[1] 卜玉菲, 万永革, 张元生. 2013. 甘肃及邻近地区的构造应力场[J]. 地震地质, 35(4): 833—841. doi: 10.3969/j.issn.0253-4967.2013.04.012. BU Yu-fei, WAN Yong-ge, ZHANG Yuan-sheng. 2013. Tectonic stress analysis in Gansu and its adjacent areas[J]. Seismology and Geology, 35(4): 833—841(in Chinese). [2] 才树华, 侯珍清, 贾云鸿, 等. 1992. 1990年甘肃天祝-景泰6.2级地震烈度及发震构造的探讨[J]. 西北地震学报, 14(S1): 28—32. CAI Shu-hua, HOU Zhen-qing, JIA Yun-hong, et al. 1992. The study on seismic intensity and seismogenic structure of Tianzhu-Jingtai M6.2 earthquake in 1990[J]. Northwestern Seismological Journal, 14(S1): 28—32(in Chinese). [3] 陈军营, 杜学彬, 谭大诚, 等. 2009. 老虎山断裂带大地电磁地震监测研究[J]. 地震, 29(3): 79—85. CHEN Jun-ying, DU Xue-bin, TAN Da-cheng, et al. 2009. Magnetotelluric monitoring of earthquakes in the Laohushan fault zone, Gansu Province[J]. Earthquake, 29(3): 79—85(in Chinese). [4] 崔华伟, 万永革, 黄骥超, 等. 2019. 帕米尔—兴都库什地区构造应力场反演及拆离板片应力形因子特征研究[J]. 地球物理学报, 62(5): 1633—1649. doi: 10.6038/cjg2019M0202. CUI Hua-wei, WAN Yong-ge, HUANG Ji-chao, et al. 2019. Inversion for the tectonic stress field and the characteristic of the stress shape factor of the detachment slab in the Pamir-Hindu Kush area[J]. Chinese Journal of Geophysics, 62(5): 1633—1649(in Chinese). [5] 邓文泽, 陈九辉, 郭飚, 等. 2014. 龙门山断裂带精细速度结构的双差层析成像研究[J]. 地球物理学报, 57(4): 1101—1110. doi: 10.6038/cjg2014408. DENG Wen-ze, CHEN Jiu-hui, GUO Biao, et al. 2014. Fine velocity structure of the Longmenshan fault zone by double-difference tomography[J]. Chinese Journal of Geophysics, 57(4): 1101—1110(in Chinese). [6] 韩晓明, 张帆, 陈立峰, 等. 2018. 2013年通辽5.3级地震及余震的破裂特征讨论[J]. 地震地质, 40(3): 685—695. doi: 10.3969/j.issn.0253-4967.2018.03.013. HAN Xiao-ming, ZHANG Fan, CHEN Li-feng, et al. 2018. Discussion on rupture characteristics of the 2013 Tongliao M5.3 earthquake and its aftershocks[J]. Seismology and Geology, 40(3): 685—695(in Chinese). [7] 何文贵, 刘百篪, 吕太乙, 等. 1994. 老虎山断裂带的分段性研究[J]. 西北地震学报, 16(3): 66—72. HE Wen-gui, LIU Bai-chi, LÜ Tai-yi, et al. 1994. Study on the segmentation of Laohushan fault zone[J]. Northwestern Seismological Journal, 16(3): 66—72(in Chinese). [8] 黄媛, 杨建思, 张天中. 2006. 2003年新疆巴楚-伽师地震序列的双差法重新定位研究[J]. 地球物理学报, 49(1): 162—169. HUANG Yuan, YANG Jian-si, ZHANG Tian-zhong. 2006. Relocation of the Bachu-Jiashi, Xinjiang earthquake sequence in 2003 using the double-difference location algorithm[J]. Chinese Journal of Geophysics, 49(1): 162—169(in Chinese). [9] 李峰, 张效亮, 贾启超, 等. 2017. 利用精定位小震资料反演1933年叠溪M7 1/2地震震源断层面参数[J]. 震灾防御技术, 12(3): 565—573. doi: 10.11899/zzfy20170313. LI Feng, ZHANG Xiao-liang, JIA Qi-chao, et al. 2017. The seismogenic fault plane parameters inversion of the 1933 M7 1/2 Diexi earthquake using precisely located small earthquakes[J]. Technology for Earthquake Disaster Prevention, 12(3): 565—573(in Chinese). [10] 李松林, 张先康, 张成科, 等. 2002. 玛沁—兰州—靖边地震测深剖面地壳速度结构的初步研究[J]. 地球物理学报, 45(2): 210—217. LI Song-lin, ZHANG Xian-kang, ZHANG Cheng-ke, et al. 2002. A preliminary study on the crustal velocity structure of Maqin-Lanzhou-Jingbian by means of deep seismic sounding profile[J]. Chinese Journal of Geophysics, 45(2): 210—217(in Chinese). [11] 林群, 刘特培, 王小娜, 等. 2018. 1969年阳江MS6.4地震发震断层面参数的确定[J]. 