不同地区人工爆炸与天然地震记录特征及识别研究

王婷婷, 边银菊, 杨千里, 任梦依

王婷婷,边银菊,杨千里,任梦依. 2021. 不同地区人工爆炸与天然地震记录特征及识别研究. 地震学报,43(4):427−440. DOI: 10.11939/jass.20210169
引用本文: 王婷婷,边银菊,杨千里,任梦依. 2021. 不同地区人工爆炸与天然地震记录特征及识别研究. 地震学报,43(4):427−440. DOI: 10.11939/jass.20210169
Wang T T,Bian Y J,Yang Q L,Ren M Y. 2021. Research on seismic characteristics and identification of artificial explosion in different areas and natural earthquake. Acta Seismologica Sinica43(4):427−440. DOI: 10.11939/jass.20210169
Citation: Wang T T,Bian Y J,Yang Q L,Ren M Y. 2021. Research on seismic characteristics and identification of artificial explosion in different areas and natural earthquake. Acta Seismologica Sinica43(4):427−440. DOI: 10.11939/jass.20210169

不同地区人工爆炸与天然地震记录特征及识别研究

基金项目: 中央级公益性科研院所基本科研专项(DQJB19B17)和核查项目共同资助
详细信息
    通讯作者:

    边银菊: e-mail:bianyinju@cea-igp.ac.cn

  • 中图分类号: P315.3+1

Research on seismic characteristics and identification of artificial explosion in different areas and natural earthquake

  • 摘要: 本文分析了河北怀来多次爆炸、河北三河采石场多次爆炸和低震级天然地震事件的记录特征和时频差异。结果显示:河北怀来爆炸的P波能量强、衰减快、S波发育弱;河北三河采石场爆炸的P波、S波主频均低于怀来爆炸,S波与面波混淆,不同震中距的台站记录低频发育明显;而天然地震的有效频带更宽,频率成分更为复杂。将Pg/Sg谱比判据应用于小震级地震与爆炸的识别中,探索交叉频带谱比对不同地区爆炸的识别。结果表明:高频(>5 Hz)Pg/Sg谱比判据可将研究数据中的爆炸与小震级地震完全区分;与Sg低频(0—2 Hz)有关的交叉频带谱比可对两个不同地区的爆炸进行识别,交叉频带的谱比判据较传统的单一频带谱比判据能够更好地反映出不同类型事件的特征差异。
    Abstract: The differences of the seismic characteristics and frequency of the Huailai explosions, the Sanhe quarry explosions and the natural earthquakes with low magnitude are discussed. The results show that the two different area explosions have obviously different seismic characteristics and frequency distribution, Huailai explosion has stronger P wave energy than S wave and fast attenuation; The main frequencies of P wave and S wave in Sanhe quarry explosion are lower than that in Huailai explosion, S wave and surface wave are confused, and the low frequency developed obviously at different distances; While for natural earthquakes, the effective frequency band is wider and the frequency components are more complex than explosions. Pg/Sg spectral ratios in small-magnitude earthquakes and explosions were studied and cross-band spectral ratios were explored. Results obtained show that the high frequency (>5 Hz)Pg/Sg spectral ratio discriminants can completely distinguish explosions from low magnitude earthquakes; The spectral ratios of the cross-band related to low frequency (0−2 Hz) of Sg can effectively identify explosions in these two areas, Pg/Sg discriminants of the crossed frequency band can better reflect the difference characteristics of different types of events than that of the traditional single frequency band.
  • 图  7   交叉频带谱比分布

    Figure  7.   Cross-band spectral ratio values

    (a) Pg (0—2 Hz)/Sg (0—2 Hz);(b) Pg (6—8 Hz)/Sg (0—2 Hz);

    图  1   研究所用爆炸、地震及台站位置分布

    Figure  1.   Distribution of  explosions ,seismic events and stations in this article

