采用双差定位法,对2021年8月21日贵州省毕节市七星关MS 4.5地震序列进行重定位,共获得93个地震事件的重定位结果。结果显示:此次地震引起的破裂可能由深部延伸到浅部;重定位后震中分布更加集中,余震序列呈现早期密集分布、后期分散分布的特点,且早期余震序列呈NW向密集展布于朱昌断层东侧,初步推断发震断层为朱昌断层东侧发育的一条浅层次生断裂。
The Qixingguan MS 4.5 earthquake sequence in Guizhou Province in 2021 is relocated by the double-difference algorithm in this paper, and the accurate locations of 93 events have been obtained. The results show that the epicenter distribution is more concentrated after relocation, and the aftershock sequence exhibits the characteristics of dense distribution in the early stage and scattered distribution in the later stage. The rupture caused by this earthquake may extend from deep to shallow depths. The early aftershock sequence is densely distributed in a northwest direction on the east side of the Zhuchang Fault, and it is initially inferred that the seismogenic fault is a shallow secondary fault developed on the east side of the Zhuchang Fault.
2025,46(1): 37-41 收稿日期:2024-8-15
DOI:10.3969/j.issn.1003-3246.2025.01.005
基金项目:贵州省地震局地震科技基金(项目编号:GZSDZJDZKJJJ202203,GZSDZJDZKJJJ202201,GZSDZJDZKJJJ202101)
作者简介:陈国江(1992—),男,硕士,工程师,主要从事地震分析预报工作。E-mail:chenguojiangwy@163.com
*通讯作者:王丽艳(1992—),女,硕士,工程师,主要从事地震分析预报工作。E-mail:1244008284@qq.com
参考文献:
段梦乔,赵翠萍,周连庆,等. 2021年5月21日云南漾濞MS 6.4地震序列发震构造[J]. 地球物理学报,2021,64(9):3 111-3 125.
段梦乔,赵翠萍,周连庆. 2021年5月21日云南漾濞MS 6.4地震的前震迁移特征[J]. 地震地磁观测与研究,2022,43(Z1):160-163.
房立华,吴建平,王未来,等. 四川芦山MS 7.0级地震及其余震序列重定位[J]. 科学通报,2013,58(20):1 901-1 909.
蒋海昆,曲延军,李永莉,等. 中国大陆中强地震余震序列的部分统计特征[J]. 地球物理学报,2006,49(4):1 110-1 117.
李永红,潘元生,张坤,等. 双差定位方法在山东地区的应用[J]. 地震地磁观测与研究,2006,27(4):8-16.
廖诗荣,杨婷,张红才,等. 2021年云南双柏MS 5.1地震序列的快速检测与精定位研究[J]. 地震研究,2021,44(4):515-520.
龙锋,祁玉萍,易桂喜,等. 2021年5月21日云南漾濞MS 6.4地震序列重新定位与发震构造分析[J]. 地球物理学报,2021,64(8): 2 631-2 646.
王未来,吴建平,房立华,等. 2014年云南鲁甸MS 6.5地震序列的双差定位[J]. 地球物理学报,2014,57(9):3 042-3 051.
Pesicek J D, Thurber C H, Zhang H, et al. Teleseismic double-difference relocation of earthquakes along the Sumatra-Andaman subduction zone using a 3-D model[J]. Journal of Geophysical Research: Solid Earth, 2010, 115(B10):B10303.
Tang H H,Guo L H,Chen G J, et al. Crustal thickness and Poisson’s ratios in eastern China estimated jointly by receiver function and gravity data[J]. Geophysical Journal International, 2022, 230(2): 1 253-1 266.
Waldhauser F, Ellsworth W L. A double-difference earthquake location algorithm: Method and application to the Northern Hayward Fault, California[J]. Bull Seismol Soc Am, 2000, 90(6): 1 353-1 368.
Waldhauser F, Ellsworth W L. Fault structure and mechanics of the Hayward Fault, California, from double-difference earthquake locations[J]. J Geophys Res: Solid Earth, 2002, 107(B3): ESE 3-1-ESE 3-15.
Xin H, Zhang H, Kang M et al. High-Resolution Lithospheric Velocity Structure of Continental China by Double Difference Seismic Travel-Time Tomography[J]. Seismological Research Letters, 2019, 90(1): 229–241.