Fractal analysis of the ULF geomagnetic data obtained at Izu Peninsula, Japan in relation to the nearby earthquake swarm of June-August 2000

被引:50
作者
Gotoh, K. [1 ]
Hayakawa, M. [1 ]
Smirnova, N. [2 ]
机构
[1] Univ Electrocommun, Chofu, Tokyo 1828585, Japan
[2] St Petersburg State Univ, Inst Phys, St Petersburg 198504, Russia
关键词
D O I
10.5194/nhess-3-229-2003
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
In our recent papers we applied fractal methods to extract the earthquake precursory signatures from scaling characteristics of the ULF geomagnetic data, obtained in a seismic active region of Guam Island during the large earthquake of 8 August 1993. We found specific dynamics of their fractal characteristics (spectral exponents and fractal dimensions) before the earthquake: appearance of the flicker-noise signatures and increase of the time series fractal dimension. Here we analyze ULF geomagnetic data obtained in a seismic active region of Izu Peninsula, Japan during a swarm of the strong nearby earthquakes of June-August 2000 and compare the results obtained in both regions. We apply the same methodology of data processing using the FFT procedure, Higuchi method and Burlaga-Klein approach to calculate the spectral exponents and fractal dimensions of the ULF time series. We found the common features and specific peculiarities in the behavior of fractal characteristics of the ULF time series before Izu and Guam earthquakes. As a common feature, we obtained the same increase of the ULF time series fractal dimension before the earthquakes, and as specific peculiarity-this increase appears to be sharp for Izu earthquake in comparison with gradual increase of the ULF time series fractal dimension for Guam earthquake. The results obtained in both regions are discussed on the basis of the SOC (self-organized criticality) concept taking into account the differences in the depths of the earthquake focuses. On the basis of the peculiarities revealed, we advance methodology for extraction of the earthquake precursory signatures. As an adjacent step, we suggest the combined analysis of the ULF time series in the parametric space polarization ratio fractal dimension. We reason also upon the advantage of the multifractal approach with respect to the mono-fractal analysis for study of the earthquake preparation dynamics.
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页码:229 / 236
页数:8
相关论文
共 26 条
[11]  
Jensen HJ., 1998, CAMBRIDGE LECT NOTES, V10, DOI DOI 10.1017/CBO9780511622717
[12]  
Kaufman A.A., 1981, MAGNETOTELLURIC SOUN
[13]  
Kiyashchenko D., 2003, NAT HAZARDS EARTH SY
[14]  
Kopytenko Y, 2001, ANN GEOFIS, V44, P325
[15]  
Kopytenko Y.A., 1994, Electromagnetic Phenomena Related to Earthquake Prediction, P175
[16]   DETECTION OF ULTRA-LOW-FREQUENCY EMISSIONS CONNECTED WITH THE SPITAK EARTHQUAKE AND ITS AFTERSHOCK ACTIVITY, BASED ON GEOMAGNETIC-PULSATIONS DATA AT DUSHETI AND VARDZIA OBSERVATORIES [J].
KOPYTENKO, YA ;
MATIASHVILI, TG ;
VORONOV, PM ;
KOPYTENKO, EA ;
MOLCHANOV, OA .
PHYSICS OF THE EARTH AND PLANETARY INTERIORS, 1993, 77 (1-2) :85-95
[17]  
Kopytenko Yu.A., 2002, SEISMO ELECTROMAGNET
[18]   MULTIFRACTAL MEASURES, ESPECIALLY FOR THE GEOPHYSICIST [J].
MANDELBROT, BB .
PURE AND APPLIED GEOPHYSICS, 1989, 131 (1-2) :5-42
[19]   GENERATION OF ULF ELECTROMAGNETIC EMISSIONS BY MICROFRACTURING [J].
MOLCHANOV, OA ;
HAYAKAWA, M .
GEOPHYSICAL RESEARCH LETTERS, 1995, 22 (22) :3091-3094
[20]   Scaling characteristics of ULF geomagnetic fields at the Guam seismoactive area and their dynamics in relation to the earthquake [J].
Smirnova, N. ;
Hayakawa, M. ;
Gotoh, K. ;
Volobuev, D. .
NATURAL HAZARDS AND EARTH SYSTEM SCIENCES, 2001, 1 (03) :119-126