郯庐断裂带安徽段活断层特征与成因

刘备, 朱光, 翟明见, 顾承串, 宋利宏, 刘硕. 郯庐断裂带安徽段活断层特征与成因[J]. 地质科学, 2015, 50(2): 611-630. doi: 10.3969/j.issn.0563-5020.2015.017
引用本文: 刘备, 朱光, 翟明见, 顾承串, 宋利宏, 刘硕. 郯庐断裂带安徽段活断层特征与成因[J]. 地质科学, 2015, 50(2): 611-630. doi: 10.3969/j.issn.0563-5020.2015.017
Liu Bei, Zhu Guang, Zhai Mingjian, Gu Chengchuan, Song Lihong, Liu Shuo. Features and genesis of active faultsin the Anhui segment of the Tan-Lu fault zone[J]. Chinese Journal of Geology, 2015, 50(2): 611-630. doi: 10.3969/j.issn.0563-5020.2015.017
Citation: Liu Bei, Zhu Guang, Zhai Mingjian, Gu Chengchuan, Song Lihong, Liu Shuo. Features and genesis of active faultsin the Anhui segment of the Tan-Lu fault zone[J]. Chinese Journal of Geology, 2015, 50(2): 611-630. doi: 10.3969/j.issn.0563-5020.2015.017

郯庐断裂带安徽段活断层特征与成因

详细信息
    作者简介:

    刘备,男,1990年11月生,硕士研究生,地质工程专业。E-mail:liubei4820208@163.com

    通讯作者: 朱光,男,1959年3月生,博士,教授,构造地质学专业。本文通讯作者。zhuguang@mail.hf.ah.cn
  • 中图分类号: P54

Features and genesis of active faultsin the Anhui segment of the Tan-Lu fault zone

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    Corresponding author: Zhu Guang
  • 详细的野外地质调查表明, 郯庐断裂带安徽段活断层广泛存在, 自北向南分别沿着嘉山盆地的东、西边界、合肥盆地东界与大别造山带东界分布。走向上自北向南由北北东向转为北东向, 倾向上与早期盆缘正断层一致。这些活断层以逆右行平移活动为主, 显示了逆冲分量随着断层倾角变小而增大的现象。依据一系列活断层擦痕实测数据的反演, 指示它们活动时的应力状态为北东东—南西西向挤压, 与现代应力状态一致。从多种现象综合分析, 本文认为郯庐断裂带安徽段活断层的最新活动时代应为中更新世, 从而该段没有强震记录或小震群集现象。本次工作表明, 区内活断层主体上是早期盆缘正断层直接复活成因。由于其第四纪期间有限的累计垂直位移分量, 并没有改变白垩—古近纪盆地发育阶段的地貌格局。
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  • [1]

    安徽省地质矿产局. 1987. 安徽省区域地质志. 北京: 地质出版社. 165—191.

    [2]

    Bureau of Geology and Mineral Resources of Anhui Province. 1987. Regional Geology of Anhui Province. Beijing: Geological Publishing. House. 165—191.

    [3]

    国家地震局地质研究所. 1987. 郯庐断裂. 北京: 地震出版社. 1—225.

    [4]

    Institute of Geology, State Seismological Bureau. 1987. The Tan-Lu Fault Zone. Beijing: Seismological Press. 1—225.

    [5]

    邓起东, 冉勇康, 杨晓平等. 2007. 中国活动构造图(1 : 400万). 北京: 地震出版社. 1.

    [6]

    Deng Qidong, Ran Yongkang, Yang Xiaoping et al. 2007. Map of Active Tectonics in China. Beijing: Seismological Press. 1.

    [7]

    胡 惟, 朱 光, 宋利宏等. 2013. 郯庐断裂带渤海段第四纪活动规律探讨. 地学前缘, 20 (4): 137—150.

    [8]

    Hu Wei, Zhu Guang, Song Lihong et al. 2013. Analysis of neotectonic activity along the Bohai segment of the Tan-Lu fault zone. Earth Science Frontiers, 20 (4): 137—150.

    [9]

    胡 惟, 朱 光, 严乐佳等. 2014. 郯庐断裂带中段地震活动性与深部地壳电性结构关系的探讨. 地质论评, 60 (1): 80—90.

    [10]

    Hu Wei, Zhu Guang, Yan Lejia et al. 2014. Analysis of relationship between seismic activity and crust electrical textures for the central segment of the Tan-Lu fault zone. Geological Review, 60 (1): 80—90.

