SEISMOLOGY AND GEOLOGY ›› 2017, Vol. 39 ›› Issue (3): 517-535.DOI: 10.3969/j.issn.0253-4967.2017.03.006
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LI Jian-kai, TANG Ji
Received:
2016-04-20
Revised:
2016-11-23
Online:
2017-06-20
Published:
2017-07-20
李建凯, 汤吉
通讯作者:
汤吉,研究员,E-mail:tangji@ies.ac.c
作者简介:
李建凯,男,1989年生,2013年于中国地质大学(武汉)获地球物理学专业学士学位,2016年于中国地震局地质研究所获硕士学位,研究方向为大地电磁数据处理方法研究及应用,电话:13145320518,E-mail:jkli2015cea@gmail.com。
基金资助:
CLC Number:
LI Jian-kai, TANG Ji. PRINCIPAL COMPONENT ANALYSIS AND LOCAL CORRELA-TION TRACKING AS TOOLS FOR REVEALING AND ANALYZING SEISMO-ELECTROMAGNETIC SIGNAL OF EARTHQAUKE[J]. SEISMOLOGY AND GEOLOGY, 2017, 39(3): 517-535.
李建凯, 汤吉. 主成分分析法和局部互相关追踪法在地震电磁信号提取与分析中的应用[J]. 地震地质, 2017, 39(3): 517-535.
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URL: https://www.dzdz.ac.cn/EN/10.3969/j.issn.0253-4967.2017.03.006
陈伯舫. 2003. 日本鹿屋台地磁转换函数的变化[J]. 华南地震, 23(1):8-12. CHEN Bo-fang. 2003. Time changes in geomagnetic transfer function at the Kanoya Magnetic Observatory[J]. South China Journal of Seismology, 23(1):8-12(in Chinese). 丁鉴海. 1994. 地震地磁学[M]. 北京:地震出版社. DING Jian-hai. 1994. Seismomagnetism[M]. Seismological Press, Beijing(in Chinese). 丁鉴海, 申旭辉, 潘威炎, 等. 2006. 地震电磁前兆研究进展[J]. 电波科学学报, 21(5):791-801. DING Jian-hai, SHEN Xu-hui, PAN Wei-yan, et al. 2006. Seismo-electromagnetism precursor research progress[J]. Chinese Journal of Radio Science, 21(5):791-801(in Chinese). 丁鉴海, 余素荣, 肖武军. 2003. 地磁 "低点位移"现象与昆仑山口西8.1级地震[J]. 西北地震学报, 25(1):16-21. DING Jian-hai, YU Su-rong, XIAO Wu-jun. 2003. Geomagnetic low-point displacement phenomena and west to Kunlun mountain pass MS8.1 earthquake[J]. Northwestern Seismological Journal, 25(1):16-21(in Chinese). 国家地震局科技监测司. 1989. 震前电磁波观测与实验研究文集[M]. 北京:地震出版社. Department of Scientific Programming and Earthquake Monitoring, State Seismological Bureau. 1989. Collected Works of Pre-sesimic Electromagnetic Observation and Experimental Research[M]. Seismological Press, Beijing(in Chinese). 郭自强, 郭子祺, 钱书清, 等. 1999. 岩石破裂中的电声效应[J]. 地球物理学报, 42(1):74-83. GUO Zi-qiang, GUO Zi-qi, QIAN Shu-qing, et al. 1999. Electro-acoustic effect in rock fracturing[J]. Chinese Journal of Geophysics, 42(1):74-83(in Chinese). 韩冰, 汤吉, 赵国泽, 等. 2015. 小波极大值方法及其在电磁异常信号提取中的应用[J]. 地震地质, 37(3):765-779. doi:10.3969/j.issn.0253-4967.2015.03.008. HAN Bing, TANG Ji, ZHAO Guo-ze, et al. 2015. Wavelet maxima method in identifying singularities in electromagnetic signal[J]. Seismology and Geology, 37(3):765-779(in Chinese). 韩鹏, 黄清华, 修济刚. 2009. 地磁日变与地震活动关系的主成分分析:以日本岩手县北部6.1级地震为例[J]. 地球物理学报, 52(6):1556-1563. HAN Peng, HUANG Qing-hua, XIU Ji-gang. 2009. Principal component analysis of geomagnetic diurnal variation associated with earthquakes:Case study of the M6.1 Iwate-ken Nairiku Hokubu earthquake[J]. Chinese Journal of Geophysics, 52(6):1556-1563(in Chinese). 郝锦绮, 钱书清, 高金田, 等. 2003. 岩石破裂过程中的超低频电磁异常[J]. 地震学报, 25(1):102-111. HAO Jin-qi, QIAN Shu-qing, GAO Jin-tian, et al. 2003. ULF electric and magnetic anomalies accompanying the cracking of rock sample[J]. Acta Seismologica Sinica, 25(1):102-111(in Chinese). 黄清华. 2005. 地震电磁观测研究简述[J]. 国际地震动态, (11):2-5. HUANG Qing-hua. 2005. The state-of-the-art in seismic electromagnetic observation[J]. Recent Developments in World Seismology, (11):2-5(in Chinese). 