[1] 冯乾文, 郑光华, 张晓帆, 等. 2009. 塔城盆地石炭系基底的重磁电震联合反演[J]. 新疆大学学报(自然科学版), 26(2): 242—246. FENG Qian-wen, ZHENG Guang-hua, ZHANG Xiao-fan, et al. 2009. Gravity-magnetic-magnetotelluric-seismic joint inversion of carboniferous stratum basement in Tacheng Basin[J]. Journal of Xinjiang University(Natural Science Edition), 26(2): 242—246(in Chinese). [2] 李传友, 张培震, 张剑玺, 等. 2007. 西秦岭北缘断裂带黄香沟段晚第四纪活动表现与滑动速率[J]. 第四纪研究, 27(1): 54—63. LI Chuan-you, ZHANG Pei-zhen, ZHANG Jian-xi, et al. 2007. Late Quaternary activity and slip rate of the western Qingling fault zone at Huangxianggou[J]. Quaternary Sciences, 27(1): 54—63(in Chinese). [3] 李海兵, van der Woerd J, 孙知明, 等. 2008. 阿尔金断裂带康西瓦段晚第四纪以来的左旋滑移速率及其大地震复发周期的探讨[J]. 第四纪研究, 28(2): 197—213. LI Hai-bing, van der Woerd J, SUN Zhi-ming, et al. 2008. Late Quaternary left-slip rate and large earthquake recurrence time along the Kangxiwar(or Karakax)segment of the Altyn Tagh Fault, northern Tibet[J]. Quaternary Sciences, 28(2): 197—213(in Chinese). [4] 罗福忠, 姚远, 唐丽华, 等. 2015. 新疆塔城盆地断裂的晚第四纪活动特征[J]. 内陆地震, 29(3): 195—202. LUO Fu-zhong, YAO Yuan, TANG Li-hua, et al. 2015. Characteristics of Late Quaternary faults in Tacheng Basin, Xinjiang[J]. Inland Earthquakes, 29(3): 195—202(in Chinese). [5] 马保起, 苏刚, 侯治华, 等. 2005. 利用岷江阶地的变形估算龙门山断裂带中段晚第四纪滑动速率[J]. 地震地质, 27(2): 234—242. MA Bao-qi, SU Gang, HOU Zhi-hua, et al. 2005. Late Quaternary slip rate in the central part of the Longmenshan fault zone from terrace deformation along the Minjiang River[J]. Seismology and Geology, 27(2): 234—242(in Chinese). [6] 任俊杰. 2013. 龙日坝断裂带晚第四纪活动及与其周边断裂的运动学关系 [D]. 北京: 中国地震局地质研究所. REN Jun-jie. 2013. Late Quaternary activity of the Longriba fault zone and its kinematic relations with adjacent faults [D]. Institute of Geology, China Earthquake Administration, Beijing(in Chinese). [7] 任治坤, 张竹琪, 陈涛, 等. 2014. 侧向侵蚀相关的走滑断裂滑动速率计算新方法[J]. 地震地质, 36(4): 1020—1028. doi: 10.3969/j.issn.0253-4967.2014.04.007. REN Zhi-kun, ZHANG Zhu-qi, CHEN Tao, et al. 2014. A new method for determining slip rates of strike-slip fault associated with lateral erosion of accumulated offset[J]. Seismology and Geology, 36(4): 1020—1028(in Chinese). [8] 吴胜和, 冯文杰, 印森林, 等. 2016. 冲积扇沉积构型研究进展[J]. 古地理学报, 18(4): 497—512. WU Sheng-he, FENG Wen-jie, YIN Sen-lin, et al. 2016. Research advances in alluvial fan depositional architecture[J]. Journal of Palaeogeography, 18(4): 497—512(in Chinese). [9] 许斌斌, 张冬丽, 张培震, 等. 2019. 冲积扇河流阶地演化对走滑断裂断错位移的限定[J]. 地震地质, 41(3): 587—602. doi: 10.3969/j.issn.0253-4967.2019.03.004. XU Bin-bin, ZHANG Dong-li, ZHANG Pei-zhen, et al. 2019. Slip offset along strike-slip fault determined from stream terraces formation[J]. Seismology and Geology, 41(3): 587—602(in Chinese). [10] 严珍珍, 张怀, 范湘涛, 等. 2013. 断层水平错动下河流演变过程的数值模拟研究[J]. 地震, 33(4): 105—114. YAN Zhen-zhen, ZHANG Huai, FAN Xiang-tao, et al. 2013. Numerical simulation of river evolution processes under strike-slip faulting[J]. Earthquake, 33(4): 105—114(in Chinese). [11] 杨景春, 李有利. 2012. 地貌学原理 [M]. 北京: 北京大学出版社. YANG Jing-chun, LI You-li. 2012. Fundamental of Geomorphology [M]. Peking University Press, Beijing(in Chinese). [12] 姚远, 李帅, 黄帅堂, 等. 2019. 西准噶尔冬别列克断裂晚第四纪以来的阶地位错与滑动速率[J]. 