    [11]

    鞠林雪, 朱 光, 王浩乾等. 2012. 1668年郯城8.5级地震构造应力场分析. 地质科学, 47 (3): 836—850.

    [12]

    Ju Linxue, Zhu Guang, Wang Haoqian et al. 2012. Stress field analysis of the 1668 M 81/2 Tancheng earthquake. Chinese Journal of Geology, 47 (3): 836—850.

    [13]

    李西双, 赵月霞, 刘保华等. 2010. 郯庐断裂带渤海段晚更新世以来的浅层构造变形和活动性. 科学通报, 55 (8): 684—692.

    [14]

    Li Xishuang, Zhao Yuexia, Liu Baohua et al. 2010. Structural deformation and fault activity of the Tan-Lu fault zone in the Bohai Sea since the Late Pleistocene. Chinese Science Bulletin, 55 (18): 1908—1916.

    [15]

    刘东旺, 夏瑞良, 刘泽民等. 2006. 郯庐断裂带安徽段现代地震活动及应力场特征. 地质科学, 41 (2): 278—290.

    [16]

    Liu Dongwang, Xia Ruiliang, Liu Zeming et al. 2006. Characteristics of recent seismicity and stress fields in Anhui sector of the Tan-Lu fault zone. Chinese Journal of Geology, 41 (2): 278—290.

    [17]

    刘国生, 朱 光, 牛漫兰等. 2006. 合肥盆地(东部)的演化及其对郯庐断裂带活动的响应. 地质科学, 41 (2): 242—255.

    [18]

    Liu Guosheng, Zhu Guang, Niu Manlan et al. 2006. Meso-Cenozoic evolution of the Hefei Basin(eastern part)and its response to activities of the Tan-Lu fault zone. Chinese Journal of Geology, 41 (2): 256—269.

    [19]

    刘泽民, 刘东旺, 李玲利等. 2011. 利用多个震源机制解求东大别地区平均应力场. 地震学报, 33 (5): 605—613.

    [20]

    Liu Zemin, Liu Dongwang, Li Lingli et al. 2011. Determination of mean stress field in eastern Dabie region from focal mechanism solution analysis. Acta Seismologica Sinica, 33 (5): 605—613.

    [21]

    倪红玉, 刘泽民, 何 康. 2013. 郯庐断裂带安徽段中小地震震源机制及现代应力场特征. 地震工程学报, 35 (3): 677—683.

    [22]

    Ni Hongyu, Liu Zemin and He Kang. 2013. Study on focal mechanisms of moderate-small earthquakes and characteristics of recent tectonic stress field in the Anhui sector of Tan-Lu fault zone. China Earthquake Engineering Journal, 35 (3): 677—683.

    [23]

    牛漫兰, 朱 光, 宋传中等. 2001. 郯庐断裂带中南段新生代玄武岩源区地幔特征及其演化. 现代地质, 15 (4): 383—390.

    [24]

    Niu Manlan, Zhu Guang, Song Chuanzhong et al. 2001. Features and evolutions of the mantle source area of Cenozoic basalts in the middle-southern segment of the Tan-Lu fault zone. Geoscience, 15 (4): 383—390.

    [25]

    牛漫兰, 朱 光, 刘国生等. 2002. 郯庐断裂带中南段中生代岩浆活动的构造背景与深部过程. 地质科学, 37 (4): 393—404.

    [26]

    Niu Manlan, Zhu Guang, Liu Guosheng et al. 2002. Tectonic setting and deep processes of Mesozoic magmatism in middle-south segment of the Tan-Lu fault. Chinese Journal of Geology, 37 (4): 393—404.

    [27]

    牛漫兰, 朱 光, 谢成龙等. 2008. 郯庐断裂带张八岭隆起南段花岗岩 LA-ICP-MS 锆石 U-Pb 年龄及其构造意义. 岩石学报, 24 (8): 1839—1847.

    [28]

    Niu Manlan, Zhu Guang, Xie Chenglong et al. 2008. LA-ICP MS zircon U-Pb ages of the granites from the southern segment of the Zhangbaling uplift along the Tan-Lu fault zone and their tectonic significances. Acta Petrologica Sinica, 24 (8): 1839—1847.

