SEISMOLOGY AND GEOLOGY ›› 2022, Vol. 44 ›› Issue (4): 1059-1070.DOI: 10.3969/j.issn.0253-4967.2022.04.015
• Research paper • Previous Articles Next Articles
DENG Wen-ze(), LIU Jie*(), YANG Zhi-gao, SUN Li, ZHANG Xue-mei
Received:
2021-06-16
Revised:
2021-10-09
Online:
2022-08-20
Published:
2022-09-23
Contact:
LIU Jie
通讯作者:
刘杰
作者简介:
邓文泽, 男, 1989年生, 2013年于中国地震局地质研究所获固体地球物理学专业硕士学位, 工程师, 主要从事地震定位、 震源破裂过程反演研究, 电话: 010-59959370, E-mail: dengwenze@seis.ac.cn。
基金资助:
CLC Number:
DENG Wen-ze, LIU Jie, YANG Zhi-gao, SUN Li, ZHANG Xue-mei. PRELIMINARY ANALYSIS FOR RUPTURE PROCESS OF THE MAY 22TH, 2021, MADOI(QINGHAI) MS7.4 EARTHQUAKE[J]. SEISMOLOGY AND GEOLOGY, 2022, 44(4): 1059-1070.
邓文泽, 刘杰, 杨志高, 孙丽, 张雪梅. 青海玛多MS7.4地震震源破裂过程反演结果的初步分析[J]. 地震地质, 2022, 44(4): 1059-1070.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.dzdz.ac.cn/EN/10.3969/j.issn.0253-4967.2022.04.015
节面Ⅰ | 节面Ⅱ | 震源机制解示意图 | 深度/km | 矩震级/MW |
---|---|---|---|---|
走向/倾角/滑动角 | 走向/倾角/滑动角 | |||
102°/81°/11° | 194°/79°/171° | 11 | 7.4 |
Table 1 Focal mechanism of Qinghai Madoi MS7.4 earthquake
节面Ⅰ | 节面Ⅱ | 震源机制解示意图 | 深度/km | 矩震级/MW |
---|---|---|---|---|
走向/倾角/滑动角 | 走向/倾角/滑动角 | |||
102°/81°/11° | 194°/79°/171° | 11 | 7.4 |
序号 | 发震时间 | 北纬 | 东经 | 矩心深度 /km | 震级 /MS | 震级 /MW | 走向/倾角/滑动角 | |
---|---|---|---|---|---|---|---|---|
节面Ⅰ | 节面Ⅱ | |||||||
1 | 2021-05-22, 05:59:34 | 34.64° | 98.64° | 2 | 4.3 | 4.4 | 350°/60°/-70° | 134°/36°/-121° |
2 | 2021-05-22, 10:29:34 | 34.85° | 97.50° | 2 | 5.1 | 4.8 | 305°/90°/-5° | 35°/85°/180° |
3 | 2021-05-22, 10:38:44 | 34.55° | 98.94° | 8 | 4.9 | 4.8 | 60°/45°/-20° | 164°/76°/-133° |
4 | 2021-05-22, 11:21:16 | 34.72° | 98.07° | 9 | 4.7 | 4.7 | 260°/40°/-25° | 10°/74°/-127° |
5 | 2021-05-22, 12:03:35 | 35.63° | 99.12° | 7 | 4.0 | 4.3 | 105°/75°/-5° | 196°/85°/-165° |
6 | 2021-05-22, 15:06:22 | 34.51° | 98.92° | 7 | 4.8 | 4.7 | 85°/80°/-5° | 176°/85°/-170° |
7 | 2021-05-22, 17:39:34 | 34.77° | 97.65° | 2 | 4.3 | 4.5 | 310°/90°/0° | 40°/90°/180° |
8 | 2021-05-23, 11:46:52 | 34.44° | 99.14° | 8 | 4.0 | 4.1 | 265°/60°/5° | 172°/86°/150° |
9 | 2021-05-23, 15:24:31 | 34.48° | 99.06° | 10 | 4.0 | 4.2 | 85°/65°/10° | 351°/81°/155° |
10 | 2021-05-24, 16:31:27 | 34.78° | 97.56° | 2 | 4.1 | 4.2 | 140°/90°/0° | 50°/90°/180° |
11 | 2021-05-24, 22:15:19 | 34.45° | 99.02° | 8 | 4.4 | 4.5 | 255°/60°/25° | 152°/69°/148° |
