APPLIED GEOPHYSICS
 
        Home  |  Copyright  |  About Journal  |  Editorial Board  |  Indexed-in  |  Subscriptions  |  Download  |  Contacts Us  |  中文
APPLIED GEOPHYSICS  2014, Vol. 11 Issue (4): 429-436    DOI: 10.1007/s11770-014-0450-4
article Current Issue | Next Issue | Archive | Adv Search Previous Articles  |  Next Articles  
Discriminating between explosions and earthquakes
Cho, Kwang-Hyun1
1. Petroleum Technology Institute, Korea National Oil Corporation, Anyang 431-711, South Korea
 Download: PDF (363 KB)   HTML ( KB)   Export: BibTeX | EndNote (RIS)      Supporting Info
Abstract Earthquake, explosion, and a nuclear test data are compared with forward modeling and band-pass filtered surface wave amplitude data for exploring methodologies to improve earthquake–explosion discrimination. The proposed discrimination method is based on the solutions of a double integral transformation in the wavenumber and frequency domains. Recorded explosion data on June 26, 2001 (39.212°N, 125.383°E) and October 30, 2001 (38.748°N, 125.267°E), a nuclear test on October 9, 2006 (41.275°N, 129.095°E), and two earthquakes on April 14, 2002 (39.207°N, 125.686°E) and June 7, 2002 (38.703°N, 125.638°E), all in North Korea, are used to discriminate between explosions and earthquakes by seismic wave analysis and numerical modeling. The explosion signal is characterized by first P waves with higher energy than that of S waves. Rg waves are clearly dominant at 0.05–0.5 Hz in the explosion data but not in the earthquake data. This feature is attributed to the dominant P waves in the explosion and their coupling with the SH components.
Service
E-mail this article
Add to my bookshelf
Add to citation manager
E-mail Alert
RSS
Articles by authors
Cho
Kwang-Hyun
Key wordsexplosion   earthquake   nuclear test   P wave   Rg wave   numerical modeling     
Received: 2014-05-08;
Cite this article:   
Cho ,Kwang-Hyun . Discriminating between explosions and earthquakes[J]. APPLIED GEOPHYSICS, 2014, 11(4): 429-436.
 
[1] Bonner, J., Russell, L., Harkrider, D., Reiter, D., and Herrmann, R., 2006, Development of a time-domain variable period surface wave magnitude measurement procedure for application at regional and teleseismic f America, 96, 678-696.
[2] Bonner, J., Stroujkova, A., and Anderson, D. N., 2011, Improving earthquake and explosion discrimination by using Love and Rayleigh wave magnitudes, in “2011 Monitoring Research Review: Ground-Based Nuclear Explosion Monitoring Technologies” sponsored by the Air Force Research Laboratory.
[3] Cho, K. H., and Lee, K., 2006, Dispersion of Rayleigh waves in the Korean Peninsula: Journal of the Korean Geophysical Society, 9, 231-240.
[4] Cho, K. H., Herrmann, R. B., Ammon, C. J., and Lee, K., 2007, Imaging the upper crust of the Korean Peninsula by surface wave tomography: Bulletin of the Seismological Society of America, 97, 198-207, doi: 10.1785/0120060096.
[5] Cho, K. H., Lee, S.-H., and Kang, I. -B., 2011a, Crustal structure of the Korean Peninsula using surface wave dispersion and numerical modeling: Pure and Applied Geophysics, 168, 1587-1598, doi: 10.1007/s00024-011-0262-x.
[6] Cho, K. -H., Chen, H. W., Kang, I. -B., and Lee, S. -H., 2011b, Crust and upper mantle structures of the region between Korea and Taiwan by surface wave dispersion study: Geoscience Journal, 15, 71-81, doi: 10.1007/s12303-011-0009-9.
[7] Cho, Kwang Hyun, 2014, Discovery of a surface-wave velocity anomaly in the West Sea of South Korea:Exploration Geophysics, 45, 86-93.
[8] Chun, K. -Y., Wu, Y., and Henderson, G. A., 2011, Magnitude estimation and source discrimination: A close look at the 2006 and 2009 North Korean underground nuclear explosions : Bulletin of the Seismological Society of America, 101, 1315-1329.
[9] Hong, T. -K., Baag, C. -E., Choi, H., and Sheen, D. -H, 2008, Regional seismic observations of the 9 October 2006 underground nuclear explosion in North Korea and the influence of crustal structure on regional phases: Journal of Geophysical Research, 113, B03305, doi: 10.1029/2007JB004950.
[10] Hong, T. -K. and Rhie, J., 2009, Regional source scaling of the 9 October 2006 underground nuclear explosion in North Korea: Bulletin of the Seismological Society of America, 99, 2523-2540.
[11] Howard J. P., and Steven, R. T., 2008, Effects of shock-induced tensile failure on mb-Ms discrimination: Contrasts between historic nuclear explosions and the North Korean test of 9 October 2006, Geophysical Research Letters: 35, L14301, doi: 10.1029/2008GL034211.
[12] Hudson, J. A., 1969, A quantitative evaluation of seismic signals at teleseismic distances II. Body waves and surface waves from an extended source: Geophys. J., 18, 353-370.
[13] Kafka, A. L., 1990, Rg as a depth discriminant for earthquakes and explosions - a case study in New England: Bulletin of the Seismological Society of America, 80, 373-394.