    [29]

    施 炜, 张岳桥, 董树文. 2003. 郯庐断裂带中段第四纪活动及其分段特征. 地球学报, 24 (1): 11—18.

    [30]

    Shi Wei, Zhang Yueqiao and Dong Shuwen. 2003. Quaternary activity and segmentation behavior of the middle portion of the Tan-Lu fault zone. Acta Geoscientica Sinica, 24 (1): 11—18.

    [31]

    宋传中, 牛漫兰, 刘国生等. 2002. 郯庐断裂带南段及邻区中、新生代盆地的反转机制. 合肥工业大学学报(自然科学版), 25 (3): 325—330.

    [32]

    Song Chuanzhong, Niu Manlan, Liu Guosheng et al. 2002. Inversion mechanism of Meso-Cenozoic basins of southern Tan-Lu fault and its adjacent areas. Journal of Hefei University of Technology(Natural Science), 25 (3): 325—330.

    [33]

    宋国奇. 2006. 郯庐断裂带苏皖段大地电磁测深剖面与地壳结构. 油气地质与采收率, 13 (6): 1—4.

    [34]

    Song Guoqi. 2006 Magnetotelluric depth sounding sections of Tan-Lu fault its crustal structure in Shandong, Jiangsu and Anhui Provinces. Petroleum Geology and Recovery Efficiency, 13 (6): 1—4.

    [35]

    汤有标, 沈子忠, 林安培等. 1988. 郯庐断裂带安徽段的展布及其新构造活动. 地震地质, 10 (2): 46—50.

    [36]

    Tang Youbiao, Shen Zizhong, Lin Anpei et al. 1988. Extension of the Tancheng-Lujiang fault zone at the Anhui section and its neotectonic activity. Seismology and Geology, 10 (2): 46—50.

    [37]

    汤有标, 姚大全. 1990. 郯庐断裂带南段新活动性的初步研究. 地震研究, 13 (2): 155—165.

    [38]

    Tang Youbiao and Yao Daquan. 1990. A preliminary study of the new activities along the southern segment of Tancheng-Lujiang fault. Journal of Seismological Research, 13 (2): 155—165.

    [39]

    汤有标, 姚大全, 刘加灿等. 1996. 合肥盆地东缘断裂的新活动性. 贵州师范大学学报(自然科学版), 14 (3): 33—37.

    [40]

    Tang Youbiao, Yao Daquan, Liu Jiacan et al. 1996. On neo-mobility of rupture on east edge of Hefei Basin. Journal of Guizhou Normal University(Natural Science), 14 (3): 33—37.

    [41]

    魏光兴, 刁守中, 周翠英. 1993. 郯庐带地震活动性研究. 北京: 地震出版社. 1—200.

    [42]

    Wei Guangxing, Diao Shongzhong and Zhou Cuiying. 1993. Study of Seismicity Along the Tancheng-Lujiang Seismic Zone. Beijing: Seismological Press. 1—200.

    [43]

    谢成龙, 朱 光, 牛漫兰等. 2007. 滁州中生代火山岩 LA-ICP-MS 锆石 U-Pb 年龄及其构造地质学意义. 地质论评, 53 (5): 642—655.

    [44]

    Xie Chenglong, Zhu Guang, Niu Manlan et al. 2007. LA-ICP MS zircon U-Pb ages of the Mesozoic volcanic rocks from Chuzhou area and their tectonic signifieances. Geological Review, 53 (5): 642—655.

    [45]

    谢成龙, 朱 光, 牛漫兰等. 2008. 郯庐断裂带巢湖—庐江段晚中生代火山岩的锆石 U-Pb 年代学. 地质科学, 43 (2): 294—308.

    [46]

    Xie Chenglong, Zhu Gnang, Niu Manlan et al. 2008. Late Mesozoic volcanic rocks from the Chaohu-Lujiang segment of the Tan-Lu fault zone. Chinese Journal of Geology, 43 (2): 294—308.

    [47]

    谢成龙, 朱 光, 牛漫兰等. 2009. 滁州火山岩地球化学及其对郯庐断裂带内岩石圈减薄的指示. 岩石学报, 25 (1): 92—108.

    [48]

    Xie Chenglong, Zhu Gnang, Niu Manlan et al. 2009. Geochemistry of Late Mesozoic volcanic rocks from Chuzhou area and its implication for the lithospheric thinning beneath the Tan-Lu fault zone. Aca Petrologiea Sinica, 25 (1): 92—108.