12 | 2021-05-25, 07:00:19 | 34.73° | 98.04° | 6 | 4.1 | 4.2 | 315°/60°/-20° | 55°/73°/-148° |
13 | 2021-05-27, 21:06:07 | 34.46° | 99.17° | 8 | 4.9 | 4.8 | 255°/55°/-35° | 7°/62°/-139° |
14 | 2021-05-30, 12:50:08 | 34.67° | 98.31° | 10 | 4.9 | 4.7 | 220°/79°/-139° | 120°/50°/-15° |
15 | 2021-05-30, 14:55:14 | 34.65° | 98.48° | 11 | 4.9 | 4.9 | 35°/80°/92° | 205°/10°/80° |
16 | 2021-06-03, 13:55:17 | 34.75° | 97.90° | 3 | 4.9 | 4.7 | 21°/52°/-102° | 220°/40°/-75° |
Table 2 Focal mechanism catalog of Madoi MS≥4.0 aftershocks
序号 | 发震时间 | 北纬 | 东经 | 矩心深度 /km | 震级 /MS | 震级 /MW | 走向/倾角/滑动角 | |
---|---|---|---|---|---|---|---|---|
节面Ⅰ | 节面Ⅱ | |||||||
1 | 2021-05-22, 05:59:34 | 34.64° | 98.64° | 2 | 4.3 | 4.4 | 350°/60°/-70° | 134°/36°/-121° |
2 | 2021-05-22, 10:29:34 | 34.85° | 97.50° | 2 | 5.1 | 4.8 | 305°/90°/-5° | 35°/85°/180° |
3 | 2021-05-22, 10:38:44 | 34.55° | 98.94° | 8 | 4.9 | 4.8 | 60°/45°/-20° | 164°/76°/-133° |
4 | 2021-05-22, 11:21:16 | 34.72° | 98.07° | 9 | 4.7 | 4.7 | 260°/40°/-25° | 10°/74°/-127° |
5 | 2021-05-22, 12:03:35 | 35.63° | 99.12° | 7 | 4.0 | 4.3 | 105°/75°/-5° | 196°/85°/-165° |
6 | 2021-05-22, 15:06:22 | 34.51° | 98.92° | 7 | 4.8 | 4.7 | 85°/80°/-5° | 176°/85°/-170° |
7 | 2021-05-22, 17:39:34 | 34.77° | 97.65° | 2 | 4.3 | 4.5 | 310°/90°/0° | 40°/90°/180° |
8 | 2021-05-23, 11:46:52 | 34.44° | 99.14° | 8 | 4.0 | 4.1 | 265°/60°/5° | 172°/86°/150° |
9 | 2021-05-23, 15:24:31 | 34.48° | 99.06° | 10 | 4.0 | 4.2 | 85°/65°/10° | 351°/81°/155° |
10 | 2021-05-24, 16:31:27 | 34.78° | 97.56° | 2 | 4.1 | 4.2 | 140°/90°/0° | 50°/90°/180° |
11 | 2021-05-24, 22:15:19 | 34.45° | 99.02° | 8 | 4.4 | 4.5 | 255°/60°/25° | 152°/69°/148° |
12 | 2021-05-25, 07:00:19 | 34.73° | 98.04° | 6 | 4.1 | 4.2 | 315°/60°/-20° | 55°/73°/-148° |
13 | 2021-05-27, 21:06:07 | 34.46° | 99.17° | 8 | 4.9 | 4.8 | 255°/55°/-35° | 7°/62°/-139° |
14 | 2021-05-30, 12:50:08 | 34.67° | 98.31° | 10 | 4.9 | 4.7 | 220°/79°/-139° | 120°/50°/-15° |
15 | 2021-05-30, 14:55:14 | 34.65° | 98.48° | 11 | 4.9 | 4.9 | 35°/80°/92° | 205°/10°/80° |
16 | 2021-06-03, 13:55:17 | 34.75° | 97.90° | 3 | 4.9 | 4.7 | 21°/52°/-102° | 220°/40°/-75° |
[1] | 邓起东, 张培震, 冉勇康, 等. 2003. 中国活动构造与地震活动[J]. 地学前缘, 10(S1): 66-73. |
DENG Qi-dong, ZHANG Pei-zhen, RAN Yong-kang, et al. 2003. Active tectonics and earthquake activities in China[J]. Earth Science Frontiers, 10(S1): 66-73. (in Chinese) | |
