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不同上边界条件下的极区电离层数值模拟
引用本文:刘顺林,张北辰,刘瑞源,徐中华.不同上边界条件下的极区电离层数值模拟[J].空间科学学报,2005,25(6):504-509.
作者姓名:刘顺林  张北辰  刘瑞源  徐中华
作者单位:1. 中国极地研究中心,上海,200136;武汉大学电子信息学院
2. 中国极地研究中心,上海,200136
基金项目:国家自然科学基金项目(40474056,40474057)和科技部社会公益研究专项基金项目(2003DIB4J135)共同资助
摘    要:利用一维自洽的极区电离层模型,研究了沿磁力线方向不同电离层一磁层耦合条件下极区电离层的响应.此模型在110—610km的电离层空间区域内,综合求解描述极区电离层的连续性方程、动量方程和能量方程,以得到电离层数值解.研究发现,上边界条件在200km以上的高度能显著地影响电离层参量的形态.较高的O^+上行速度对应较低的F层峰值和较高的电子温度.不同边界O^+上行速度对应的温度高度剖面完全不同.200km以上电子温度高度剖面不但由来自磁层的热流通量所控制,同时还受到场向O^+速度的影响.对利用电离层模型研究电离层内部物理过程提出了建议.

关 键 词:极区电离层  电离层-磁层耦合  数值模拟
文章编号:0254-6124/2005/25(6)-504-06
收稿时间:2004-12-08
修稿时间:2005-05-25

The Influence of Upper Boundary Conditions on the Polar Ionosphere
LIU Shunlin,ZHANG Beichen,LIU Ruiyuan,XU Zhonghua.The Influence of Upper Boundary Conditions on the Polar Ionosphere[J].Chinese Journal of Space Science,2005,25(6):504-509.
Authors:LIU Shunlin  ZHANG Beichen  LIU Ruiyuan  XU Zhonghua
Institution:1. Polar Research Institute of China, Shanghai 200136; 2.Electronic Information School, Wuhan University
Abstract:A one-dimensional high-latitude ionospheric model, in which the continuity, momentum and energy equations are solved self-consistently in the altitude range between 110 and 610 km, is used to study the ionospheric responses to different upper boundary conditions. It is found that upper boundary conditions may influence significantly profiles of ionospheric quantities at higher altitudes. A larger upward O~+ velocity at the upper boundary results in lower h_mF_2 and F region electron densities, and consequently higher electron temperatures. The difference in h_mF_2 between an upper boundary velocity of 0.0 m/s and 200 m/s reaches about 76 km. The altitude profiles of temperatures are quite different from each other corresponding to different upward ion velocities and heat fluxes from the magnetosphere. The Coulomb collisions between electrons and ions play an important role in shaping the electron temperature profiles at altitudes higher than the h_mF_2. The simulated electron temperature height profiles are similar to the measurements made in earlier studies. The altitude profile of electron temperature above 200 km is influenced by both downward heat fluxes and field-aligned O~+ velocities, while the ion temperature and the electron density have their responses at altitudes higher than 250 km. Proposals are given while specifying the upper boundary conditions in the simulation of the high-latitude ionosphere.
Keywords:Polar ionosphere  Ionosphere-magnetosphere coupling  Numerical simulation
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