    [49]

    许文良, 杨德彬, 裴福萍等. 2006. 蚌埠隆起区五河杂岩的形成时代: 锆石 LA-ICP-MS U-Pb 定年证据. 中国地质, 33 (1): 132—137.

    [50]

    Xu Wenliang, Yang Debin, Pei Fuping et al. 2006. Age of the Wuhe complex in the Bengbu uplift: Evidence from LA-ICP-MS zircon U-Pb dating. Geology in China, 33 (1): 132—137.

    [51]

    杨德彬, 许文良, 裴福萍等. 2009. 蚌埠隆起区古元古代钾长花岗岩的成因: 岩石地球化学、锆石U-Pb年代学与Hf同位素的制约. 地球科学, 34 (1): 148—164.

    [52]

    Yang Debin, Xu Wenliang, Pei Fuping et al. 2009. Petrogenesis of the Paleoproterozoic K-feldspar granites in Bengbu uplift: Constraints front petro-geochemistry, zircon U-Pb dating and Hf isotope. Earth Sciences, 34 (1): 148—164.

    [53]

    姚大全, 刘加灿, 翟洪涛等. 2004a. 郯庐断裂带白山—卅铺段第四纪以来的活动习性. 地震地质, 26 (4): 622—629.

    [54]

    Yao Daquan, Liu Jiacan, Zhai Hongtao et al. 2004a. Quaternary activity of the Baishan-Sapu segment of the Tancheng-Lujiang fault zone. Seismology and Geology, 26 (4): 622—629.

    [55]

    姚大全, 刘加灿. 2004b. 郯庐断裂带池河段的新活动. 地震学报, 26 (6): 616—622.

    [56]

    Yao Daquan and Liu Jiacan. 2004b. Recent activity of Chihe segment of Tan-Lu fault zone. Acta Seismologica Sinica, 26 (6): 616—622.

    [57]

    姚大全, 刘加灿, 翟洪涛等. 2005. 地震韵律研究方法初探——以郯庐断裂带龙泉山西麓剖面研究为例. 地震研究, 28 (1): 49—52.

    [58]

    Yao Daquan, Liu Jiacan, Zhai Hongtao et al. 2005. Preliminary research method of seismic rhythms: Taking the research on the Longquanshan west-foot profile in the Tancheng-Lujiang fault zone as an example. Journal of Seismological Research, 28 (1): 49—52.

    [59]

    朱 光, 刘国生, 牛漫兰等. 2002. 郯庐断裂带晚第三纪以来的浅部挤压活动与深部过程. 地震地质, 24 (2): 265—277.

    [60]

    Zhu Guang, Liu Guoshcng, Niu Manlan et al. 2002. Post-Eogene compressive activities on the Tan-Lu fault zone and its deep processes. Seismology and Geology, 24 (2): 265—277.

    [61]

    朱 光, 王道轩, 刘国生等. 2001. 郯庐断裂带的伸展活动及其动力学背景. 地质科学, 36 (3): 269—278.

    [62]

    Zhu Guang, Wang Daoxuan, Liu Guosheng et al. 2001. Extensional activities along the Tan-Lu fault zone and its geodynamic setting. Chinese Journal of Geology, 36 (3): 269—278.

    [63]

    朱 光, 朴学峰, 张 力等. 2011. 合肥盆地伸展方向的演变及其动力学机制. 地质论评, 57 (2): 154—166.

    [64]

    Zhu Guang, Piao Xuefeng, Zhang Li et al. 2011. Evolution of extensional direction in the Hefei Basin and its dynamic mechanism. Geological Review, 57 (2): 154—166.

    [65]

    Anderson E M. 1951. The Dynamics of Faulting and Dyke Formation with Application to Britain. Edinburgh: Oliver and Boyd. 1—50.

    [66]

    Angelier J. 1994. Fault slip analysis and palaeostress reconstruction. In: Hancock P L(Ed.). Continental Deformation. London: Oxford Press. 53—100.

    [67]

    Bott M H P. 1959. The mechanics of oblique slip faulting. Geological Magazine, 96 (2): 109—117.

    [68]

    Chen W P and Nabelek J. 1988. Seismogenic strike-slip faulting and the development of the North China Basin. Tectonics, 7 (5): 975—989.