[2] | 邓起东, 高翔, 陈桂华, 等. 2010. 青藏高原昆仑-汶川地震系列与巴颜喀喇断块的最新活动[J]. 地学前缘, 17(5): 163-178. |
DENG Qi-dong, GAO Xiang, CHEN Gui-hua, et al. 2010. Recent tectonic activity of Bayankala fault-block and the Kunlun-Wenchuan earthquake series of the Tibetan plateau[J]. Earth Science Frontiers, 17(5): 163-178. (in Chinese) | |
[3] | 邓起东, 程绍平, 马骥, 等. 2014. 青藏高原地震活动特征及当前地震活动形势[J]. 地球物理学报, 57(7): 2025-2042. |
DENG Qi-dong, CHENG Shao-ping, MA Ji, et al. 2014. Seismic activities and earthquake potential in the Tibetan plateau[J]. Chinese Journal of Geophysics, 57(7): 2025-2042. (in Chinese) | |
[4] | 华俊, 赵德政, 单新建, 等. 2021. 2021年青海玛多 MW7.3 地震InSAR的同震形变场、 断层滑动分布及其对周边区域的应力扰动[J]. 地震地质, 43(3): 677-691. |
HUA Jun, ZHAO De-zheng, SHAN Xin-jian, et al. 2021. Coseismic deformation field, slip distribution and Coulomb stress disturbance of the 2021 MW7.3 Maduo earthquake using Sentinel-1 InSAR observations[J]. Seismology and Geology, 43(3): 677-691. (in Chinese) | |
[5] | 李陈侠, 徐锡伟, 闻学泽, 等. 2011. 东昆仑断裂带中东部地震破裂分段性与走滑运动分解作用[J]. 中国科学(D辑), 41(9): 1295-1310. |
LI Chen-xia, XU Xi-wei, WEN Xue-ze, et al. 2011. Rupture segmentation and slip partitioning of the mid-eastern part of the Kunlun Fault, north Tibetan plateau[J]. Science in China(Ser D), 41(9): 1295-1310. (in Chinese) | |
[6] | 嘉世旭, 林吉焱, 郭文斌, 等. 2017. 巴颜喀拉块体地壳结构多样性探测[J]. 地球物理学报, 60(6): 2226-2238. |
JIA Shi-xu, LIN Ji-yan, GUO Wen-bin, et al. 2017. Investigation on diversity of crustal structures beneath the Bayan Har block[J]. Chinese Journal of Geophysics, 60(6): 2226-2238. (in Chinese) | |
[7] | 李智敏, 李文巧, 李涛, 等. 2021. 2021年5月22日青海玛多 MS7.4 地震的发震构造和地表破裂初步调查[J]. 地震地质, 43(3): 722-737. |
LI Zhi-min, LI Wen-qiao, LI Tao, et al. 2021. Seimogenic fault and coseismic surface deformation of the Maduo MS7.4 earthquake in Qinghai, China: A quick report[J]. Seismology and Geology, 43(3): 722-737. (in Chinese) | |
[8] | 王未来, 房立华, 吴建平, 等. 2021. 2021年青海玛多 MS7.4 地震序列精定位研究[J]. 中国科学(D辑), 51(7): 1193-1202. |
WANG Wei-lai, FANG Li-hua, WU Jian-ping, et al. 2021. Aftershock sequence relocation of the 2021 MS7.4 Maduo earthquake, Qinghai, China[J]. Science in China(Ser D), 51(7): 1193-1202. (in Chinese) | |
[9] | 魏柏林. 1980. 余震震源机制变化的原因[J]. 地球物理学报, 23(1): 25-34. |
WEI Bai-lin. 1980. Cause of the change of focal mechanism of aftershocks[J]. Chinese Journal of Geophysics, 23(1): 25-34. (in Chinese) | |
