Journal of Jilin University(Earth Science Edition) ›› 2021, Vol. 51 ›› Issue (1): 286-295.doi: 10.13278/j.cnki.jjuese.20200010

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Activity and Seismic Risk Assessment of Main Faults in Liaoning Area

Cao Fengjuan, Jia Lihua, Li Mengying, Wang Songyang   

  1. Seismological Bureau of Liaoning Province, Shenyang 110034, China
  • Received:2020-01-10 Published:2021-02-02
  • Supported by:
    Supported by the Social Research and Industrialization Project of Liaoning Province (2017231013) and the Special Items of Basic Scientific Research Business, Institute of Earthquake Forecasting,CEA(2018IEF010203)

Abstract: Based on the geometric features and spatial distribution of the major active faults in Liaoning Province, the earthquakes with frequency of ML≥2.0 in Liaoning since 1980 and the earthquakes with annual occurrence rate of Ms≥5.0 since 1900 were studied,their relationship with the tectonic settings of the active faults were analyzed, and the preliminary evaluation results of the seismicity and seismic risk of the main faults and tectonic zones were obtained. The main tectonic faults with high activity are Haicheng River fault, Jiuzhai-Gaizhou north section of Jinzhou fault, Chaoyang-Beipiao fault, etc.; the faults with relatively high risk of Ms≥5.0 earthquake in the next 3 years are Haicheng River fault, Xiongyue fault, Jiuzhai-Zhuanghe fault, Yalu River fault, the intersection of Chifeng-Kaiyuan fault, and Liuhe fault, etc. It is suggested that not only the spatial distribution of the precursory anomalies, but also the activity and seismic risk of the main structures in the region should be fully considered in the regional earthquake risk and hazard assessment.

Key words: active fault, earthquake frequency, space distribution, risk assessment, Liaoning area

CLC Number: 

