[1] 尹迪, 董培育, 曹建玲, 等. 川滇地区地震危险性数值分析[J]. 地球物理学报, 2022, 65(5): 1612-1627. YIN Di, DONG Pei-yu, CAO Jian-ling, et al. Numerical analysis of the seismic hazard in Sichuan-Yunnan region[J]. Chinese Journal of Geophysics, 2022, 65(5): 1612-1627 (in Chinese). [2] 秦四清, 薛雷, 徐锡伟, 等. 川滇地区未来强震预测与汶川MW7.9级地震孕震过程分析[J]. 地球物理学报, 2010, 53(11): 2639-2650. QIN Si-qing, XUE Lei, XU Xi-wei, et al. A prediction of strong earthquakes in the Sichuan and Yunnan regions and analysis of the seismogenic process of the Wenchuan MW7.9 earthquake[J]. Chinese Journal of Geophysics, 2010, 53(11): 2639-2650 (in Chinese). [3] Wang E, Burchfiel B C, Royden L H, et al. Late Cenozoic Xianshuihe-Xiaojiang, Red River, and Dali fault systems of southwestern Sichuan and central Yunnan, China[M]. Washington: Geological Society of America, 1998. [4] 张培震, 邓起东, 张国民, 等. 中国大陆的强震活动与活动地块[J]. 中国科学(D辑), 2003, 33(S1): 12-20. ZHANG Pei-zhen, DENG Qi-dong, ZHANG Guo-min, et al. Strong earthquake activities and active blocks in China mainland[J]. Science in China (Series D), 2003, 33(S1): 12-20 (in Chinese). [5] Toda S, Enescu B. Rate/state Coulomb stress transfer model for the CSEP Japan seismicity forecast[J]. Earth, Planets and Space, 2011, 63(2): 171-185. [6] Stein R S, Lisowski M. The 1979 Homestead Valley earthquake sequence, California: Control of aftershocks and postseismic deformation[J]. Journal of Geophysical Research: Solid Earth, 1983, 88(B8): 6477-6490. [7] Stein R S, King G C P, Lin J. Stress triggering of the 1994 M=6.7 Northridge, California, earthquake by its predecessors[J]. Science, 1994, 265(5177): 1432-1435. [8] 万永革, 吴忠良, 周公威, 等. 地震应力触发研究[J]. 地震学报, 2002, 24(5): 533-551. WAN Yong-ge, WU Zhong-liang, ZHOU Gong-wei, et al. Research on seismic stress triggering[J]. Acta Seismologica Sinica, 2002, 24(5): 533-551 (in Chinese). [9] 石耀霖. 关于应力触发和应力影概念在地震预报中应用的一些思考[J]. 地震, 2001, 21(3): 1-7. SHI Yao-lin. Stress triggers and stress shadows: How to apply these concepts to earthquake prediction[J]. Earthquake, 2001, 21(3): 1-7 (in Chinese). [10] Parsons T, Ji C, Kirby E. Stress changes from the 2008 Wenchuan earthquake and increased hazard in the Sichuan basin[J]. Nature, 2008, 454(7203): 509-510. [11] Parsons T, Ji C, Kirby E. Evaluating a prospective fault-based stress-transfer forecast for the M7.9 Wenchuan earthquake region, 15 years later[J]. The Seismic Record, 2023, 3(3): 218-227. [12] 解朝娣, 朱元清, LEI X, 等. MS8.0汶川地震产生的应力变化空间分布及其对地震活动性的影响[J]. 中国科学: 地球科学, 2010, 40(6): 688-698. XIE Chao-di, ZHU Yuan-qing, LEI X, et al. Pattern of stress change and its effect on seismicity rate caused by MS8.0 Wenchuan earthquake[J]. Science China: Earth Sciences, 2010, 40(6): 688-698 (in Chinese). [13] 刘盼, 李平恩, 廖力. 从库仑破裂应力和余震分布角度探讨汶川地震和芦山地震的关系[J]. 震灾防御技术, 2017, 12(1): 40-55. LIU Pan, LI Ping-en, LIAO Li. Discussion of relationship between the Wenchuan earthquake and Lushan earthquake from the viewpoint of Coulomb failure stress change and spatial distribution of aftershocks[J]. Technology for Earthquake Disaster Prevention, 2017, 12(1): 40-55 (in Chinese). [14] 单斌, 熊熊, 郑勇, 等. 2013年芦山地震导致的周边断层应力变化及其与2008年汶川地震的关系[J]. 中国科学: 地球科学, 2013, 43(6): 1002-1009. SHAN Bin, XIONG Xiong, ZHENG Yong, et al. Stress changes on major faults caused by 2013 Lushan earthquake, and its relationship with 2008 Wenchuan earthquake[J]. Science China: Earth Sciences, 2013, 43(6): 1002-1009 (in Chinese). [15] 单斌, 郑勇, 刘成利, 等. 2017年M7.0级九寨沟地震同震库仑应力变化及其与2008年汶川地震的关系[J]. 