李琪, 林云芳, 曾小苹. 2006. 应用小波变换提取张北地震的震磁效应[J]. 地球物理学报, 49(3):855-863. LI Qi, LIN Yun-fang, ZENG Xiao-ping. 2006. Wavelet analysis as a tool for revealing geomagnetic precursors of the Zhangbei earthquake[J]. Chinese Journal of Geophysics, 49(3):855-863(in Chinese). 林云芳, 曾小苹, 续春荣, 等. 1999. 地磁方法在地震预报中的应用[J]. 地震地磁观测与研究, 20(6):35-44. LIN Yun-fang, ZENG Xiao-ping, XU Chun-rong, et al. 1999. Application of geomagnetic methods to earthquake prediction[J]. Seismological and Geomagnetic Observation and Research, 20(6):35-44(in Chinese). 吕桂芳. 1997. 1988年澜沧-耿马地震前地磁异常变化特征[J]. 地震地磁观测与研究, 2:53-59. LÜ Gui-fang. 1997. Variation feature of geomagnetic anomalies before Lancang-Gengma earthquake in 1988[J]. Seismological and Geomagnetic Obervation and Research, 2:53-59(in Chinese). 潘怀文. 1998. 中国地震电磁观测系统发展展望[J]. 地震, (s1):115-119. PAN Huai-wen. 1998. Development and prospects of the earthquake electromagnetic observation[J]. Earthquake, (s1):115-119(in Chinese). 汤吉, 詹艳, 王立凤, 等. 2008. 5月12日汶川8.0级地震强余震观测的电磁同震效应[J]. 地震地质, 30(3):739-745. doi:10.3969/j.issn.0253-4967.2008.03.012. TANG Ji, ZHAN Yan, WANG Li-feng, et al. 2008. Coseismic signal associated with aftershock of the MS8.0 Wenchuan earthquake[J]. Seismology and Geology, 30(3):739-745(in Chinese). 汤吉, 詹艳, 王立凤, 等. 2010. 汶川地震强余震的电磁同震效应[J]. 地球物理学报, 53(3):526-534. TANG Ji, ZHAN Yan, WANG Li-feng, et al. 2010. Electromagnetic coseismic effect associated with aftershock of Wenchuan Ms8.0 earthquake[J]. Chinese Journal of Geophysics, 53(3):526-534(in Chinese). 汤吉, 赵国泽, 陈小斌, 等. 2007. 地震电磁卫星载荷及现状[J]. 地球物理学进展, 22(3):679-686. TANG Ji, ZHAO Guo-ze, CHEN Xiao-bin, et al. 2007. Introduction of payload for electro-magnetic emissions on seismic satellite[J]. Progress in Geophysics, 22(3):679-686(in Chinese). 孙若昧, 卢振业. 1985. 唐山地震前后地磁Z分量功率谱异常性质的探讨[J]. 中国地震, 4:50-54. SUN Ruo-mei, LU Zhen-ye. 1985. A discussion on abnormal property of power spectrum for geomagnetic Z component before and after Tangshan earthquake[J]. Earthquake Research in China, 4:50-54(in Chinese). 孙若昧, 郑斯华, 马林, 等. 1986. 阻尼最小二乘法联合测定震源位置和介质速度参数[J]. 地震, 4:31-39. SUN Ruo-mei, ZHENG Si-hua, MA Lin, et al. 1986. Joint determinations of hypocenters and medium velocities with damped least square method[J]. Earthquake, 4:31-39(in Chinese). 王西文, 刘全新, 李幼铭, 等. 2000. 地震信号瞬时特征在小波域分频提取的方法和应用[J]. 石油地球物理勘探, 35(4):452-460. WANG Xi-wen, LIU Quan-xin, LI You-ming, et al. 2000. One method for frequency-division obtainment of instantaneous characteristics of seismic signals in wavelet domain, and its application[J]. Oil Geophysical Prospecting, 35(4):452-460(in Chinese). 吴小平. 2003. 利用地磁低点位移预测发震时间[J]. 四川地震, 1:33-36. WU Xiao-ping. 2003. Predicting the happen times of earthquake using movement of geomagnetism low point[J]. Earthquake Research in Sichuan, 1:33-36(in Chinese). 吴增. 1974. 地磁日变化与谐波振幅比的关系[J]. 地震战线, 15(2):17-21. WU Zeng. 1974. The relation between geomagnetic daily variation and harmonic wave amplitude ratio[J]. Earthquake Front, 15(2):17-21(in Chinese). 曾小苹, 林云芳, 续春荣, 等. 1992. 1991年3月26日5.8级地震的磁效应初探[J]. 地震地磁观测与研究, 13(2):44-52. ZENG Xiao-ping, LIN Yun-fang, XU Chun-rong, et al. 1992. Seismomagnetic effect generated by the March 26, 1991, MS5.8 Datong, Shanxi earthquake[J]. Seismological and Geomagnetic Observation and Research, 13(2):44-52(in Chinese). 