中国地震, 34(4): 745—753. LIN Qun, LIU Te-pei, WANG Xiao-na, et al. 2018. Determination of the seismogenic structure parameters of the Yangjiang MS6.4 earthquake in 1969[J]. Earthquake Research in China, 34(4): 745—753(in Chinese). [12] 刘百篪, 吕太乙, 袁道阳, 等. 1994. 景泰老虎山活动断裂地区的第四纪地层的划分与对比研究[J]. 西北地震学报, 16(4): 54—62. LIU Bai-chi, LÜ Tai-yi, YUAN Dao-yang, et al. 1994. Study on the division and correlation of Quaternary strata in Laohushan active fault area, Jingtai County, Gansu[J]. Northwestern Seismological Journal, 16(4): 54—62(in Chinese). [13] 刘白云, 袁道阳, 张波, 等. 2012. 1879年武都南8级大地震断层面参数和滑动性质的厘定[J]. 地震地质, 34(3): 415—424. LIU Bai-yun, YUAN Dao-yang, ZHANG Bo, et al. 2012. Determination of fault parameters and sliding behavior of the 1879 southern Wudu M8.0 earthquake[J]. Seismology and Geology, 34(3): 415—424(in Chinese). [14] 刘白云, 曾文浩, 袁道阳, 等. 2014. 1954年腾格里沙漠北7级地震断层面参数和滑动性质研究[J]. 地震工程学报, 36(3): 622—627. doi: 10.3969/j.issn.1000-0844.2014.03.0622. LIU Bai-yun, ZENG Wen-hao, YUAN Dao-yang, et al. 2014. Fault parameter and sliding behavior determination of the 1954 northern Tenggeli desert M7.0 earthquake[J]. China Earthquake Engineering Journal, 36(3): 622—627(in Chinese). [15] 刘白云, 曾文浩, 袁道阳, 等. 2015. 1927年古浪8级大地震断层面参数和滑动性质[J]. 地震地质, 37(3): 818—828. doi: 103969/j.issn.0253-4967.2015.03.012. LIU Bai-yun, ZENG Wen-hao, YUAN Dao-yang, et al. 2015. The research on fault parameter and sliding behavior of the 1927 Gulang M8.0 earthquake[J]. Seismology and Geology, 37(3): 818—828(in Chinese). [16] 刘金瑞, 任治坤, 张会平, 等. 2018. 海原断裂带老虎山段晚第四纪滑动速率精确厘定与讨论[J]. 地球物理学报, 61(4): 1281—1297. doi: 10.6038/cjg2018L0364. LIU Jin-rui, REN Zhi-kun, ZHANG Hui-ping, et al. 2018. Late Quaternary slip rate of the Laohushan Fault within the Haiyuan fault zone and its tectonic implications[J]. Chinese Journal of Geophysics, 61(4): 1281—1297(in Chinese). [17] 刘启元, 陈九辉, 李顺成, 等. 2008. 汶川MS8.0地震: 川西流动地震台阵观测数据的初步分析[J]. 地震地质, 30(3): 584—593. LIU Qi-yuan, CHEN Jiu-hui, LI Shun-cheng, et al. 2008. The Wenchuan MS8.0 earthquake: Preliminary results from the western Sichuan mobile seismic array observations[J]. Seismology and Geology, 30(3): 584—593(in Chinese). [18] 刘小凤, 袁道阳, 刘百篪, 等. 1994. 老虎山活动断裂研究[J]. 华南地震, 14(4): 9—16. LIU Xiao-feng, YUAN Dao-yang, LIU Bai-chi, et al. 1994. The research on the Laohushan active fault[J]. South China Journal of Seismology, 14(4): 9—16(in Chinese). [19] 荣代潞, 李亚荣, 刘旭宙. 2001. 2000年6月6日景泰5.9级地震的2次破裂研究[J]. 地震地磁观测与研究, 22(3): 1—6. RONG Dai-lu, LI Ya-rong, LIU Xu-zhou. 2001. Study on the source process of Jingtai earthquake(MS=5.9, June 6, 2000)[J]. Seismological and Geomagnetic Observation and Research, 22(3): 1—6(in Chinese). [20] 石富强, 邵志刚, 占伟, 等. 2018. 青藏高原东北缘活动断裂剪切模量及应力状态数值模拟[J]. 地球物理学报, 61(9): 3651—3663. doi: 10.6038/cjg2018L0631. SHI Fu-qiang, SHAO Zhi-gang, ZHAN Wei, et al. 2018. Numerical modeling of the shear modulus and stress state of active faults in the northeastern margin of the Tibetan plateau[J]. Chinese Journal of Geophysics, 61(9): 3651—3663(in Chinese). [21] 孙赫, 徐晶, 邵志刚. 2017. 基于InSAR的海原-老虎山-毛毛山断裂带现今地壳形变特征[J]. 地震, 37(2): 78—85. SUN He, XU Jin, SHAO Zhi-gang. 2017. Present-day crustal deformation of the Haiyuan-Laohushan-Maomaoshan Fault based on InSAR[J]. Earthquake, 37(2): 78—85(in Chinese). [22] 太龄雪, 高原, 刘庚, 等. 2015. 