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利用锥模型反演CME三维参数
引用本文:王子思翰,罗冰显,王晶晶,孙晓婧,刘四清,龚建村.利用锥模型反演CME三维参数[J].空间科学学报,2021,41(4):525-536.
作者姓名:王子思翰  罗冰显  王晶晶  孙晓婧  刘四清  龚建村
作者单位:1. 中国科学院国家空间科学中心 北京 100190;
基金项目:中国科学院空间科学战略性先导科技专项空间科学预先研究项目(XDA15017200)和北京市科技重大专项(Z181100002918004)共同资助
摘    要:CME会影响近地空间环境,带来地磁扰动,预报其能否到达地球及何时到达地球具有重要的应用意义.受观测能力限制,通常根据CME在太阳附近的日冕仪投影观测信息,利用锥模型拟合得到三维参数,进而以经验预报或代入行星际传播过程模拟,预报CME的对地有效性.在拟合过程中,可以采取不同时刻日冕仪观测数据作为输入,也可以选择是否限定C...

关 键 词:CME  锥模型  三维参数  拟合
收稿时间:2020-01-10

CME 3D-parameters Inversion by Cone Model
WANG Zisihan,LUO Bingxian,WANG Jingjing,SUN Xiaojing,LIU Siqing,GONG Jiancun.CME 3D-parameters Inversion by Cone Model[J].Chinese Journal of Space Science,2021,41(4):525-536.
Authors:WANG Zisihan  LUO Bingxian  WANG Jingjing  SUN Xiaojing  LIU Siqing  GONG Jiancun
Institution:1. National Space Science Center, Chinese Academy of Sciences, Beijing 100190;2. University of Chinese Academy of Sciences, Beijing 100049;3. Key Laboratory of Science and Technology on Environmental Space Situation Awareness, Chinese Academy of Sciences, Beijing 100190
Abstract:CME can affect the near-earth space environment and cause a geomagnetic disturbance. Therefore, it is of great application significance to predict whether and when it can reach the earth. Due to the limitation of observation ability, 3D-parameters are usually obtained by using cone model fitting according to the coronagraph projection observation information of CME near the sun, and then the effectiveness on earth of CME can be predicted by empirical prediction or interplanetary propagation process simulation. In the process of fitting, coronagraph observation data at different times can be taken as input, or CME can be restricted to occur near flares for fitting, which may result in completely different CME 3D-parameters, thus seriously affecting CME propagation prediction results. This paper selects a full halo CME event and a partial halo CME event, analyzes the changes of CME 3D parameter fitting results caused by different data input and fitting methods, and evaluates their impact on CME propagation prediction. The study found that the 3D-parameters of CME obtained by different data sources and fitting methods were significantly different, which affected the prediction of the ground validity of CME. In the future, it is necessary to evaluate the input data adopted and the fitting method, so as to predict the effects on earth of CME more accurately. 
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