[1] 何文贵, 郑文俊, 王爱国, 等. 2013. 临潭-宕昌断裂新活动特征与岷县漳县MS6.6地震关系研究[J]. 地震工程学报, 35(4): 751—760. HE Wen-gui, ZHENG Wen-jun, WANG Ai-guo, et al. 2013. New activities of Lintan-Dangchang Fault and its relations to Minxian-Zhangxian MS6.6 earthquake[J]. China Earthquake Engineering Journal, 35(4): 751—760(in Chinese). [2] 何文贵, 周志宇, 马尔曼, 等. 2006. 2004年9月7日岷县-卓尼5.0级地震的基本特征和地质背景研究[J]. 地震研究, 29(3): 57—62. HE Wen-gui, ZHOU Zhi-yu, MA Er-man, et al. 2006. The research on principal feature and geologic background of Minxian-Zhuoni MS5. 0 earthquake on Sep. 9, 2004[J]. Journal of Seismological Research, 29(3): 57—62(in Chinese). [3] 黄建平, 倪四道, 傅容珊, 等. 2009. 综合近震及远震波形反演2006文安地震(MW5.1)的震源机制解[J]. 地球物理学报, 52(1): 120—130. HUANG Jian-ping, NI Si-dao, FU Rong-shan, et al. 2009. Source mechanism of the 2006 MW5.1 Wen' an earthquake determined from a joint inversion of local and teleseismic broadband waveform data[J]. Chinese Journal of Geophysics, 52(1): 120—130(in Chinese). [4] 黄媛, 吴建平, 张天中, 等. 2008. 汶川8.0级大地震及其余震序列重定位研究[J]. 中国科学(D辑), 38(10): 1242—1249. HUANG Yuan, WU Jian-ping, ZHANG Tian-zhong, et al. 2008. Relocation of the MS8.0 Wenchuan earthquake and its aftershock sequence[J]. Science in China(Ser D), 38(10): 1242—1249(in Chinese). [5] 李圣强, 陈棋福, 赵里, 等. 2013. 2011年5月中国东北MW5.7深震的非同寻常震源机制: 区域波形反演与成因探讨[J]. 地球物理学报, 56(9): 2959—2970. LI Sheng-qiang, CHEN Qi-fu, ZHAO Li, et al. 2013. Anomalous focal mechanism of the May 2011 MW5.7 deep earthquake in northeastern China: Regional waveform inversion and possible mechanism[J]. Chinese Journal of Geophysics, 56(9): 2959—2970(in Chinese). [6] 王清东, 朱良保, 苏有锦, 等. 2015. 2012年9月7日彝良地震及余震序列双差定位研究[J]. 地球物理学报, 58(9): 3205—3221. doi: 10.6038 /cjg20150916. WANG Qing-dong, ZHU Liang-bao, SU You-jin, et al. 2015. Double difference relocation of the 7 September 2012 Yiliang earthquake and its aftershock sequence[J]. Chinese Journal of Geophysics, 58(9): 3205—3221(in Chinese). [7] 许向彤, 许忠淮, 张东宁. 1995. 求震源机制P波初动解的格点尝试概率法[J]. 地震地磁观测与研究, 16(4): 34—42. XU Xiang-tong, XU Zhong-huai, ZHANG Dong-ning.1995. A probabilistic grid test method of determining earthquake focal mechanisms using P-wave onset polarity data[J]. Seismological and Geomagnetic Observation and Research, 16(4): 34—42(in Chinese). [8] 杨智娴, 陈运泰, 郑月军, 等. 2003. 双差地震定位法在中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. The application of double difference earthquake location method in precise positioning of earthquakes in the central and western regions in China[J]. Science in China(Ser D), 33(S1): 129—134(in Chinese). [9] 易桂喜, 龙锋, 闻学泽, 等. 2015. 2014年11月22日康定M6.3地震序列发震构造分析[J]. 地球物理学报, 58(4): 1205—1219. YI Gui-xi, LONG Feng, WEN Xue-ze, et al. 2015. Seismogenic structure of the M6.3 Kangding earthquake sequence on 22 Nov. 2014, southwestern China[J]. Chinese Journal of Geophysics, 58(4): 1205—1219(in Chinese). [10] 袁道阳. 2003. 青藏高原东北缘晚新生代以来的构造变形特征与时空演化 [D]. 北京: 中国地震局地质研究所: 137—145. YUAN Dao-yang.2003. Tectonic deformation features and space-time evolution in northeastern margin of the Qinghai-Tibetan plateau since the late Cenozoic time [D]. Institute of Geology, China Earthquake Administration, Beijing: 137—145(in Chinese). [11] 袁道阳, 张培震, 刘百篪, 等. 2004. 青藏高原东北缘晚第四纪活动构造的几何图像与构造转换[J]. 地质学报, 78(2): 270—278. YUAN Dao-yang, ZHANG Pei-zhen, LIU Bai-chi, et al. 2004. Geometrical imagery and tectonic transformation of late Quaternary active tectonics in northeastern margin of Qinghai-Xizang plateau[J]. Acta Geologica Sinica, 78(2): 270—278(in Chinese). [12] 张广伟, 雷建设. 2015. 2011年云南腾冲5.2级双震发震机理[J]. 