[1] 鲍亦冈, 刘振锋, 王世发, 等. 2001. 北京地质百年研究: 北京地区基础地质研究的历史与最新成果 [M]. 北京: 地质出版社. BAO Yi-gang, LIU Zhen-feng, WANG Shi-fa, et al. 2001. A Century of Geology in Beijing: History and Latest Achievements of Basic Geological Research in Beijing Area [M]. Geological Publishing House, Beijing(in Chinese). [2] 桂宝玲. 2011. 伸展盆地构造几何学、 运动学: 以渤海湾盆地廊固凹陷为例 [D]. 北京: 中国地质大学. GUI Bao-ling. 2011. The structural geometry and kinemics of extensional basin: An example from Langfang-Gu’an depression, Bohai Gulf Basin [D]. China University of Geosciences, Beijing(in Chinese). [3] 桂宝玲, 何登发, 闫福旺, 等. 2012. 大兴断层的三维几何学与运动学及其对廊固凹陷成因机制的约束[J]. 地学前缘, 19(5): 86—99. GUI Bao-ling, HE Deng-fa, YAN Fu-wang, et al. 2012. 3D geometry and kinematics of Daxing Fault: Its constraints on the origin of Langgu Depression, Bohaiwan Gulf Basin, China[J]. Earth Science Frontiers, 19(5): 86—99(in Chinese). [4] 何付兵. 2019. 南口-孙河断裂几何学、 运动学特征及与地裂缝关系研究 [D]. 北京: 中国地震局地质研究所. HE Fu-bing. 2019. Study on geometry and kinematics of the Nankou-Sunhe Fault and its relationship with ground fissures [D]. Institute of Geology, China Earthquake Administration, Beijing(in Chinese). [5] 何付兵, 白凌燕, 王继明, 等. 2013. 夏垫断裂带深部构造特征与第四纪活动性讨论[J]. 地震地质, 35(3): 490—505. doi: 10.3969/j.issn.0253-4967.2013.03.004. HE Fu-bing, BAI Ling-yan, WANG Ji-ming, et al. 2013. Deep structure and Quaternary activities of the Xiadian fault zone[J]. Seismology and Geology, 35(3): 490—505(in Chinese). [6] 胡惟. 2016. 郯庐断裂带渤海段新构造活动方式与深部背景 [D]. 合肥: 合肥工业大学. HU Wei. 2016. Neotectonic active modes and deep background of the Bohai segment of the Tanlu fault zone [D]. Hefei University of Technology, Hefei. [7] 嘉世旭, 张成科, 赵金仁, 等. 2009. 华北东北部裂陷盆地与燕山隆起地壳结构[J]. 地球物理学报, 52(1): 99—110. JIA Shi-xu, ZHANG Cheng-ke, ZHAO Jin-ren, et al. 2009. Crustal structure of the rift-depression basin and Yanshan uplift in the northeast part of North China[J]. Chinese Journal of Geophysics, 52(1): 99—110(in Chinese). [8] 李松林, 张先康, 宋占隆, 等. 2001. 多条人工地震测深剖面资料联合反演首都圈三维地壳结构[J]. 地球物理学报, 44(3): 360—368. LI Song-lin, ZHANG Xian-kang, SONG Zhan-long, et al. 2001. Three dimensional crustal structure of the capital area obtained by a joint inversion of DSS data from multiple profiles[J]. Chinese Journal of Geophysics, 44(3): 360—368(in Chinese). [9] 刘保金, 胡平, 孟勇奇, 等. 2009. 北京地区地壳精细结构的深地震反射剖面探测研究[J]. 地球物理学报, 52(9): 82—90. LIU Bao-jin, HU Ping, MENG Yong-qi, et al. 2009. Research on fine crustal structure using deep seismic reflection profile in Beijing region[J]. Chinese Journal of Geophysics, 52(9): 82—90(in Chinese). [10] 刘保金, 张先康, 陈颙, 等. 2011. 三河-平谷8.0级地震区地壳结构和活动断裂研究: 利用单次覆盖深反射和浅层地震剖面[J]. 