[10] | 熊仁伟, 任金卫, 张军龙, 等. 2010. 玛多-甘德断裂甘德段晚第四纪活动特征[J]. 地震, 30(4): 65-73. |
XIONG Ren-wei, REN Jin-wei, ZHANG Jun-long, et al. 2010. Late Quaternary active characteristics of Gande segment in the Maduo-Gande fault zone[J]. Earthquake, 30(4): 65-73. (in Chinese) | |
[11] | 徐志国, 梁珊珊, 张广伟, 等. 2021. 2021年5月22日青海玛多 MS7.4 地震发震构造分析[J]. 地球物理学报, 64(8): 2657-2670. |
XU Zhi-guo, LIANG Shan-shan, ZHANG Guang-wei, et al. 2021. Analysis of seismogenic structure of Madoi, Qinghain MS7.4 earthquake on May 22, 2021[J]. Chinese Journal of Geophysics, 64(8): 2657-2670. (in Chinese) | |
[12] | 詹艳, 梁明剑, 孙翔宇, 等. 2021. 2021年5月22日青海玛多 MS7.4 地震深部环境及发震构造模式[J]. 地球物理学报, 64(7): 2232-2252. |
ZHAN Yan, LIANG Ming-jian, SUN Xiang-yu, et al. 2021. Deep structure and seismogenic pattern of the 2021.5.22 Madoi(Qinghai) MS7.4 earthquake[J]. Chinese Journal of Geophysics, 64(7): 2232-2252. (in Chinese) | |
[13] |
Clark M K, Royden L H. 2000. Topographic ooze: Building the eastern margin of Tibet by lower crustal flow[J]. Geology, 28(8): 703-706.
DOI URL |
[14] | Dahlen F A, Tromp J. 1998. Theoretical Global Seismology[M]. Princeton University Press, Princeton: 178. |
[15] |
Herrmann R B, Malagnini L, Munafo I, et al. 2011. Regional moment tensors of the 2009 L'Aquila earthquake sequence[J]. Bulletin of the Seismological Society of America, 101(3): 975-993.
DOI URL |
[16] |
Herrmann R B. 2013. Computer programs in seismology: An evolving tool for instruction and research[J]. Seismological Research Letters, 84(6): 1081-1088.
DOI URL |
[17] | Huang S, Yao H, Lu Z, et al. 2020. High-resolution 3-D shear wave velocity model of the Tibetan plateau: Implications for crustal deformation and porphyry Cu deposit formation[J]. Journal of Geophysical Research: Solid Earth, 125: e2019JB019215. |
[18] |
Ji C, Wald D J, Helmberger D V. 2002a. Source description of the 1999 Hector Mine, California, earthquake, part I: Wavelet domain inversion theory and resolution analysis[J]. Bulletin of the Seismological Society of America, 92(4): 1192-1207.
DOI URL |
[19] |
Ji C, Wald D J, Helmberger D V. 2002b. Source description of the 1999 Hector Mine, California, earthquake, part Ⅱ: Complexity of slip history[J]. Bulletin of the Seismological Society of America, 92(4): 1208-1226.