地球物理学报, 58(4): 1194—1204. ZHANG Guang-wei, LEI Jian-she.2015. Mechanism of the 2011 Tengchong, Yunnan, MS5.2 double earthquakes[J]. Chinese Journal of Geophysics, 58(4): 1194—1204(in Chinese). [13] 郑文俊, 刘小凤, 赵广堃, 等. 2005. 2003年11月13日甘肃岷县MS5. 2地震基本特征[J]. 西北地震学报, 27(1): 61—65. ZHENG Wen-jun, LIU Xiao-feng, ZHAO Guang-kun, et al. 2005. Principal features of Minxian MS5.2 earthquake in Gansu Province, on Nov. 13, 2003[J]. Northwestern Seismological Journal, 27(1): 61—65(in Chinese). [14] 郑文俊, 雷中生, 袁道阳, 等. 2007a. 1573年甘肃岷县地震史料考证与发震构造探讨[J]. 中国地震, 23(1): 75—83. ZHENG Wen-jun, LEI Zhong-sheng, YUAN Dao-yang, et al. 2007a. Textual research on the historical data of the 1573AD Minxian earthquake in Gansu Province and discussion on its seismogenic structure[J]. Earthquake Research in China, 23(1): 75—83(in Chinese). [15] 郑文俊, 雷中生, 袁道阳, 等. 2007b. 1837年甘肃岷县北6级地震考证与发震构造分析[J]. 地震, 27(1): 120—130. ZHENG Wen-jun, LEI Zhong-sheng, YUAN Dao-yang, et al. 2007b. Structural research on the 1837 northern Minxian M6 earthquake in Gansu Province and its causative structure[J]. Earthquake, 27(1): 120—130(in Chinese). [16] 郑文俊, 闵伟, 何文贵, 等. 2013a. 2013 年甘肃岷县漳县6.6级地震震害分布特征及发震构造分析[J]. 地震地质, 35(3): 604—615. doi: 10.3969/j.issn.0253-4967.2013.03.014. ZHENG Wen-jun, MIN Wei, HE Wen-gui, et al. 2013a. Distribution of the related disaster and the causative tectonic of the Minxian-Zhanxian MS6.6 earthquake on July 22, 2013, Gansu, China[J]. Seismology and Geology, 35(3): 604—615(in Chinese). [17] 郑文俊, 袁道阳, 何文贵, 等. 2013b. 甘肃东南地区构造活动与2013年岷县-漳县MS6.6地震孕震机制[J]. 地球物理学报, 56(12): 4058—4071. ZHENG Wen-jun, YUAN Dao-yang, HE Wen-gu, et al. 2013b. Geometric pattern and active tectonics in southeastern Gansu Province: Discussion on seismogenic mechanism of the Minxian-Zhangxian MS6.6 earthquake on July 22, 2013[J]. Chinese Journal of Geophysics, 56(12): 4058—4071(in Chinese). [18] 郑文俊, 袁道阳, 张培震, 等. 2016. 青藏高原东北缘活动构造几何图像、 运动转换与高原扩展[J]. 第四纪研究, 36(4): 1—14. ZHENG Wen-jun, YUAN Dao-yang, ZHANG Pei-zhen, et al. 2016. Tectonic geometry and kinematic dissipation of the active faults in the northeastern Tibetan plateau and their implications for understanding northeastward growth of the plateau[J]. Quaternary Sciences, 36(4): 1—14(in Chinese). [19] 周民都, 张元生, 石雅鏐, 等. 2006. 青藏高原东北缘地壳三维速度结构[J]. 地球物理学进展, 21(1): 127—134. ZHOU Min-du, ZHANG Yuan-sheng, SHI Ya-liu, et al. 2006. Three dimensional crustal velocity structure in the northeastern margin of the Qinghai-Tibetan plateau[J]. Progress in Geophysics, 21(1): 127—134(in Chinese). [20] Julian B R, Miller A D, Foulger G R.1998. Non-double-couple earthquakes theory[J]. Reviews of Geophysics, 36(4): 525—549. [21] Klein F W.1978. Hypocenter location program HYPOINVERSE part I: Users guide to versions 1, 2, 3 and 4 [R]. The United States Geological Survey Open-File Report: 78-694. [22] Waldhauser F, Ellsworth W L.2000. A double-difference earthquake location algorithm: Method and application to the Northern Hayward Fault, California[J]. Bulletin of the Seismological Society of America, 90(6): 1353—1368. [23] Waldhauser F, Schaff D P.2008. Large-scale-relocation of two decades of Northern California seismicity using cross-correlation and double-difference methods[J]. Journal of Geophysical Research, 113: B08311. [24] Zhu L P, Helmberger D V.1996. Advancement in source estimation techniques using broadband regional seismogram[J]. Bulletin of the Seismological Society of America, 86(5): 1634—1641. [25] Zhu L P, Ben-Zion Y.2013. Parametrization of general seismic potency and moment tensors for source inversion of seismic waveform data[J]. Geophysical Journal International, 194(2): 839—843. |