[14] Kremenetskaya, E., Asming, V., Jevtjugina, Z., and Ringdal, F., 2002, Study of regional surface waves and frequency-dependent Ms:mb discrimination in the European Arctic: Pure and Applied Geophysics, 159, 721-733.
[15] Saikia, C. K., 1992, Numerical Study of Quarry Generated Rg as a Discriminant for Earthquakes and Explosions - Modeling of Rg in Southwestern New England: Journal of Geophysical Research, 97, 11,057-11,072.
[16] Walter, W. R., Matzel, E., Pasyanos, M., Harris, D. B., Gok, R., Ford, S. R., 2007, Empirical observations of earthquake-explosion discrimination using P/S ratios and implications for the sources of explosion S-waves: “MRR2007-29th Research Review on Nuclear Explosion Monitoring Technologies” sponsored by the Air Force Research Laboratory.
[17] Yoo, H. J., Herrmann, R. B., Cho, K. H., and Lee, K., 2007, Imaging the three-dimensional crust of the Korean Peninsula by joint inversion of surface-wave dispersion and teleseismic receiver functions: Bulletin of the Seismological Society of America, 97, 1002-1011, doi: 10.1785/0120060134.
[1] Zhang Zhen-Bo, Xuan Yi-Hua, and Deng Yong. Simultaneous prestack inversion of variable-depth streamer seismic data*[J]. APPLIED GEOPHYSICS, 2019, 16(1): 99-108.
[2] Zhao Hu, Xu Hao, Di Zhi-Xin, Zhang Jin-Miao, and Liu Zhi-Peng. Analysis of acquisition parameters and geometry quality[J]. APPLIED GEOPHYSICS, 2018, 15(3-4): 413-419.
[3] Chen Meng, Liu Jia-Hui, Cui Yong-Fu, Hu Tian-Yue, Chen Fei-Xu, Kuang Wei-Kang, and Zhang Zhen. Poststack internal multiples attenuation based on virtual events[J]. APPLIED GEOPHYSICS, 2018, 15(3-4): 491-499.
[4] Dai Shi-Kun, Zhao Dong-Dong, Zhang Qian-Jiang, Li Kun, Chen Qing-Rui, and Wang Xu-Long. Three-dimensional numerical modeling of gravity anomalies based on Poisson equation in space-wavenumber mixed domain[J]. APPLIED GEOPHYSICS, 2018, 15(3-4): 513-523.
[5] Hu Jun, Cao Jun-Xing, He Xiao-Yan, Wang Quan-Feng, and Xu Bin. Numerical simulation of fault activity owing to hydraulic fracturing[J]. APPLIED GEOPHYSICS, 2018, 15(3-4): 367-381.
[6] . Seismic prediction method of multiscale fractured reservoir[J]. APPLIED GEOPHYSICS, 2018, 15(2): 240-252.
[7] Gao Feng, Wei Jian-Xin, Di Bang-Rang. Seismic physical modeling and quality factor[J]. APPLIED GEOPHYSICS, 2018, 15(1): 46-56.
[8] Kong Xuan-Lin, Chen Hui, Hu Zhi-Quan, Kang Jia-Xing, Xu Tian-Ji, Li Lu-Ming. Surface wave attenuation based polarization attributes in time-frequency domain for multicomponent seismic data[J]. APPLIED GEOPHYSICS, 2018, 15(1): 99-110.
[9] Zheng Que, Liu Cai, Tian You, Zhu Hong-Xiang. Seismic imaging of the middle and upper crust by double-difference tomography: the Haicheng earthquake (Ms 7.3) in Liaoning Province[J]. APPLIED GEOPHYSICS, 2018, 15(1): 125-136.
[10] Liu Jin-Zhao, Wang Tong-Qing, Chen Zhao-Hui, Zhang Pin, Zhu Chuan-Dong, Zhang Shuang-Xi. Analyzing gravity anomaly variations before the 2016 Ms 6.4 earthquake in Menyuan, Qinghai with an interpolation/cutting potential field separation technique[J]. APPLIED GEOPHYSICS, 2018, 15(1): 137-146.
[11] Sun Xiao-Dong, Li Zhen-Chun, Jia Yan-Rui. Variable-grid reverse-time migration of different  seismic survey data[J]. APPLIED GEOPHYSICS, 2017, 14(4): 517-522.
[12] Ji Zhan-Huai, Yan Sheng-Gang. Properties of an improved Gabor wavelet transform and its applications to seismic signal processing and interpretation[J]. APPLIED GEOPHYSICS, 2017, 14(4): 529-542.
[13] Yin Chen. Fault detection based on microseismic events[J]. APPLIED GEOPHYSICS, 2017, 14(3): 363-371.
[14] Yang Zhi-Qiang, He Tao, Zou Chang-Chun. Shales in the Qiongzhusi and Wufeng–Longmaxi Formations: a rock-physics model and analysis of the effective pore aspect ratio[J]. APPLIED GEOPHYSICS, 2017, 14(3): 325-336.
[15] Hu Song, Li Jun, Guo Hong-Bo, Wang Chang-Xue. Analysis and application of the response characteristics of DLL and LWD resistivity in horizontal well[J]. APPLIED GEOPHYSICS, 2017, 14(3): 351-362.
Copyright © 2011 APPLIED GEOPHYSICS
Support by Beijing Magtech Co.ltd support@magtech.com.cn