利用中国地震科学台阵研究青藏高原东南缘地壳各向异性: 第一期观测资料的剪切波分裂特征[J]. 地球物理学报, 58(11): 4079—4091. doi: 10.6038/cjg20151116. TAI Ling-xue, GAO Yuan, LIU Geng, et al. 2015. Crustal seismic anisotropy in the southeastern margin of Tibetan plateau by ChinaArray data: Shear-wave splitting from temporary observations of the first phase[J]. Chinese Journal of Geophysics, 58(11): 4079—4091(in Chinese). [23] 万永革, 沈正康, 刁桂苓, 等. 2008. 利用小震分布和区域应力场确定大震断层面参数方法及其在唐山地震序列中的应用[J]. 地球物理学报, 51(3): 793—804. WAN Yong-ge, SHEN Zheng-kang, DIAO Gui-ling, et al. 2008. An algorithm of fault parameter determination using distribution of small earthquakes and parameters of regional stress field and its application to Tangshan earthquake sequence[J]. Chinese Journal of Geophysics, 51(3): 793—804(in Chinese). [24] 王书明, 林长佑, 陈军营. 2001. 景泰5.9级地震后大地电磁跟踪监测研究[J]. 西北地震学报, 23(3): 297—300. WANG Shu-ming, LIN Chang-you, CHEN Jun-ying. 2001. Magnetotelluric monitoring after the Jingtai MS5.9 earthquake[J]. Northwestern Seismological Journal, 23(3): 297—300(in Chinese). [25] 王鸣, 王培德. 1992. 1989年10月18日大同-阳高地震的震源机制和发震构造[J]. 地震学报, 14(4): 407—415. WANG Ming, WANG Pei-de. 1992. The mechanism and seismogenic structure of Datong-Yanggao earthquake which occurred on Oct 18, 1989[J]. Acta Seismologica Sinica, 14(4): 407—415(in Chinese). [26] 杨智娴, 陈运泰, 郑月军, 等. 2003. 双差地震定位法在我国中西部地区地震精确定位中的应用[J]. 中国科学(D辑), 33(S1): 129—134. YANG Zhi-xian, CHEN Yun-tai, ZHENG Yue-jun, et al. 2003. Relocation of earthquakes in central-western China using the double difference earthquake location algorithm[J]. Science in China(Ser D), 33(S1): 129—134(in Chinese). [27] 张艺, 高原. 2017. 中国地震科学台阵两期观测资料近场记录揭示的南北地震带地壳剪切波分裂特征[J]. 地球物理学报, 60(6): 2181—2199. doi: 10.6038/cjg20170613. ZHANG Yi, GAO Yuan. 2017. The characteristics of crustal shear-wave splitting in North-South seismic zone revealed by near field recordings of two observation periods of ChinaArray[J]. Chinese Journal of Geophysics, 60(6): 2181—2199(in Chinese). [28] 张国民, 汪素云, 李丽, 等. 2002. 中国大陆地震震源深度及其构造含义[J]. 科学通报, 47(9): 663—668. ZHANG Guo-min, WANG Su-yun, LI Li, et al. 2002. The focal depths and tectonic implication of continental earthquakes in China[J]. Chinese Science Bulletin, 47(9): 663—668(in Chinese). [29] 周民都. 2006. 青藏高原东北缘深地震测深研究成果回顾[J]. 西北地震学报, 28(2): 189—191. ZHOU Min-du. 2006. Review of study on the depth seismic sounding in the northeastern margin of Qinghai-Tibetan plateau[J]. Northwestern Seismological Journal, 28(2): 189—191(in Chinese). [30] 朱艾斓, 徐锡伟, 胡平, 等. 2005. 首都圈地区小震重新定位及其在地震构造研究中的应用[J]. 地质论评, 51(3): 268—274. ZHU Ai-lan, XU Xi-wei, HU Ping, et al. 2005. Relocation of small earthquakes in Beijing area and its implication to seismotectonics[J]. Geological Review, 51(3): 268—274(in Chinese). [31] Schaff D P, Bokelmann G H R, Beroza G C, et al. 2002. High-resolution image of Calaveras fault seismicity[J]. Journal of Geophysical Research: Solid Earth, 107(B9): ESE5-1—ESE5-16. [32] Waldhauser F, Ellsworth W L. 2002. Fault structure and mechanics of the Hayward Fault, California, from double-difference earthquake locations[J]. Journal of Geophysical Research: Solid Earth, 107(B3): 1—15. |