    图  2   不同类型事件的地震记录波形

    (a)“明灯一号”大当量爆炸;(b)三河采石场爆炸;(c)天然地震。波形上方为事件发生时间及震级,波形右上角为记录台网、台站和震中距,下同

    Figure  2.   Seismic waveforms for different types of events

    (a) “Bright Lamp No.1” large yield explosion;(b) Quarry blast;(c) Earthquake. The time and the magnitude of the events are net on the top of traces,and the station and epicentral distance are on the top right corner of the waveforms,the same below

    图  3   2003 (a),2004 (b)和2005 (b)年3次爆炸事件的波形对比

    Figure  3.   Waveform comparison of three explosion events occured in 2003 (a),2004 (b) and 2005 (c)

    图  4   不同类型事件P波(a)和S波(b)主频分布

    Figure  4.   Main frequency distribution of P (a) and S (b) waves for different types of events

    图  5   天然地震与爆炸Pg/Sg谱比值分布

    Figure  5.   Pg/Sg spectral ratio value of earthquakes and explosions

    图  6   XBZ台站的不同事件地震波形记录(滤波频带为:0.5—25 Hz)

    (a) 2004-03-02怀来爆炸;(b) 2005-03-12可疑事件;(c) 2010-07-10天然地震事件。左上角为事件震级和震中距

    Figure  6.   Seismic waveforms of different events recorded by XBZ (filtered:0.5—25 Hz)

    (a) 2004-03-02 Huailai explosion;(b) 2005-03-12 Suspicious event ; (c) 2010-07-10 natural earthquakeThe magnitude and epicentral distance are on the top left corner of the wavforms

    表  1   天然地震、怀来爆炸、三河爆炸主频分布

    Table  1   The main frequency distribution of earthquake,Huailai explosion and Sanhe explosion

    事件P波主频分布/HzS波主频分布/Hz
    天然地震 2.5—13.22.5—9.0
    怀来爆炸2.5—7.22.0—3.8
    三河采石场爆炸1.5—5.81.0—2.0
    下载: 导出CSV

    表  2   三次对比事件参数

    Table  2   Parameters of three comparison events

    事件性质发震时间 (UTC)震中位置ML深度/km
    年-月-日 时:分:秒北纬/°  东经/°
    怀来爆炸2004-03-02 08:03:35.640.50  115.471.8--
    可疑事件2005-03-12 13:46:27.440.51  115.461.6--
    天然地震2010-07-10 09:53:43.040.47  115.551.87
    下载: 导出CSV

    表  3   怀来爆炸与三河采石场爆炸正确识别率大于85%的频带分布

    Table  3   Frequency bands with the correct discrimination rate greater than 85% between Huailai and Sanhe quarry explosions

    交叉频谱比三河采石场爆
    炸正确识别数
    怀来爆炸正
    确识别数
    正确识
    别率
    Pg (0—2 Hz)/Sg (0—2 Hz) 51 44 92%
    Pg (0—2 Hz)/Sg (4—6 Hz) 46 46 89%
    Pg (0—2 Hz)/Sg (6—8 Hz) 51 40 88%
    Pg (2—4 Hz)/Sg (0—2 Hz) 47 45 89%
    Pg (2—4 Hz)/Sg (4—6 Hz) 53 36 86%
    Pg (4—6 Hz)/Sg (0—2 Hz) 47 47 91%
    Pg (6—8 Hz)/Sg (0—2 Hz) 52 45 94%
    Pg (8—10 Hz)/Sg (0—2 Hz) 50 44 91%
    Pg (10—12 Hz)/Sg (0—2 Hz) 50 39 86%
    Pg (12—14 Hz)/Sg (0—2 Hz) 55 33 85%
    下载: 导出CSV
  • 林大超, 白春华. 2007. 爆炸地震效应[M]. 北京: 地质出版社: 70–78.

    Lin D C, Bai C H. 2007. Explosion Seismic Effect [M]. Beijing: Geological Publishing House: 70–78 (in Chinese).

    潘常周,靳平,王红春. 2007a. P/S震相幅值比判据对低震级地震事件的适用性检验[J]. 地震学报,29(5):521–528.

