赤李传起李晖张青梅更多>>
相关机构:广西师范大学南京信息工程大学中国科学院更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划国家重点实验室开放基金更多>>
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Invariant Modulation of IMF Clock Angle on the Solar Wind Energy Input into the Magnetosphere
2015年
By use of the global PPMLR Magnetohydrodynamics(MHD) model,a serial of quasisteady-state numerical simulations were conducted to examine the modulation property of the interplanetary magnetic field clock angle θ on the solar wind energy input into the magnetosphere.All the simulations can be divided into seven groups according to different criteria of solar wind conditions.For each group,37 numerical examples are analyzed,with the clock angle varying from 0° to 360° with an interval of 10°,keeping the other solar wind parameters(such as the solar wind number density,velocity,and the magnetic field magnitude) unchanged.As expected,the solar wind energy input into the magnetosphere is modulated by the IMF clock angle.The axisymmetrical bell-shaped curve peaks at the clock angle of 180°.However,the modulation effect remains invariant with varying other solar wind conditions.The function form of such an invariant modulation is found to be sin(0/2)^(2.70) + 0.25.
HAN JinpengLI HuiTANG BinbinWANG Chi
关键词:MHDCLOCKANGLEENERGYENERGY
Plasma transport between the ionosphere and plasmasphere in response to solar wind dynamic pressure pulsation被引量:2
2013年
The plasma transport between the plasmasphere and the ionosphere in response to the interplanetary conditions is still not fully understood until now.Simultaneous observations of the plasmasphere and ionosphere from the newly developed Chinese Meridian Project provide a new opportunity for understanding the characteristic of the plasma transport and the coupling mechanism between these two regions.We investigate the response of the plasmasphere(L≈2)and ionosphere to the solar wind dynamic pressure pulse during geomagnetically quiet period of 21–27 March 2011.The response of the plasmasphere shows a significant depletion.The plasmaspheric density nearly decreases by half in response to the solar wind dynamic pressure pulse,and subsequently recovers to the original level in 1–2 d.Meanwhile,the maximum electron density of the ionospheric F2 layer(NmF2)and the total electron content(TEC)increase by 13%and 21%,respectively,and then gradually recover,which is opposite to the behavior during magnetic storms.Preliminary analysis shows that the plasmaspheric depletion may be mainly caused by the southward interplanetary magnetic field and changing dawn-dusk electric field.The plasmaspheric density variations seem to be controlled by both the IMF and ionospheric conditions.
ZHANG QingMeiWANG ChiLI HuiLI ChuanQi
关键词:等离子体层太阳风行星际磁场
太阳风动压脉冲条件下电离层与等离子体层的物质输运
2013年
行星际条件如何影响等离子体层和电离层之间的物质传输至今还是一个悬而未决的问题.我国刚建成的子午工程可以对等离子体层和电离层开展同时监测,为了解这两个区域之间等离子体的传输特性和耦合机制提供了新的机遇.我们分析了2011年3月21~27日地磁平静期间等离子体层(L≈2)与电离层物质输运对太阳风脉冲的响应,发现地磁平静时期等离子体层在太阳风动压脉冲作用下出现削减.在太阳风动压脉冲作用下,等离子体层密度减少至动压脉冲前的一半,而后经过1~2d逐渐恢复至初始水平;同时,电离层F2层最大电子密度(NmF2)和电离层总电子密度含量(TEC)增加13%和21%,而后恢复至初始值,这与磁暴期间的表现是相反的.初步的分析表明:在该事件中,太阳风动压脉冲之后的行星际南向磁场和变化较大的晨昏电场可能是导致等离子体层密度减少的主要原因,变化的行星际条件和电离层共同控制着等离子体层的密度变化.
张青梅王赤李晖李传起
关键词:太阳风动压电离层等离子体层
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