中国科学: 地球科学, 2017, 47(11): 1329-1338. SHAN Bin, ZHENG Yong, LIU Cheng-li, et al. Coseismic Coulomb failure stress changes caused by the 2017 M7.0 Jiuzhaigou earthquake, and its relationship with the 2008 Wenchuan earthquake[J]. Science China: Earth Sciences, 2017, 47(11): 1329-1338 (in Chinese). [16] 王成虎, 宋成科, 郭启良, 等. 利用原地应力实测资料分析芦山地震震前浅部地壳应力积累[J]. 地球物理学报, 2014, 57(1): 102-114. WANG Chen-hu, SONG Cheng-ke, GUO Qi-liang, et al. Stress build-up in the shallow crust before the Lushan earthquake based on the in-situ stress measurements[J]. Chinese Journal of Geophysics, 2014, 57(1): 102-114 (in Chinese). [17] 盛书中, 万永革, 徐锡伟, 等. 用大量地震震源机制解检验2008年汶川地震对后续地震的触发作用[J]. 地球物理学报, 2019, 62(12): 4588-4603. SHENG Shu-zhong, WAN Yong-ge, XU Xi-wei, et al. Using a large number of focal mechanism solutions to examine the Coulomb stress triggering effect of the 2008 Wenchuan earthquake on its subsequent earthquakes[J]. Chinese Journal of Geophysics, 2019, 62(12): 4588-4603 (in Chinese). [18] 徐晶, 邵志刚, 刘静, 等. 川滇菱形块体东边界库仑应力演化及强震发生概率估算[J]. 地球物理学报, 2019, 62(11): 4189-4213. XU Jing, SHAO Zhi-gang, LIU Jing, et al. Coulomb stress evolution and future earthquake probability along the eastern boundary of the Sichuan-Yunnan block[J]. Chinese Journal of Geophysics, 2019, 62(11): 4189-4213 (in Chinese). [19] Dieterich J. A constitutive law for rate of earthquake production and its application to earthquake clustering[J]. Journal of Geophysical Research: Solid Earth, 1994, 99(B2): 2601-2618. [20] 解孟雨, 史保平. 数值模拟静态应力扰动下的断层失稳: 结果分析兼与Dieterich模型和Coulomb模型的对比[J]. 地球物理学报, 2016, 59(2): 593-605. XIE Meng-yu, SHI Bao-ping. Numerical simulation of fault instability due to an arbitrary static stress perturbation: A comparison with the Dieterich model and Coulomb failure model[J]. Chinese Journal of Geophysics, 2016, 59(2): 593-605 (in Chinese). [21] 徐晶. 鲜水河断裂带的构造应力加载与强震间相互影响研究[D]. 北京: 中国地震局地震预测研究所, 2013. XU Jing. Tectonic loading and the interaction among the large earthquakes on Xianshuihe fault[D]. Beijing: Institute of Earthquake Science, China Earthquake Administration, 2013 (in Chinese). [22] Catalli F, Cocco M, Console R, et al. Modeling seismicity rate changes during the 1997 Umbria-Marche sequence (central Italy) through a rate and state dependent model[J]. Journal of Geophysical Research: Solid Earth, 2008, 113(B11): B11301. [23] 张国民, 汪素云, 李丽, 等. 中国大陆地震震源深度及其构造含义[J]. 科学通报, 2002, 47(9): 663-668. ZHANG Guo-min, WANG Su-yun, LI Li, et al. The focal depths and tectonic implication of continental earthquakes in China[J]. Chinese Science Bulletin, 2002, 47(9): 663-668 (in Chinese). [24] Toda S, Stein R S, Richards-Dinger K, et al. Forecasting the evolution of seismicity in southern California: Animations built on earthquake stress transfer[J]. Journal of Geophysical Research: Solid Earth, 2005, 110(B5): B05S16. [25] 邵志刚, 周龙泉, 蒋长胜, 等. 2008年汶川MS8.0地震对周边断层地震活动的影响[J]. 地球物理学报, 2010, 53(8): 1784-1795. SHAO Zhi-gang, ZHOU Long-quan, JIANG Chang-sheng, et al. The impact of Wenchuan MS8.0 earthquake on the seismic activity of surrounding faults[J]. Chinese Journal of Geophysics, 2010, 53(8): 1784-1795 (in Chinese). [26] Okada Y. Internal deformation due to shear and tensile faults in a half-space[J]. Bulletin of the Seismological Society of America, 1992, 82(2): 1018-1040. [27] King G C P, Stein R S, Lin J. Static stress changes and the triggering of earthquakes[J]. Bulletin of the Seismological Society of America, 1994, 84(3): 935-953. [28] 王辉, 曹建玲, 荆燕, 等. 川滇地区强震活动前b值的时空分布特征[J]. 