    Pan C Z,Jin P,Wang H C. 2007a. Applicability of P/S amplitude ratios for the discrimination of low magnitude seismic events[J]. Acta Seismologica Sinica,29(5):521–528 (in Chinese).

    潘常周,靳平,肖卫国. 2007b. 利用克里金技术标定新疆及附近地区P/S震相幅值比及其在地震事件识别中的应用[J]. 地震学报,29(6):625–634.

    Pan C Z,Jin P,Xiao W G. 2007b. Calibration of P/S amplitude ratios for seismic events in Xinjiang and adjacent areas based on a Bayesian Kriging method[J]. Acta Seismologica Sinica,29(6):625–634 (in Chinese).

    孙海霞,杨选,林向东,侯丽娟,鲁跃. 2018. 北京及邻区Q值及台站场地响应分析[J]. 华北地震科学,36(3):1–11. doi: 10.3969/j.issn.1003-1375.2018.03.001

    Sun H X,Yang X,Lin X D,Hou L J,Lu Y. 2018. Analysis on the Q value and station site response in Beijing and its adjacent areas[J]. North China Earthquake Sciences,36(3):1–11 (in Chinese).

    唐兰兰. 2018. 诱发地震检测及地震震源分类[D]. 合肥: 中国科学技术大学: 35–44.

    Tang L L. 2018. Induced Seismicity Detection and Discrimination of Seismic Source[D]. Hefei: University of Science and Technology of China: 35–44 (in Chinese).

    王婷婷,边银菊. 2015. 振幅衰减特性在地震与爆破识别中的应用[J]. 地震学报,37(1):169–179. doi: 10.11939/j.issn:0253-3782.2015.01.015

    Wang T T,Bian Y J. 2015. Amplitude attenuation and its application to earthquake and explosion discrimination[J]. Acta Seismologica Sinica,37(1):169–179 (in Chinese).

    王云专,王珊,董相杰,于承业. 2009. 多窗谱分析在Q值估算中的应用[J]. 地球物理学进展,24(6):2156–2162. doi: 10.3969/j.issn.1004-2903.2009.06.031

    Wang Y Z,Wang S,Dong X J,Yu C Y. 2009. The application of the multiple tapers spectral analysis in the Q estimation[J]. Progress in Geophysics,24(6):2156–2162 (in Chinese).

    徐锡伟, 吴卫民, 张先康, 马胜利, 马文涛, 于贵华, 顾梦林, 江娃利. 2002. 首都圈地区地壳最新构造变动与地震[M]. 北京: 科学出版社: 5–10.

    Xu X W, Wu W M, Zhang X K, Ma S L, Ma W T, Yu G H, Gu M L, Jiang W L.2002. Recent Tectonic Changes and Earthquakes in the Capital Circle Area[M]. Beijing: Science Press: 5–10 (in Chinese).

    赵爱华,郭永霞,孙为国,杨立强,刘哲. 2012. 华北地区矿山爆破活动的时空特征[J]. 地球物理学进展,27(3):917–923. doi: 10.6038/j.issn.1004-2903.2012.03.012

    Zhao A H,Guo Y X,Sun W G,Yang L Q,Liu Z. 2012. Spatio-temporal characteristics of mine blast activity in North China[J]. Progress in Geophysics,27(3):917–923 (in Chinese).

    郑秀芬,傅瑀,许绍燮. 2006. 地震记录中小爆破的识别与判据研究[J]. 地震地磁观测与研究,27(5):29–33. doi: 10.3969/j.issn.1003-3246.2006.05.006

    Zheng X F,Fu Y,Xu S X. 2006. The discrimination and criteria study between blasts and small earthquakes[J]. Seismological and Geomagnetic Observation and Research,27(5):29–33 (in Chinese).

    朱新运. 2011. 衰减、场地响应等地震波传播相关信息综合研究[D]. 北京: 中国地震局地球物理研究所: 17–24.

    Zhu X Y.2011. Comprehensive Study of Seismic Wave Propagation Related Information Such as Attenuation and Site Response[D]. Beijing: Institute of Geophysics, China Earthquake Administration: 17–24 (in Chinese).