DOI URL |
[20] |
Kanamori H, Rivera L. 2008. Source inversion of W phase: Speeding up seismic tsunami warning[J]. Geophysical Journal International, 175(1): 222-238.
DOI URL |
[21] | Wang M, Shen Z K. 2020. Present-day crustal deformation of continental China derived from GPS and its tectonic implications[J]. Journal of Geophysical Research: Solid Earth, 125(2): 2169-9313. |
[22] |
Xin H L, Zhang H J, Kang M, et al. 2019. High-resolution lithospheric velocity structure of continental China by double-difference seismic travel-time tomography[J]. Seismological Research Letters, 90(1): 229-241.
DOI URL |
[23] |
Xu X W, Tan X B, Yu G H, et al. 2013. Normal- and oblique-slip of the 2008 Yutian earthquake: Evidence for eastward block motion, northern Tibetan plateau[J]. Tectonophysics, 584:152-165.
DOI URL |
[1] | FAN Wen-jie. CHARACTERISTICS OF TECTONIC STRESS FIELD AROUND THE YANGBI MS6.4 EARTHQUAKE AND ITS SURROUNDING AREAS ON MAY 21, 2021 AND ITS GEODYNAMIC IMPLICATION [J]. SEISMOLOGY AND GEOLOGY, 2023, 45(1): 208-230. |
[2] | ZHANG Ke, WANG Xin, YANG Hong-ying, WANG Yue, XU Yan, LI Jing. THE CHARACTERISTICS AND SEISMOGENIC STRUCTURE ANALYSIS OF THE 2021 YANGBI MS6.4 EARTHQUAKE SEQUENCE, YUNNAN [J]. SEISMOLOGY AND GEOLOGY, 2023, 45(1): 231-251. |
[3] | LI Zong-xu, HE Ri-zheng, JI Zhan-bo, LI Yu-lan, NIU Xiao. THE FOCAL MECHANISM AND TECTONIC SIGNIFICANCE OF THE MS5.6 EARTHQUAKE ON JULY 24, 2009 IN NIMA, TIBET [J]. SEISMOLOGY AND GEOLOGY, 2022, 44(4): 992-1010. |
[4] | WANG Xiao-shan, WAN Yong-ge. CHARACTERISTICS OF THE CRUSTAL STRESS FIELD AND ITS DIRECTION CONVERGENCE BEFORE THE WENCHUAN EARTHQUAKE [J]. SEISMOLOGY AND GEOLOGY, 2022, 44(2): 363-377. |
[5] | YU Zhan-yang, SHEN Xu-zhang, LIANG Hao, ZHENG Wen-jun, LIU Xu-zhou. THE CHARACTERISTICS OF MAJOR FAULTS AND STRESS FIELD IN WEIHE-YUNCHENG BASIN CONSTRAINED BY SEISMIC ACTIVITY AND FOCAL MECHANISM SOLUTIONS [J]. SEISMOLOGY AND GEOLOGY, 2022, 44(2): 395-413. |
[6] | LIU Xiao-li, XIA Tao, LIU-ZENG Jing, YAO Wen-qian, XU Jing, DENG De-bei-er, HAN Long-fei, JIA Zhi-ge, SHAO Yan-xiu, WANG Yan, YUE Zi-yang, GAO Tian-qi. DISTRIBUTED CHARACTERISTICS OF THE SURFACE DEFORMATIONS ASSOCIATED WITH THE 2021 MW7.4 MADOI EARTHQUAKE, QINGHAI, CHINA [J]. SEISMOLOGY AND GEOLOGY, 2022, 44(2): 461-483. |