地震地质, 2012, 34(3): 531-543. WANG Hui, CAO Jian-ling, JING Yan, et al. Spatiotemporal pattern of b-value before major earthquakes in the Sichuan-Yunnan region[J]. Seismology and Geology, 2012, 34(3): 531-543 (in Chinese). [29] Grünthal G. The up-dated earthquake catalogue for the German Democratic Republic and adjacent areas-statistical data characteristics and conclusions for hazard assessment[C]. In 3rd International Symposium on the Analysis of Seismicity and on Seismic Risk, Prague, 1985. [31] Wells D L, Coppersmith K J. New empirical relationships among magnitude, rupture length, rupture width, rupture area, and surface displacement[J]. Bulletin of the Seismological Society of America, 1994, 84(4): 974-1002. [32] Terakawa T, Matsu’ura M. CMT data inversion using a Bayesian information criterion to estimate seismogenic stress fields[J]. Geophysical Journal International, 2008, 172(2): 674-685. [33] 李玉江, 石富强, 张辉, 等. 川滇地区主要断裂带上的库仑应力变化及其对地震危险性的指示[J]. 地震地质, 2020, 42(2): 526-546. LI Yu-jiang, SHI Fu-qiang, ZHANG Hui, et al. Coulomb stress change on active faults in Sichuan-Yunnan region and its implications for seismic hazard[J]. Seismology and Geology, 2020, 42(2): 526-546 (in Chinese). [34] Lei X L, Wang Z W, Su J R. The December 2018 ML5.7 and January 2019 ML5.3 earthquakes in south Sichuan basin induced by shale gas hydraulic fracturing[J]. Seismological Research Letters, 2019, 90(3): 1099-1110. [35] 杨唯佳, 周艳杰, 姜恩元, 等. 2019年长宁MS6.0地震周边区域速度与P波各向异性成像研究[J]. 地震, 2023, 43(4): 1-20. YANG Wei-jia, ZHOU Yan-jie, JIANG En-yuan, et al. Tomographic study on the velocity structures and P wave azimuthal anisotropy of the 2019 Changning MS6.0 earthquake surrounding area[J]. Earthquake, 2023, 43(4): 1-20 (in Chinese). [36] 杨文. 巴颜喀拉块体东北缘速度结构及地震危险性[D]. 北京: 中国地震局地球物理研究所, 2022. YANG Wen. The velocity structure and seismic hazard of Northeastern Bayan Har block[D]. Beijing: Institute of Geophysics, China Earthquake Administration, 2022 (in Chinese). [37] 孟昭彤, 刘静伟, 谢卓娟, 等. b值的时空分布特征与地震危险性的关联分析[J]. 地球物理学进展, 2021, 36(1): 30-38. MENG Zhao-tong, LIU Jing-wei, XIE Zhuo-juan, et al. Analysis of the correlation between the temporal-spatial distribution of b-value and seismic hazard: A review[J]. Progress in Geophysics, 2021, 36(1): 30-38 (in Chinese). [38] Toda S, Lin J, Meghraoui M, et al. 12 May 2008 M=7.9 Wenchuan, China, earthquake calculated to increase failure stress and seismicity rate on three major fault systems[J]. Geophysical Research Letters, 2008, 35(17): L17305. [39] 刘小梅, 吴晶, 梁春涛, 等. 龙门山断裂带最新地震活动特征及其意义[J]. 地球物理学报, 2019, 62(4): 1312-1322. LIU Xiao-mei, WU Jing, LIANG Chun-tao, et al. The latest seismicity characteristics and significance in Longmenshan fault zone[J]. Chinese Journal of Geophysics, 2019, 62(4): 1312-1322 (in Chinese). [40] Swets J A. The relative operating characteristic in psychology: A technique for isolating effects of response bias finds wide use in the study of perception and cognition[J]. Science, 1973, 182(4116): 990-1000. [41] 孙尧, 吴中海, 安美建, 等. 川滇地区主要活动断裂的活动特征及其近十年的地震活动性[J]. 地震工程学报, 2014, 36(2): 320-330. SUN Yao, WU Zhong-hai, AN Mei-jian, et al. Activity characteristics of primary active faults in Yunnan-Sichuan area and their seismic activity in the past[J]. China Earthquake Engineering Journal, 2014, 36(2): 320-330 (in Chinese). [42] 程佳, 徐锡伟, 陈桂华. 基于特大地震发生率的川滇地区地震危险性预测新模型[J]. 地球物理学报, 2020, 63(3): 1170-1182. CHENG Jia, XU Xi-wei, CHEN Gui-hua. A new prediction model of seismic hazard for the Sichuan-Yunnan region based on the occurrence rate of large earthquakes[J]. Chinese Journal of Geophysics, 2020, 63(3): 1170-1182 (in Chinese). |