地球物理学报, 54(5): 1251—1259. LIU Bao-jin, ZHANG Xian-kang, CHEN Yong, et al. 2011. Research on crustal structure and active fault in the Sanhe-Pinggu earthquake(M8.0)zone based on single-fold deep seismic reflection and shallow seismic reflection profiling[J]. Chinese Journal of Geophysics, 54(5): 1251—1259(in Chinese). [11] 刘国臣, 陆克政, 严俊君. 1996. 廊固凹陷构造特征及成因解析[J]. 地质论评, 42(S1): 83—88. LIU Guo-chen, LU Ke-zheng, YAN Jun-jun. 1996. The structural characteristics and origin of the Langfang-Gu’an hollow[J]. Geological Review, 42(S1): 83—88(in Chinese). [12] 齐诚, 赵大鹏, 陈颙, 等. 2006. 首都圈地区地壳P波和S波三维速度结构及其与大地震的关系[J]. 地球物理学报, 49(3): 805—815. QI Cheng, ZHAO Da-peng, CHEN Yong, et al. 2006. 3-D P and S wave velocity structures and their relationship to strong earthquakes in the Chinese capital region[J]. Chinese Journal of Geophysics, 49(3): 805—815(in Chinese). [13] 宋荣彩. 2006. 陆相断陷盆地层序地层学与隐蔽油气藏模式研究: 以廊固凹陷古近系为例 [D]. 成都: 成都理工大学. SONG Rong-cai. 2006. Sequence stratigraphy and subtle oil-gas pool mode research in continental rift-subsidence Basin: On the case of Langgu Depression, Plaleogene [D]. Chengdu University of Technology, Chengdu(in Chinese). [14] 王德功. 2000. 北京地区的地震与防震 [M]. 北京: 地质出版社. WANG De-gong. 2000. Earthquake and Earthquake Prevention in Beijing [M]. Geological Publishing House, Beijing(in Chinese). [15] 王化清. 1990. 固安凹陷的重力滑动构造[J]. 石油地球物理勘探, 25(1): 109—117. WANG Hua-qing. 1990. Gravity slumping structure in the Gu’an depression[J]. Oil Geophysical Prospecting, 25(1): 109—117(in Chinese). [16] 王建民, 张三. 2018. 鄂尔多斯盆地伊陕斜坡上的低幅度构造特征及成因探讨[J]. 地学前缘, 25(2): 246—253. WANG Jian-min, ZHANG San. 2018. Exploring the characteristics and genesis of low amplitude structures on the Yishaan Slope, Ordos Basin[J]. Earth Science Frontiers, 25(2): 246—253(in Chinese). [17] 徐杰, 高战武, 孙建宝, 等. 2001. 区域伸展体制下盆-山构造耦合关系的探讨: 以渤海湾盆地和太行山为例[J]. 地质学报, 75(2): 165—174. XU Jie, GAO Zhan-wu, SUN Jian-bao, et al. 2001. A preliminary study of the coupling relationship between basin and mountain in extensional environments: A case study of the Bohai Bay Basin and Taihang Mountains[J]. Acta Geologica Sinica, 75(2): 165—174(in Chinese). [18] 徐杰, 马宗晋, 邓起东, 等. 2004. 渤海中部渐新世以来强烈沉陷的区域构造条件[J]. 石油学报, 25(5): 11—16, 23. XU Jie, MA Zong-jin, DENG Qi-dong, et al. 2004. Regional tectonic conditions for intensive subsidence of the middle Bohai Sea since Oligocene[J]. Acta Petrolei Sinica, 25(5): 11—16, 23(in Chinese). [19] 徐杰, 宋长青, 楚全芝. 1998. 张家口-蓬莱断裂带地震构造特征的初步探讨[J]. 地震地质, 20(2): 146—154. XU Jie, SONG Chang-qing, CHU Quan-zhi. 1998. Preliminary study on the seismotectonic characters of the Zhangjiakou-Penglai fault zone[J]. Seismology and Geology, 20(2): 146—154(in Chinese). [20] 徐锡伟, 陈桂华, 于贵华, 等. 2014. 华北平原地区最新构造变动起始时间问题讨论: 以大厂凹陷为例[C]// 2014年中国地球科学联合学术年会(专题50): 华北克拉通演化与成矿论文集. 