    Bennett T J,Murphy J R. 1986. Analysis of seismic discrimination capabilities using regional data from western United States events[J]. Bull Seismol Soc Am,76(4):1069–1086. doi: 10.1785/BSSA0760041069

    Bonner J L,Russell D R,Reinke R E. 2013. Modeling surface waves from aboveground and underground explosions in Alluvium and Limestone[J]. Bull Seismol Soc Am,103(6):2953–2970.

    Chun K Y,Wu Y,Henderson G A. 2011. Magnitude estimation and source discrimination:A close look at the 2006 and 2009 North Korean underground nuclear explosions[J]. Bull Seismol Soc Am,101(3):1315–1329. doi: 10.1785/0120100202

    Douglas A. 2013. Forensic Seismology and Nuclear Test Bans[M]. Cambridge: Cambridge University Press: 340–368.

    Fisk M D,Gray H L,McCartor G D. 1996. Regional event discrimination without transporting thresholds[J]. Bull Seismol Soc Am,86(5):1545–1558.

    Fisk M D, Bottone S, McCartor G D. 2000. Regional seismic event characterization using a Bayesian Kriging approach[C]//Proceedings of the 22nd Annual DOD/DOE Seismic Research Symposium: Planning for Verification of and Compliance with the Comprehensive Nuclear-Test-Ban TreatyCTBT). Louisiana: U.S. Government or Federal Rights: 1–11.

    Fisk M D. 2006. Source spectral modeling of regional P/S discriminants at nuclear test sites in China and the former soviet union[J]. Bull Seismol Soc Am,96(6):2348–2367. doi: 10.1785/0120060023

    Fisk M D. 2007. Corner frequency scaling of regional seismic phases for underground nuclear explosions at the Nevada test site[J]. Bull Seismol Soc Am,97(3):977–988. doi: 10.1785/0120060186

    Fisk M D, Taylor S R, Patton H J, Walter W R. 2008. Applications of a next-generation MDAC discrimination procedure using two-dimensional grids of regional P/S spectral ratios[C]//Proceedings of 2008 Monitoring Research Review: Ground-based Nuclear Explosion Monitoring Technologies: 583–592.

    Fisk M D, Taylor S R, Walter W R, Randall G E. 2009. Seismic event discrimination using two-dimensional grids of regional P/S spectral ratios: Applications to Novaya Zemlya and the Korean Peninsula[C]//Proceedings of the 2009 Monitoring Research Review: Ground-Based Nuclear Explosion Monitoring Technologies: 465–474.

    Hartse H E,Taylor S R,Phillips W S,Randall G E. 1997. A preliminary study of regional seismic discrimination in central Asia with emphasis on western China[J]. Bull Seismol Soc Am,87(3):551–568.

    Kim W Y,Simpson D W,Richards P G. 1993. Discrimination of earthquakes and explosions in the eastern United States using regional high-frequency data[J]. Geophys Res Lett,20(14):1507–1510. doi: 10.1029/93GL01267

    Kim W Y,Simpson D W,Richards P G. 1994. High-frequency spectra of regional phases from earthquakes and chemical explosions[J]. Bull Seismol Soc Am,84(5):1365–1386.

    Kim W Y,Aharonian V,Lerner-Lam A L,Richards P G. 1997. Discrimination of earthquakes and explosions in southern Russia using regional high-frequency three-component data from the IRIS/JSP Caucasus network[J]. Bull Seismol Soc Am,87(3):569–588.

    Kim W Y,Richards P G. 2007. North Korean nuclear test:Seismic discrimination low yield[J]. Eos,Trans Amer Geophys Union,88(14):158–161.

    Kim W Y,Richards P G,Schaff D,Jo E,Ryoo Y. 2018. Identification of seismic events on and near the North Korean test site after the underground nuclear test explosion of 3 September 2017[J]. Seismol Res Lett,89(6):2120–2130.