  • P315
[1] 郑文俊,田山,邵永新.前兆异常动态扫描与区域构造活动背景结合的研究:试建立华北地区构造活动性与地震危险性综合评估数字化图[J].中国地震,2003,19(3):266-278. Zheng Wenjun,Tian Shan, Shao Yongxin.Study on Combinning the Spatial Scanning of Precursor Anomaly Evolution with Active Tectonic Background[J]. Earthquake Research in China,2003,19(3):266-278.
[2] 郑文俊,邵永新.渤海周围地震构造带的前兆异常分布与震情趋势估计的研究[J].地震,2002,22(3):33-38. Zheng Wenjun,Shao Yongxin.Study on the Distribution of the Precursory Anomalies Along the Seismic Tectonic Zones Around Bohai Sea and the Evaluation for the Tendency of Seismic Risk[J].Earthquake, 2002,22(3):33-38.
[3] 闻学泽.时间相依的活动断裂分段地震危险性评估及其问题[J].科学通报,1998,43(14):1457-1466. Wen Xueze. Assessment of Time-Dependent Seismic Hazards on Segments of Active Fault and Its Problems[J].Chinese Science Bulletin, 1998,43(14):1457-1466.
[4] 孙士宏,修济刚.首都圈地区地震短临预报追踪方案的讨论[J].中国地震,1994,10(3):303-306. Sun Shihong,Xiu Jigang. Discussion on the Short-Term and Imminent Earthquake Prediction and Tracking Scheme in the Capital Area[J]. Earthquake Research in China,1994,10(3):303-306.
[5] 万波,靳超宇,索锐.辽宁省及邻近地区主要地震构造及其危险性判定[J].防灾减灾学报,2017,33(1):1-11. Wan Bo,Jin Chaoyu,Suo Rui. Judgement for the Main Seismic Structures and Their Seismic Risk Classifications in Liaoning Province and Its Adjacent Area[J],Seismological Research of Northeast China,2017,33(1):1-11.
[6] 王亮,李彤霞,王岩,等.辽宁地区地震目录最小完整性震级研究[J].防灾减灾学报,2015,31(4):20-24. Wang Liang,Li Tongxia,Wang Yan,et al. Minimum Magnitude of Completeness for Earthquake Catalogues in Liaoning Region[J].Seismological Research of Northeast China,2015,31(4):20-24.
[7] 高常波,钟以章.1999年辽宁海城-岫岩5.6级地震的地质构造背景和发震构造[J].地震地质, 2000,22(4):405-412. Gao Changbo,Zhong Yizhang.Geological Background and Seismogenic Fault of the Haicheng-Xiuyan 5.6 Earthquake of November 29,1999[J].Seismology and Geology,2000,22(4):405-412.
[8] 雷清清,廖旭,董晓燕.辽宁省地震构造研究[J].东北地震研究,2008,24(4):1-10. Lei Qingqing,Liao Xu,Dong Xiaoyan.Seismotectonic Study on Liaoning Province[J].Seismological Research of Northeast China,2008,24(4):1-10.
[9] 李宇彤."重复地震"的若干地震学问题:1999年岫岩地震序列及辽宁区域台网的应用研究[D].北京:中国地震局地球物理研究所,2012. Li Yutong.The Seismology of "Repeating Earthquake":With Application to the 1999 Xiuyan Earthquake Sequence and Liaoning Regional Seismograph Network[D].Beijing:Institute of Geophysics, China Seismological Bureau,2012.
[10] 刘财,郑确,田有,等.辽宁海城及其邻区地震活动性研究[J].吉林大学学报(地球科学版),2014,44(4):1348-1356.doi10.13278/j.cnki.jjuese.201404303. Liu Cai,Zheng Que,Tian You,et al.Study on the Activity of the Earthquakes of Haicheng Region in Liaoning Province[J].JourNal of Jilin University(Earth Science Edition),2014,44(4):1348-1356.doi:10.13278/j.cnki.jjuese.201404303.
[11] 卢造勋,夏怀宽.内蒙古东乌珠穆沁旗-辽宁东沟地学断面[J].地球物理学报,1993,36(6):765-772. Lu Zaoxun,Xia Huaikuan. Geoscience Transect from Dong Ujimqinqi, Nei Mongol,to Donggou,Liaoning,China[J].Chinese Journal of Geophysics,1993,36(6):765-772.
[12] 卢造勋,刘国栋,魏梦华.等.中国辽南地区地壳与上地幔介质的横向不均匀性与海城7.3级地震[J].地震学报,1990,12(4):367-378. Lu Zaoxun,Liu Guodong,Wei Menghua,et al.Lateral Inhomogeneity of Crust and Upper Mantle in South Liaoning,China and Its Relationship with the M7.3 Haicheng Earthquake[J].Acta Seismologica Sinica,1990,12(4):367-378.
[13] 郑确,刘财,田有.辽宁海城及其邻区地震b值空间分布特征[J].吉林大学学报(地球科学版),2018,48(3):922-933. doi:10.13278/j.cnki.jjuese.20170150. Zheng Que,Liu Cai,Tian You. Spatial Distribution of b-Value in Haicheng Region,Liaoning Province[J].Journal of Jilin University(Earth Science Edition),2018,48(3):922-933.doi:10.13278/j.cnki.jjuese.20170150.
[14] 廖武林,张丽芬,李井冈,等.弱震区弱活动断裂的地震危险性评价:以丹江断裂为例[J].大地测量与地球动力学,2017,37(11):1131-1135. Liao Wulin,Zhang Lifen,Li Jinggang,et al. Assessment of Seismic Risk of Weakly Active Faults in Weak Seismic Background Region:Taking Danjiang Fault as an Example[J].Journal of Geodesy and Geodynamics,2017,37(11):1131-1135.
[15] 邓起东,闻学泽.活动构造研究:历史、进展与建议[J].地震地质,2008,30(1):1-30. Deng Qidong,Wen Xueze. A Review on the Research of Active Tectonics History,Progress and Suggestions[J]. Seismology and Geology,2008,30(1):1-30.
[16] 闻学泽.鲜水河断裂带未来三十年内地震复发的条件概率[J].中国地震,1990,6(4):8-16. Wen Xueze.Conditional Probabilities for the Recurrence of Earthquakes on the Xianshuihe Fault Zone Within the Coming Three Decades[J].Earthquake Research in China,1990,6(4):8-16.
[17] 张培震,毛风英.活动断裂定量研究与中长期地震危险性概率评价[C]//中国地震局地质研究所.活动断裂研究(5).北京:地震出版社,1996:12-31. Zhang Peizhen,Mao Fengying.Active Faulting and Fault Specific Probabilistic Seismic Hazard Assessment[C]//Institute of Geology,SSB.Research on Active Fault(5).Beijing:Seismological Press,1996:12-31.
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