北京. XU Xi-wei, CHEN Gui-hua, YU Gui-hua, et al. 2014. A discussion on the initiation time of latest tectonic movement in the North China plain: A case study of the Dachang sag[C]//Proceedings of 2014 Annual Meeting of Chinese Geoscience Union(the 50th topic): North China Craton Evolution and Metallogenesis, Beijing. [21] 徐锡伟, 吴卫民, 张先康, 等. 2002. 首都圈地区地壳最新构造变动与地震 [M]. 北京: 科学出版社. XU Xi-wei, WU Wei-min, ZHANG Xian-kang, et al. 2002. The Latest Crustal Deformation and Earthquake in North China [M]. Science Press, Beijing(in Chinese). [22] 杨凤山. 2016. 礼贤断裂特征及对京固轻轨线路影响分析 [D]. 长春: 吉林大学. YANG Feng-shan. 2016. Lixian Fault characteristics and analysis of its effect on Beijing-Gu’an light rail line [D]. Jilin University, Changchun(in Chinese). [23] 于湘伟, 陈运泰, 张怀. 2010. 京津唐地区地壳三维P波速度结构与地震活动性分析[J]. 地球物理学报, 53(8): 1817—1828. YU Xiang-wei, CHEN Yun-tai, ZHANG Huai. 2010. There-dimensional P-wave velocity structure and seismicity analysis in Beijing-Tianjin-Tangshan region[J]. Chinese Journal of Geophysics, 53(8): 1817—1828(in Chinese). [24] 张先康, 赵金仁, 刘国华, 等. 2002. 三河-平谷8.0级大震区震源细结构的深地震反射探测研究[J]. 中国地震, 18(4): 326—336. ZHANG Xian-kang, ZHAO Jin-ren, LIU Guo-hua, et al. 2002. Study on fine crustal structure of the Sanhe-Pinggu earthquake(M8.0)region by deep seismic reflection profiling[J]. Earthquake Research in China, 18(4): 326—336(in Chinese). [25] 张艺. 2014. 冀中坳陷三维连片区新生代断裂活动性研究 [D]. 东营: 中国石油大学. ZHANG Yi. 2014. Study on Cenozoic fault activity of the three-dimensional continuous area in Jizhong depression [D]. China University of Petroleum, Dongying(in Chinese). [26] 赵成彬, 刘保金, 姬计法, 等. 2013. 北京南部地壳精细结构深地震反射探测研究[J]. 地球物理学报, 56(4): 1168—1176. ZHAO Cheng-bin, LIU Bao-jin, JI Ji-fa, et al. 2013. Fine crustal structure in the south of Beijing revealed by deep seismic reflection profiling[J]. Chinese Journal of Geophysics, 56(4): 1168—1176(in Chinese). [27] 赵红格, 刘池洋. 2002. 大兴断裂分段性研究[J]. 石油与天然气地质, 23(4): 368—371. ZHAO Hong-ge, LIU Chi-yang. 2002. Research on the segmentation of Daxing Fault[J]. Oil & Gas Geology, 23(4): 368—371(in Chinese). [28] 赵金仁, 张先康, 张成科, 等. 2004. 利用宽角反射/折射和深反射探测剖面揭示三河-平谷大震区深部结构特征[J]. 地球物理学报, 47(4): 646—653. ZHAO Jin-ren, ZHANG Xian-kang, ZHANG Cheng-ke, et al. 2004. Deep structural features of the Sanhe-Pinggu great earthquake area imaged by wide-angle and deep seismic reflection profiling[J]. Chinese Journal of Geophysics, 47(4): 646—653(in Chinese). [29] Barnett J A M, Mortimer J, Rippon J H, et al. 1987. Displacement geometry in the volume containing a single normal fault[J]. AAPG Bulletin, 71(8): 925—937. [30] Chapman G R, Lippard S J, Martyn J E. 1978. The stratigraphy and structure of the Kamasia Range, Kenya rift valley[J]. Journal of the Geological Society(London), 135(3): 265—281. [31] Cowie P, Roberts G P. 2001. Constraining slip rates and spacing for active normal