赵国泽, 陈小斌, 蔡军涛. 2007. 电磁卫星和地震预测[J]. 地球物理学进展, 22(3):667-673. ZHAO Guo-ze, CHEN Xiao-bin, CAI Jun-tao. 2007. Electromagnetic observation by satellite and earthquake prediction[J]. Progress in Geophysics, 22(3):667-673(in Chinese). 赵国泽, 汤吉, 邓前辉, 等. 2003. 人工源超低频电磁波技术及在首都圈地区的测量研究[J]. 地学前缘, 10(S1):248-257. ZHAO Guo-ze, TANG Ji, DENG Qian-hui, et al. 2003. Artificial SLF method and the experimental study for earthquake monitoring in Beijing area[J]. Earth Science Frontiers, 10(S1):248-257(in Chinese). 赵国泽, 王立凤, 汤吉, 等. 2010. 地震监测人工源极低频电磁技术(CSELF)新试验[J]. 地球物理学报, 53(3):479-486. ZHAO Guo-ze, WANG Li-feng, TANG Ji, et al. 2010. New experiments of CSEM electromagnetic method for earthquake monitoring[J]. Chinese Journal of Geophysics, 53(3):479-486(in Chinese). 卓贤军, 陆建勋, 赵国泽, 等. 2011. 极低频探地(WEM)工程[J]. 中国工程科学, 13(9):42-50. ZHUO Xian-jun, LU Jian-xun, ZHAO Guo-ze, et al. 2011. The extremely low frequency engineering project using WEM for underground exploration[J]. Engineering Science, 13(9):42-50(in Chinese). Alperovich L, Zheludev V. 1998. Wavelet transform as a tool for detection of geomagnetic precursors of earthquakes[J]. Physics and Chemistry of the Earth, 23(9-10):965-967. Chavez O, Millan-Almaraz J R, Pérez-Enríquez R, et al. 2010. Detection of ULF geomagnetic signals associated with seismic events in Central Mexico using discrete wavelet transform[J]. Natural Hazards and Earth System Science, 10(12):2557-2564. Fraser-Smith A C, Bernardi A, McGill P R, et al. 1990. Low-frequency magnetic field measurements near the epicenter of theMs7.1 Loma Prieta earthquake[J]. Geophysical Research Letters, 17(9):1465-1468. Gao Y X, Chen X F, Hu H S, et al. 2014. Induced electromagnetic field by seismic waves in Earth's magnetic field[J]. Journal of Geophysical Research:Solid Earth(1978-2012), 119(7):5651-5685. Gokhberg M B, Morgounov V A, Yoshino T, et al. 1982. Experimental measurement of electromagnetic emissions possibly related to earthquakes in Japan[J]. Journal of Geophysical Research:Solid Earth(1978-2012), 87(B9):7824-7828. Gotoh K, Akinaga Y, Hayakawa M, et al. 2002. Principal component analysis of ULF geomagnetic data for Izu islands earthquakes in July 2000[J]. Journal of Atmospheric Electricity, 22(1):1-12. Hattori K. 2004. ULF geomagnetic changes associated with large earthquakes[J]. Terrestrial, Atmospheric and Oceanic Sciences, 15(3):329-360. Hattori K, Han P, Yoshino C, et al. 2013. Investigation of ULF seismo-magnetic phenomena in Kanto, Japan during 2000-2010:Case studies and statistical studies[J]. Surveys in Geophysics, 34(3):293-316. Hattori K, Serita A, Gotoh K, et al. 2004a. ULF geomagnetic anomaly associated with 2000 Izu Islands earthquake swarm, Japan[J]. Physics and Chemistry of the Earth, Parts A/B/C, 29(4-9):425-435. Hattori K, Takahashi I, Yoshino C, et al. 2004b. ULF geomagnetic field measurements in Japan and some recent results associated with Iwateken Nairiku Hokubu earthquake in 1998[J]. Physics and Chemistry of the Earth, Parts A/B/C, 29(4-9):481-494. Hattori K, Serita A, Yoshino C, et al. 2006. Singular spectral analysis and principal component analysis for signal discrimination