Source faulting properties of the 2021 MS 6.4 Yangbi, China, earthquake sequence

被引:0
|
作者
Guo, Xiangyun [1 ]
Zhang, Xu [1 ,2 ]
Fang, Lihua [1 ,2 ]
Li, Dahu [3 ]
Yi, Lei [4 ,5 ]
机构
[1] China Earthquake Adm, Inst Geophys, Beijing, Peoples R China
[2] China Earthquake Adm, Key Lab Earthquake Source Phys, Beijing, Peoples R China
[3] Earthquake Adm Sichuan Prov, Chengdu, Peoples R China
[4] Chinese Acad Sci, Qinghai Inst Salt Lakes, Key Lab Comprehens & Highly Efficient Utilizat Sal, Xining, Peoples R China
[5] Chinese Acad Sci, Qinghai Inst Salt Lakes, Qinghai Prov Key Lab Geol & Environm Salt Lakes, Xining, Peoples R China
基金
中国国家自然科学基金;
关键词
The 2021 Yangbi earthquake sequence; focal mechanism; source rupture process; stress field; rupture complexity; FOCAL MECHANISMS; JOINT INVERSION; SEISMOGENIC STRUCTURE; SLIP DISTRIBUTION; YUNNAN PROVINCE; STRESS ROTATION; RED-RIVER; RUPTURE; FLUID; SICHUAN;
D O I
10.1080/19475705.2024.2391419
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The 2021 Yangbi earthquake sequence occurred on the southwestern margin of the Chuandian block in China, which is a typical foreshock-mainshock-aftershock sequence. We investigate source properties of this earthquake sequence with seismic and geodetic data. Focal mechanisms of M >= 2.0 events in this earthquake sequence are determined using P wave first-motion polarity plus S/P amplitude ratio data from local short-period and broadband seismic stations. The determined focal mechanisms together with spatial distribution of the earthquake sequence indicate the overall northwest-southeast-trending seismogenic faults with dominant strike-slip motions. We conduct kinematic finite-fault inversion with strong-motion, local broadband seismic, and coseismic InSAR plus GNSS displacement data, finding that the mainshock ruptured a major asperity unilaterally with a rupture length and duration being approximately 15 km and 6.5 s, respectively. The released scalar seismic moment is 1.7 x 10(18) Nm, corresponding to a moment magnitude M-W 6.1. Besides, stress field inversion results manifest that source area is characterized by a strike-slip stress regime and the local stress field has changed before and after the mainshock. We suggest that rupture initiation, propagation, and arrest of the 2021 Yangbi earthquake sequence may be regulated by the immanent strength and stress heterogeneities of the seismogenic fault.
引用
收藏
页数:20
相关论文
共 50 条
  • [21] Temporal evolution of the focal mechanism consistency of the 2021 Yangbi MS6.4 earthquake sequence in Yunnan
    Xiaobin Li
    Mingpei Jin
    Ya Huang
    Wenjian Cha
    Jun Wang
    Sihai Li
    Earthquake Research Advances, 2022, 2 (02) : 11 - 20
  • [22] Geometric complexity of fault system in the source region of the 2021 Yangbi, Yunnan, MS6.4 earthquake
    Liang S.-S.
    Xu Z.-G.
    Zhang G.-W.
    Zou L.-Y.
    Liu Y.-Q.
    Guo T.-L.
    Zhang, Guang-Wei (zhanggw@mail.ustc.ac.cn), 1600, State Seismology Administration (43): : 827 - 846
  • [23] Coseismic surface deformation and slip models of the 2021 MS6.4 Yangbi (Yunnan, China) earthquake
    Wang S.-J.
    Liu Y.-H.
    Shan X.-J.
    Qu C.-Y.
    Zhang G.-H.
    Xie Z.-D.
    Zhao D.-Z.
    Fan X.-R.
    Hua J.
    Liang S.-M.
    Zhang K.-L.
    Dai C.-L.
    Dizhen Dizhi, 2021, 43 (03): : 692 - 705
  • [24] The seismogenic structures and migration characteristics of the 2021 Yangbi M6.4 Earthquake sequence in Yunnan, China
    Yan, Kun
    Wang, Weijun
    Peng, Fei
    Wang, Qincai
    Kou, Huadong
    Yuan, Aijing
    SCIENCE CHINA-EARTH SCIENCES, 2022, 65 (08) : 1522 - 1537
  • [25] The seismogenic structures and migration characteristics of the 2021 Yangbi M6.4 Earthquake sequence in Yunnan, China
    Kun Yan
    Weijun Wang
    Fei Peng
    Qincai Wang
    Huadong Kou
    Aijing Yuan
    Science China Earth Sciences, 2022, 65 : 1522 - 1537
  • [26] The seismogenic structures and migration characteristics of the 2021 Yangbi M6.4 Earthquake sequence in Yunnan, China
    Kun YAN
    Weijun WANG
    Fei PENG
    Qincai WANG
    Huadong KOU
    Aijing YUAN
    ScienceChina(EarthSciences), 2022, 65 (08) : 1522 - 1537
  • [27] Preliminary study of seismogenic structure and rupture process of the Yangbi MS 6.4 earthquake sequence from May 2021
    Sun Q.
    Zhang W.
    Guo X.
    Wang L.
    Dizhi Xuebao/Acta Geologica Sinica, 2023, 97 (02): : 349 - 363
  • [28] Seismic moment tensor and seismogenic structure of the Yangbi Ms 6.4 earthquake sequence on May 21, 2021 in Yunnan
    Liu JunQing
    Gan WeiJun
    Wang GuangMing
    Wang ZhongLi
    Zhang Yu
    Cai HongLei
    Li ZhongWei
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2021, 64 (12): : 4475 - 4487
  • [29] Spatial distribution and tectonic significance of the landslides triggered by the 2021 Ms6.4 Yangbi earthquake, Yunnan, China
    He, Xiangli
    Xu, Chong
    FRONTIERS IN EARTH SCIENCE, 2022, 10
  • [30] Seismogenic environment and mechanism of the Yangbi MS6.4 earthquake in Yunnan, China
    Mengqiao Duan
    Kezhen Zuo
    Cuiping Zhao
    Lianqing Zhou
    Earthquake Science, 2022, 35 (04) : 297 - 310