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基于远场参考的超低频(ULF)地震地磁数据处理——以2003年1月日本茨城县5.1级地震为例
引用本文:孙健维,钟屹,陈泓燕,何晓宇,服部克巳,韩鹏.基于远场参考的超低频(ULF)地震地磁数据处理——以2003年1月日本茨城县5.1级地震为例[J].地震地磁观测与研究,2019,40(5):48-55.
作者姓名:孙健维  钟屹  陈泓燕  何晓宇  服部克巳  韩鹏
作者单位:中国深圳 518055 南方科技大学地球与空间科学系;中国广东 518000 深圳市地震局;Chiba University, Chiba 2638522, Japan
基金项目:广东省自然科学基金(项目编号:2018A0303130010);中国地震科学试验场项目(项目编号:2019CSES0105)
摘    要:野外观测和室内试验表明,地震孕育和发生过程中可能产生电磁信号。地震电磁现象在防震减灾中具有潜在的应用价值,已成为21世纪国内外地学研究热点之一。由于地震电磁信号较弱,通常混杂于空间场源信号及人文噪音中,不易在观测数据中提取出来。以2003年1月日本茨城县5.1级地震为例,探讨远场参考在超低频(ULF)地震地磁数据处理中的应用,进而检测震前局部磁场异常。在此基础上,讨论远场参考法的优势及可能存在的不足。分析结果表明,2003年1月日本茨城县5.1级地震发生前存在局部磁场异常,验证了远场参考方法的有效性,相关成果可为地震地磁数据处理提供有益参考。

关 键 词:远场参考  地震地磁  2003年茨城县5.1级地震

Processing of ultra-low frequency (ULF) seismic and geomagnetic data based on far-field reference-a case study of the M 5.1 earthquake in Ibaraki,Japan in January 2003
Sun Jianwei,Zhong Yi,Chen Hongyan,He Xiaoyu,Hattori Katsumi,Han Peng.Processing of ultra-low frequency (ULF) seismic and geomagnetic data based on far-field reference-a case study of the M 5.1 earthquake in Ibaraki,Japan in January 2003[J].Seismological and Geomagnetic Observation and Research,2019,40(5):48-55.
Authors:Sun Jianwei  Zhong Yi  Chen Hongyan  He Xiaoyu  Hattori Katsumi  Han Peng
Institution:1.Southern University of Science and Technology, Shenzhen 518055, China;2.Shenzhen Earthquake Agency, Guangdong Province 518000, China;3.Chiba University, Chiba 2638522, Japan
Abstract:Field observations and indoor experiments have shown that electromagnetic signals may be generated during the earthquake's preparation and occurrence. Because of the potential application value in earthquake prevention and disaster mitigation, seismo-magnetic phenomena have become one of the research hotpots of geoscience at home and abroad in the 21st century. However, because the seismo-magnetic signals are usually weak, it is difficult to identify them from upper-atmosphere signals and artificial noises. In this study, we took the M 5.1 earthquake in Ibaraki, Japan in January 2003 as an example, to explore the application of remote reference in ultralow frequency (ULF) seismo-magnetic data processing, and intended to detect local magnetic anomalies before earthquakes. We further discussed the advantages and disadvantages of remote reference method. The results showed that there were local magnetic field anomalies before the M 5.1 earthquake in Ibaraki, Japan in January 2003, verifying the effectiveness of remote reference method.
Keywords:remote reference  seismo-magnetics  M 5  1 earthquake in Ibaraki  Japan in 2003
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