of ULF geomagnetic data associated with 2000 Izu Island earthquake swarm[J]. Physics and Chemistry of the Earth, Parts A/B/C, 31(4-9):281-291. Hirano T, Hattori K. 2011. ULF geomagnetic changes possibly associated with the 2008 Iwate-Miyagi Nairiku earthquake[J]. Journal of Asian Earth Sciences, 41(4-5):442-449. Huang Q H. 2002. One possible generation mechanism of co-seismic electric signals[J]. Proceedings of the Japan Academy, Series B, 78(7):173-178. Huang Q H. 2011. Retrospective investigation of geophysical data possibly associated with the MS8.0 Wenchuan earthquake in Sichuan, China[J]. Journal of Asian Earth Sciences, 41(4-5):421-427. Huang Q H, Ikeya M. 1998. Seismic electromagnetic signals(SEMS)explained by a simulation experiment using electromagnetic waves[J]. Physics of the Earth and Planetary Interiors, 109(3-4):107-114. Ida Y, Hayakawa M. 2006. Fractal analysis for the ULF data during the 1993 Guam earthquake to study prefracture criticality[J]. Nonlinear Processes in Geophysics, 13(4):409-412. Karakelian D. 2002. Analysis of ultralow-frequency electromagnetic field measurements associated with the 1999 M7.1 Hector Mine, California, earthquake sequence[J]. Bulletin of the Seismological Society of America, 92(4):1513-1524. Mizutani H, Ishido T, Yokokura T, et al. 1976. Electrokinetic phenomena associated with earthquakes[J]. Geophysical Research Letters, 3(7):365-368. Moore B. 1981. Principal component analysis in linear systems:Controllability, observability, and model reduction[J]. IEEE Transactions on Automatic Control, 26(1):17-32. November L J, Simon G W. 1988. Precise proper-motion measurement of solar granulation[J]. The Astrophysical Journal, 333:427-442. Papadimitriou S, Sun J M, Yu P S. 2006. Local correlation tracking in time series//Proceedings of the 6th International Conference on Data Mining. Hong Kong, China:IEEE:456-465. Park S K. 1996. Precursors to earthquakes:Seismoelectromagnetic signals[J]. Surveys in Geophysics, 17(4):493-516. Serita A, Hattori K, Yoshino C, et al. 2005. Principal component analysis and singular spectrum analysis of ULF geomagnetic data associated with earthquakes[J]. Natural Hazards and Earth System Science, 5(5):685-689. Shechtman E, Irani M. 2012. Space-time behavior based correlation//Proceedings of the 2005 IEEE Computer Society Conference on Computer Vision and Pattern Recognition. San Diego, CA, USA:IEEE, 1:405-412. Telesca L, Colangelo G, Hattori K, et al. 2004. Principal component analysis of geoelectrical signals measured in the seismically active area of Basilicata Region(southern Italy)[J]. Natural Hazards and Earth System Sciences, 4(5-6):663-667. Telesca L, Lapenna V, Vallianatos F, et al. 2004. Multifractal features in short-term time dynamics of ULF geomagnetic field measured in Crete, Greece[J]. Chaos Solitons and Fractals, 21(2):273-282. Verma M, Steffen M, Denker C. 2013. Evaluating local correlation tracking using CO5BOLD simulations of solar granulation[J]. Physics, 555(4):334-345. Zhao G Z, Zhan Y, Wang L F, et al. 2009. Electromagnetic anomaly before earthquakes measured by electromagnetic experiment[J]. Earthquake Science, 22(4):395-402. |
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