地震地质, 41(4): 803—820. doi: 10.3969/j.issn.0253-4967.2019.04.001. YAO Yuan, LI Shuai, HUANG Shuai-tang, et al. 2019. Terrace deformation and slip rates of the Dongbielieke Fault in western Junggar Basin since the Late Quaternary[J]. Seismology and Geology, 41(4): 803—820(in Chinese). [13] 姚远, 吴传勇, 罗福忠. 2015. 新疆塔城盆地东缘冬别列克断裂晚第四纪活动特征[J]. 内陆地震, 29(1): 71—76. YAO Yuan, WU Chuan-yong, LUO Fu-zhong. 2015. Characteristics of Late Quaternary activity on Dongbielieke fracture located on eastern margin of Tacheng Basin in Xinjiang[J]. Inland Earthquakes, 29(1): 71—76(in Chinese). [14] 印森林, 刘忠保, 陈燕辉, 等. 2017. 冲积扇研究现状及沉积模拟实验: 以碎屑流和辫状河共同控制的冲积扇为例[J]. 沉积学报, 35(1): 10—23. YIN Sen-lin, LIU Zhong-bao, CHEN Yan-hui, et al. 2017. Research progress and sedimentation experiment simulation about alluvial fan: A case study on alluvial fan controlled by debris flow and braided river[J]. Acta Sedimentologica Sinica, 35(1): 10—23(in Chinese). [15] 张波, 何文贵, 庞炜, 等. 2016. 青藏块体北部金塔南山断裂晚第四纪走滑活动的地质地貌特征[J]. 地震地质, 38(1): 1—21. doi: 10.3969/j.issn.0253-4967.2016.01.001. ZHANG Bo, HE Wen-gui, PANG Wei, et al. 2016. Geological and geomorphic expressions of Late Quaternary strike-slip activity on Jintananshan Fault in northern edge of Qing-Zang block[J]. Seismology and Geology, 38(1): 1—21(in Chinese). [16] 张培震, 李传友, 毛凤英. 2008. 河流阶地演化与走滑断裂滑动速率[J]. 地震地质, 30(1): 44—57. ZHANG Pei-zhen, LI Chuan-you, MAO Feng-ying. 2008. Strath terrace formation and strike-slip faulting[J]. Seismology and Geology, 30(1): 44—57(in Chinese). [17] Allen C R, Gillespie A R, Yuan H, et al. 1984. Red River and associated faults, Yunnan Province, China: Quaternary geology, slip rates, and seismic hazard[J]. Geological Society of America Bulletin, 95(6): 686—700. [18] Clarke L E. 2015. Experimental alluvial fans: Advances in understanding of fan dynamics and processes[J]. Geomorphology, 244(Part of special issue): 135—145. [19] Drew F. 1873. Alluvial and lacustrine deposits and glacial records of the Upper-Indus Basin[J]. Quarterly Journal of the Geological Society, 29(1-2): 441—471. [20] Keller E A, Pinter N. 1996. Active Tectonics: Earthquakes, Uplift, and Landscape[M]. New Jersey: Prentice Hall. [21] Langridge R M, Ries W F, Dolan J F, et al. 2017. Slip rate estimates and slip gradient for the Alpine Fault at Calf Paddock, Maruia River, New Zealand[J]. New Zealand Journal of Geology and Geophysics, 60(2): 73—88. [22] Molnar P, Brown E T, Burchfiel B C, et al. 1994. Quaternary climate change and the formation of river terraces across growing anticlines on the north flank of the Tien Shan, China[J]. The Journal of Geology, 102(5): 583—602. [23] Oskin M E, Arrowsmith J R, Corona A H, et al. 2012. Near-field deformation from the El Mayor-Cucapah earthquake revealed by differential LIDAR[J]. Science, 335(6069): 702—705. [24] Thompson S C, Weldon R J, Rubin C M, et al. 2002. Late Quaternary slip rates across the central Tien Shan, Kyrgyzstan, central Asia[J]. Journal of Geophysical Research: Solid Earth, 107(B9): ETG7-1—ETG7-32. [25] Walker R T, Bayasgalan A, Carson R, et al. 2006. Geomorphology and structure of the Jid right-lateral strike-slip fault in the Mongolian Altay Mountains[J]. Journal of Structural Geology, 28(9): 1607—1622. [26] Zhang P Z, Molnar P, Xu X W. 2007. Late Quaternary and present-day rates of slip along the Altyn Tagh Fault, northern margin of the Tibetan plateau[J]. Tectonics, 26(5): TC5010. |