    [69]

    Guo S S and Li S G. 2009. Petrochemical characteristics of leucogranite and a case study of Bengbu leucogranites. Chinese Science Bulletin, 54 (11): 1923—1930.

    [70]

    Hacker B R, Ratschbacher L, Webb L et al. 2000. Exhumation of ultrahigh-pressure continental crust in east central China: Late Triassic-Early Jurassic tectonic unroofing. Journal of Geophysical Research, 105 (B6): 13339—13364.

    [71]

    Jacques M and Pierre V. 1992. Tectonique(Collection Geosciences). Paris: Dunod. 1—214.

    [72]

    Li S G, Jagoutz E, Chen Y Z et al. 2000. Sm-Nd and Rb-Sr isotopic chronology and cooling history of ultrahigh pressure metamorphic rocks and their country rocks at Shuanghe in the Dabie Mountains, central China. Geochimica et Cosmochimica Acta, 64 (6): 1077—1093.

    [73]

    Lin A M. 2001. S-C fabrics developed in cataclastic rocks from the Nojima fault zone, Japan and their implications for tectonic history. Journal of Structural Geology, 23 (6): 1167—1178.

    [74]

    Lin A M, Lee C T, Maruyama T et al. 2005. Meso-and microstructural analysis of coseismic shear zone of the 1999 MW 7.6 Chi-Chi earthquake, Taiwan. Bulletin of the Seismological Society of America, 95 (2): 486—501.

    [75]

    Lin A M, Ren Z K and Yasuhiro K. 2010. Structural alanalysis of the coseismic shear zone of the 2008 Mw 7.9 Wenchuan earthquake, China. Journal of Structural Geology, 32 (6): 781—791.

    [76]

    Min W, Liu Y G, Jiao D C et al. 2013. Evidence for Holocene activity of the Yilan-Yitong fault, northeastern section of the Tan-Lu fault zone in Northeast China. Journal of Asian Earth Sciences, 67 : 207—216.

    [77]

    Orife T and Lisle R J. 2006. Assessing the statistical significance of palaeostress estimates: Simulations using random fault-slips. Journal of Structural Geology, 28 (6): 952—956.

    [78]

    Ujiie K. 2005. Fault rock analysis of the northern part of the Chelungpu fault and its relation to earthquake faulting of the 1999 Chi-Chi earthquake, Taiwan. Island Arc, 14 (1): 2—11.

    [79]

    Wallace R E. 1951. Geometry of shearing stress and relation to faulting. The Journal of Geology, 59 (2): 118—130.

    [80]

    Wang Y. 2006. The onset of the Tan-Lu fault movement in eastern China: Constraints from zircon(SHRIMP)and 40 Ar/39 Ar dating. Terra Nova, 18 (6): 423—431.

    [81]

    Yan L J, Zhu G, Lin S Z et al. 2014. Neotectonic activity and formation mechanism of the Yishu fault zone. Science China Earth Sciences, 57 (4): 614—629.

    [82]

    Zhao T, Zhu G, Lin S Z et al. 2014. Protolith ages and deformation mechanism of metamorphic rocks in the Zhangbaling uplift segment of the Tan-Lu fault zone. Science China Earth Sciences, 57 (11): 2740—2757.

    [83]

    Zhu Guang, Liu G S, Niu M L et al. 2005. 40 Ar-39 Ar dating of strike-slip motion on the Tan-Lu fault zone, East China. Journal of Structural Geology, 27 (8): 1379—1398.

    [84]

    Zhu G, Niu M L, Xie C L et al. 2009. Syn-collisional transform faulting of the Tan-Lu fault zone, East China. International Journal of Earth Sciences, 98 (1): 135—155.

    [85]

    Zhu G, Niu M L, Xie C L et al. 2010. Sinistral to normal faulting along the Tan-Lu fault zone: Evidence for geodynamic switching of the East China continental margin. The Journal of Geology, 118 (3): 277—293.

    [86]

    Zhu G, Jiang D Z, Zhang B L et al. 2012. Destruction of the eastern North China Craton in a backarc setting: Evidence from crustal deformation kinematics. Gondwana Research, 22 (1): 86—103.

    [87]

    Zhu S B and Shi Y L. 2011. Estimation of GPS strain rate and its error analysis in the Chinese continent. Journal of Asian Earth Sciences, 40 (1): 351—362.

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出版历程
收稿日期:  2014-11-30
修回日期:  2015-02-01
刊出日期:  2015-04-25

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