地震地质 ›› 2019, Vol. 41 ›› Issue (3): 619-632.DOI: 10.3969/j.issn.0253-4967.2019.03.006

• 研究论文 • 上一篇    下一篇

广西苍梧MS5.4地震震源深度

赵韬1, 储日升2, 倪四道2, 王莹1, 周勇3, 曾祥方2   

  1. 1. 陕西省地震局, 西安 710068;
    2. 中国科学院测量与地球物理研究所, 武汉 430077;
    3. 南方科技大学, 深圳 518055
  • 收稿日期:2017-11-01 修回日期:2018-04-04 出版日期:2019-06-20 发布日期:2019-07-28
  • 通讯作者: 储日升,男,博士,主要从事地震学研究,E-mail:chur@whigg.ac.cn。
  • 作者简介:赵韬,男,1989年生,2017年于中国科学技术大学地球与空间科学学院获地质工程专业硕士学位,工程师,主要从事地震监测数字地震资料分析处理工作以及震源机制解快速产出方面的研究,电话:15929933676,E-mail:zhaotaowy@163.com。
  • 基金资助:
    中国地震局监测预报司测震台网青年骨干培养专项(20170623)和陕西省地震局启航与创新基金(201603)共同资助。

STUDY ON FOCAL DEPTH OF THE MS5.4 CANGWU EARTHQUAKE IN GUANGXI

ZHAO Tao1, CHU Ri-sheng2, NI Si-dao2, WANG Ying1, ZHOU Yong3, ZENG Xiang-fang2   

  1. 1. Earthquake Agency of Shaanxi Province, Xi'an 710068, China;
    2. Institute of Geodesy and Geophysics, Chinese Academy of Sciences, Wuhan 430077, China;
    3. Department of Earth and Space Sciences, School of Science, Southern University of Science and Technology, Shenzhen 518055, China
  • Received:2017-11-01 Revised:2018-04-04 Online:2019-06-20 Published:2019-07-28

摘要: 2016年7月31日广西苍梧发生的MS5.4地震是广西测震台网自建立以来所记录到的区域内最强地震。不同机构对于此次事件给出的震源深度结果相差较大,例如美国地质调查局(USGS)地震目录显示其深度为24.5km,而全球矩心矩张量研究中心(Global CMT)测定的深度为15.6km。为了进一步准确确定广西苍梧地震的震源深度,文中基于区域速度模型,首先利用走时残差全局搜索法初步得到此次地震震源深度及误差范围,然后使用CAP (Cut and Paste)方法反演苍梧地震震源机制,在此基础上,采用Rayleigh波振幅谱和sPL震相方法进一步约束了此次地震的震源深度。研究结果显示:利用走时残差全局搜索法获得的苍梧MS5.4地震震源深度及误差范围为(13±3) km,CAP方法反演的深度为10km,Rayleigh波振幅谱测定深度结果为9~10km,sPL震相测定深度结果为10km,最终确定广西苍梧MS5.4地震的震源深度约10km,这表明此次事件仍为发生于上地壳的地震。本文结果同时表明,USGS地震目录在研究区的震源深度精度有待提高。

关键词: 震源深度, sPL震相, Rayleigh波振幅谱, 广西苍梧MS5.4地震

Abstract: On July 31th, 2016, a magnitude 5.4 earthquake struck Cangwu Country, Guangxi Zhuang Autonomous Region, it was the largest earthquake recorded by Guangxi Seismological Network since it set up. The number of people affected by the earthquake had reached 20 000, and the direct economic losses caused by the earthquake were nearly 100 million Yuan.
After the earthquake, USGS provided a global earthquake catalog showing that the focal depth of Cangwu earthquake was about 24.5km. However, the result given by the Global Centroid Moment Tensor showed the focal depth of this earthquake was 15.6km. However, the result obtained by Xu Xiaofeng et al. using CAP method was 5.1km. It was clear that the focal depths of Cangwu earthquake given by different institutions were quite different from each other. However, accurate focal depth of the earthquake has important significance for exploring the tectonic mechanism near the epicenter, so it is necessary to further determine the more accurate depth of the Cangwu earthquake.
In order to further accurately determine the focal depth of Cangwu earthquake, we used the global search method for travel-time residual to calculate the focal depth of this earthquake and its error range, based on the regional velocity model, which is a one-dimensional velocity model of the Xianggui tectonic belt produced by the comprehensive geophysical profile. Then, we inverted the focal mechanism of this earthquake with the CAP method. Based on this, the focal depth of Cangwu MS5.4 earthquake was further determined by the method of the Rayleigh surface wave amplitude spectrum and the sPL phase, respectively.
Computed results reveal that the focal depth of this earthquake and its error range from the travel-time residual global search method is about(13±3)km, the focal depth inverted by CAP method is about 10km, the focal depth from sPL phase is about 10km, and the focal depth from Rayleigh surface wave amplitude spectrum is about 9~10km. Finally, we confirmed that the focal depth of Cangwu MS5.4 earthquake is about 10km, which indicates that this earthquake still occurred in the upper crust. In the case of low network density, the sPL phase and Rayleigh wave amplitude spectrum recorded by only 1 or 2 broadband stations could be used to obtain more accurate focal depth.
The focal depth's accuracy of Cangwu MS5.4 earthquake in the USGS global earthquake catalog has yet to be improved. In the future, we should consider the error of the source parameters when using the USGS global earthquake catalog for other related research.

Key words: focal depth, sPL phase, Rayleigh wave amplitude spectrum, Guangxi Cangwu MS5.4 earthquake

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