faults[J]. Journal of Structural Geology, 23(12): 1901—1915. [32] Dawers N H, Anders M H, Scholz C H. 1993. Growth of normal faults: Displacement length scaling[J]. Geology, 21(12): 1107—1110. [33] Erslev E A. 1991. Trishear fault propagation folding[J]. Geology, 19(6): 617—620. [34] Gui B L, He D F, Zhang Y S, et al. 2017. Geometry and kinematics of extensional structural wedges[J]. Tectonophysics, 699(12): 199—212. [35] Hardy S, Ford M. 1997. Numerical modeling of trishear fault propagation folding[J]. Tectonics, 16(5): 841—854. [36] Huang J L, Zhao D P. 2004. Crustal heterogeneity and seismotectonics of the region around Beijing, China[J]. Tectonophysics, 385(1-4): 159—180. [37] Min B, Shu L S, Yin H B, et al. 2007. Conglomeratic reservoir characterization in the Caiyu field of the Langgu sag, North China[J]. Marine and Petroleum Geology, 24(10): 579—590. [38] Morley C K. 1995. Developments in the structural geology of rifts over the last decade and their impact on hydrocarbon exploration[J]. Geological Society, London, Special Publications, 80(1): 1—32. [39] Moustafa A R. 1997. Controls on the development and evolution of transfer zones: The influence of basement structure and sedimentary thickness in the Suez rift and Red Sea[J]. Journal of Structural Geology, 19(6): 755—768. [40] Moustafa A R. 2002. Controls on the geometry of transfer zones in the Suez rift and northwest Rea Sea: Implications for the structural geometry of rift systems[J]. AAPG Bulletin, 86(6): 979—1000. [41] Muraoka H, Kamata H. 1983. Displacement distribution along minor fault traces[J]. Journal of Structural Geology, 5(5): 483—495. [42] Peacock D C P. 1995. Strike-slip relay ramps[J]. Journal of Structural Geology, 17(10): 1351—1360. [43] Peacock D C P, Knipe R J, Sanderson D J. 2000. Glossary of normal faults[J]. Journal of Structural Geology, 22(3): 291—305. [44] Peacock D C P, Parfitt E A. 2002. Active relay ramps and normal fault propagation on Kilauea Volcano, Hawaii[J]. Journal of Structural Geology, 24(4): 729—742. [45] Qi J F, Yang Q. 2010. Cenozoic structural deformation and dynamic processes of the Bohai Bay basin province, China[J]. Marine and Petroleum Geology, 27(4): 757—771. [46] Shedlock K, Roecker S. 1987. Elastic wave velocity structure of the crust and upper mantle beneath the North China Basin[J]. Journal of Geophysical Research, 92(B9): 9827—9850. [47] Walsh J J, Watterson J. 1987. Distributions of cumulative displacement and seismic slip on a single normal fault surface[J]. Journal of Structural Geology, 9(8): 1039—1046. [48] Withjack M O, Olson J, Peterson E. 1990. Experimental models of extensional forced folds[J]. Bulletin American Society Petroleum Geology, 74(7): 1038—1054. |