[7] | HAN Long-fei, LIU-ZENG Jing, YAO Wen-qian, WANG Wen-xin, LIU Xiao-li, GAO Yun-peng, SHAO Yan-xiu, LI Jin-yang. DETAILED MAPPING OF THE SURFACE RUPTURE NEAR THE EPICENTER SEGMENT OF THE 2021 MADOI MW7.4 EARTHQUAKE AND DISCUSSION ON DISTRIBUTED RUPTURE IN THE STEP-OVER [J]. SEISMOLOGY AND GEOLOGY, 2022, 44(2): 484-505. |
[8] | SHAO Yan-xiu, LIU-ZENG Jing, GAO Yun-peng, WANG Wen-xin, YAO Wen-qian, HAN Long-fei, LIU Zhi-jun, ZOU Xiao-bo, WANG Yan, LI Yun-shuai, LIU Lu. COSEISMIC DISPLACEMENT MEASUREMENT AND DISTRIBUTED DEFORMATION CHARACTERIZATION: A CASE OF 2021 MW7.4 MADOI EARTHQUAKE [J]. SEISMOLOGY AND GEOLOGY, 2022, 44(2): 506-523. |
[9] | YAO Wen-qian, WANG Zi-jun, LIU-ZENG Jing, LIU Xiao-li, HAN Long-fei, SHAO Yan-xiu, WANG Wen-xin, XU Jing, QIN Ke-xin, GAO Yun-peng, WANG Yan, LI Jin-yang, ZENG Xian-yang. DISCUSSION ON COSEISMIC SURFACE RUPTURE LENGTH OF THE 2021 MW7.4 MADOI EARTHQUAKE, QINGHAI, CHINA [J]. SEISMOLOGY AND GEOLOGY, 2022, 44(2): 541-559. |
[10] | ZHANG Zhi-wei, LONG Feng, ZHAO Xiao-yan, WANG Di. STUDY ON FOCAL MECHANISM SOLUTION AND STRESS FIELD CHARACTERISTICS IN SICHUAN AND YUNNAN AREA [J]. SEISMOLOGY AND GEOLOGY, 2022, 44(1): 170-187. |
[11] | ZHAO Tao, WANG Ying, MA Ji, SHAO Ruo-tong, XU Yi-fei, HU Jing. RELOCATION AND FOCAL MECHANISM SOLUTIONS OF THE 2021 MADUO, QINGHAI MS7.4 EARTHQUAKE SEQUENCE [J]. SEISMOLOGY AND EGOLOGY, 2021, 43(4): 790-805. |
[12] | WANG Ying, ZHAO Tao, HU Jing, LIU Chun. RELOCATION AND FOCAL MECHANISM SOLUTIONS OF THE 2021 YANGBI, YUNNAN MS6.4 EARTHQUAKE SEQUENCE [J]. SEISMOLOGY AND EGOLOGY, 2021, 43(4): 847-863. |
[13] | CUI Ren-sheng, ZHAO Cui-ping, ZHOU Lian-qing, CHEN Yang. SEISMICITY FEATURE AND SEISMOGENIC FAULT OF THE MS6.4 EARTHQUAKE SEQUENCE ON JANUARY 19, 2020 IN JIASHI, XINJIANG [J]. SEISMOLOGY AND GEOLOGY, 2021, 43(2): 329-344. |
[14] | LI Jin, JIANG Hai-kun, WEI Yun-yun, SUN Zhao-jie. PRELIMINARY STUDY FOR SEISMOGENIC STRUCTURE OF THE MS6.4 JIASHI EARTHQUAKE ON JANUARY 19, 2020 [J]. SEISMOLOGY AND GEOLOGY, 2021, 43(2): 357-376. |
[15] | ZHANG Wen-ting, JI Ling-yun, ZHU Liang-yu, JIANG Feng-yun, XU Xiao-xue. A TYPICAL THRUST RUPTURE EVENT OCCURRING IN THE FORELAND BASIN OF THE SOUTHERN TIANSHAN: THE 2020 XINJIANG JIASHI MS6.4 EARTHQUAKE [J]. SEISMOLOGY AND GEOLOGY, 2021, 43(2): 394-409. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||