    Koper K D,Pechmann J C,Burlacu R,Pankow K L,Stein J,Hale J M,Roberson P,McCarter M K. 2016. Magnitude-based discrimination of man-made seismic events from naturally occurring earthquakes in Utah,USA[J]. Geophys Res Lett,43(20):10638–10645. doi: 10.1002/2016GL070742

    McCoy E J,Walden A T,Percival D B. 1998. Multitaper spectral estimation of power law processes[J]. IEEE Trans Signal Process,46(3):655–668. doi: 10.1109/78.661333

    Murphy J R,Bennett T J. 1982. A discrimination analysis of short-period regional seismic data recorded at Tonto Forest Observatory[J]. Bull Seismol Soc Am,72(4):1351–1366. doi: 10.1785/BSSA0720041351

    Pomeroy P W,Best W J,McEvilly T V. 1982. Test ban treaty verification with regional data-a review[J]. Bull Seismol Soc Am,72(6):S89–S129.

    Pasyanos M E. 2018. The coupled location/depth/yield problem for North Korea’s declared nuclear tests[J]. Seismol Res Lett,89(6):2059–2067.

    Smith A T. 1993. Discrimination of explosions from simultaneous mining blasts[J]. Bull Seismol Soc Am,83(1):160–179.

    Rodgers A J, Walter W R, Schultz C A, Myers S C,Lay T. 1999. A comparison of methodologies for representing path effects on regional P/S discriminants [J]. Bull Seismol Soc Am,89(2):394–408.

    Taylor S R,Denny M D,Vergino E S,Glaser R E. 1989. Regional discrimination between NTS explosions and western U.S. earthquakes[J]. Bull Seismol Soc Am,79(4):1142–1176. doi: 10.1785/BSSA0790041142

    Taylor S R,Velasco A A,Hartse H E,Phillips W S,Walter W R,Rodgers A J. 2002. Amplitude corrections for regional seismic discriminants[J]. Pure Appl Geophys,159(4):623–650. doi: 10.1007/s00024-002-8652-8

    Thomson D J. 1982. Spectrum estimation and harmonic analysis[J]. Proc IEEE,70(9):1055–1096. doi: 10.1109/PROC.1982.12433

    Walter W R, Taylor S R. 2001. A Revised Magnitude and Distance Amplitude Correction MDAC2) Procedure for Regional Seismic Discriminants: Theory and Testing at NTS[R]. Livermore, CA: Lawrence Livermore National Lab: 1–13.

    Willis D E,DeNoyer J,Pollack H,Wilson J T. 1963. Differentiation of earthquakes and underground nuclear explosions on the basis of amplitude characteristics[J]. Bull Seismol Soc Am,53(5):979–987. doi: 10.1785/BSSA0530050979

    Xie J K,Patton H J. 1999. Regional phase excitation and propagation in the Lop Nor region of central Asia and implications for P/Lg discriminants[J]. J Geophys Res:Solid Earth,104(B1):941–954. doi: 10.1029/1998JB900045

    Zanandrea A,Da Costa J M,Dutra S L G,Rosa R R,Saotome O. 2004. Spectral and polarization analysis of geomagnetic pulsations data using a multitaper method[J]. Comput Geosci,30(8):797–808. doi: 10.1016/j.cageo.2004.03.016

    Zhao L F,Xie X B,Wang W M,Fan N,Zhao X,Yao Z X. 2017. The 9 September 2016 North Korean underground nuclear test[J]. Bull Seismol Soc Am,107(6):3044–3051. doi: 10.1785/0120160355

    Zheng X F,Yao Z X,Liang J H,Zheng J. 2010. The role played and opportunities provided by IGP DMC of China national seismic network in Wenchuan earthquake disaster relief and researches[J]. Bull Seismol Soc Am,100(5B):2866–2872. doi: 10.1785/0120090257

图(7)  /  表(3)
计量
  • 文章访问数:  797
  • HTML全文浏览量:  355
  • PDF下载量:  141
  • 被引次数: 0
出版历程
  • 收稿日期:  2020-11-03
  • 修回日期:  2021-04-02
  • 网络出版日期:  2021-07-29
  • 发布日期:  2021-07-14

目录

    /

    返回文章
    返回