2013 Vol. 33, No. 3
Article Contents

LI Sanzhong, YU Shan, ZHAO Shujuan, LIU Xin, GONG Shuyun, SUO Yanhui, DAI Liming, MA Yun, XU Liqing, CAO Xianzhi, WANG Pengcheng, SUN Wenjun, YANG Zhao, ZHU Junjiang. TECTONIC TRANSITION AND PLATE RECONSTRUCTIONS OF THE EAST ASIAN CONTINENTAL MAGIN[J]. Marine Geology & Quaternary Geology, 2013, 33(3): 65-94. doi: 10.3724/SP.J.1140.2013.03065
Citation: LI Sanzhong, YU Shan, ZHAO Shujuan, LIU Xin, GONG Shuyun, SUO Yanhui, DAI Liming, MA Yun, XU Liqing, CAO Xianzhi, WANG Pengcheng, SUN Wenjun, YANG Zhao, ZHU Junjiang. TECTONIC TRANSITION AND PLATE RECONSTRUCTIONS OF THE EAST ASIAN CONTINENTAL MAGIN[J]. Marine Geology & Quaternary Geology, 2013, 33(3): 65-94. doi: 10.3724/SP.J.1140.2013.03065

TECTONIC TRANSITION AND PLATE RECONSTRUCTIONS OF THE EAST ASIAN CONTINENTAL MAGIN

  • It is a hot debate on the Meso-Cenozoic dynamics of the East Asian continental margins, since the nature, type and evolution of its continental margins are not well-known.. This paper systematically summarizes the results of plate reconstructions on the East Asian continental margin since Permian over the past 40 years with emphasis on the new research results in the past 10 years. The paper mainly focuses on the variation in types of the East Asian continental margin since Late Triassic, the transitions among different tectonic domains. Our data suggests that the East Asian continental margins as a whole experienced a pre-Triassic passive continental margin, a Late Triassic-Early Cretaceous continental magmatic arc of the Andean-type active continental margin, a Late Cretaceous-Eocene strike-slipping Andean-type active continental margin with of pull-apart basins, and a post-Oligocene Japanese-type active continental margin successively. Tectonic trasition is important for understanding of the formation of the Bohaisx Bay, the Yellow Sea, the East China Sea and the South China Sea basins in East China. The changes of the continent-ocean distribution, plate configuration and dynamics at the various stages are also discussed.
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  • [1] Maruyama S, Santosh M, Zhao D P. Superplume, supercontinent, and postperovskite:mantle dynamics and anti-plate tectonics on the core-mantle boundary[J]. Gondwana Research, 2007, 11:7-37.

    Google Scholar

    [2] Maruyama S, Hasegawa A, Santosh M, et al. The dynamics of bigmantlewedge,magma factory, andmetamorphicmetasomatic factory in subduction zones[J]. Gondwana Research 16, 2009, 414-430.

    Google Scholar

    [3] Uyeda S, Miyashiro A. Plate tectonics and Japanese islands:a synthesis[J]. Geological Society of America Bulletin, 1974, 85:1159-1170.

    Google Scholar

    [4] Hilde T W C, Uyeda S, Kroenke L. Evolution of the western Pacific and its margin[J]. Tectonophysics,1977, 38:145-165.

    Google Scholar

    [5] Lee T Y, Lawver L A. Cenozoic plate reconstruction of Southeast Asia[J]. Tectonophysics,1995, 251:85-138.

    Google Scholar

    [6] Sengör A M C, Natal'in B A. Paleotectonics of Asia:fragments of a synthesis[M]//In:Yin An, Harrison M. The Tectonic Evalution of Asia. Cambridge University Press, 1996:487-614.

    Google Scholar

    [7] Yin A, Nie S R. A phanerozoic palinspastic reconstruction of China and its neighboring regions[M]//The Tectonic Evolution of Asia, edited by Yin A,Harrison T M.Cambridge Univ. Press, 1996:442-285.

    Google Scholar

    [8] Maruyama S, Isozaki Y, Kimura G, Terabayashi M. Paleogeographic Maps of the Japanese Islands:plate tectonic synthesis from 750 Ma to the present[J]. The Island Arc,1997, 6:121-142.

    Google Scholar

    [9] Hall R. Cenozoic geological and plate tectonic evolution of SE Asia and the SW Pacific:computer-based reconstructions, model and animations[J]. Journal of Asian Earth Sciences, 2002, 20, 353-431.

    Google Scholar

    [10] Hall R. Late Jurassic-Cenozoic reconstructions of the Indonesian region and the Indian Ocean[J]. Tectonophysics, 2012, 570-571:1-41.

    Google Scholar

    [11] Honza E, Fujioka K. Formation of arcs and back-arc basins inferred from the tectonic evolution of Southeast Asia since the Late Cretaceous[J]. Tectonophysics, 2004, 384:23-53.

    Google Scholar

    [12] Whittaker J M, Müller R D, Sdrolias M, Heine C. Sunda-Java trench kinematics, slab window formation and overriding plate deformation since the Cretaceous[J]. Earth and Planetary Science Letters, 2007, 255(3-4):445-457.

    Google Scholar

    [13] Müller R D, Sdrolias M, Gaina C, et al. Long-term sealevel fluctuations driven by ocean basin dynamics[J]. Science,2008, 319:1357-1362.

    Google Scholar

    [14] Yin A. Cenozoic tectonic evolution of Asia:A preliminary synthesis[J]. Tectonophysics, 2010, 488:293-325.

    Google Scholar

    [15] Seton M, Müller R D, Zahirovic S, et al.Global continental and ocean basin reconstructions since 200 Ma[J]. Earth-Science Reviews,2012, 113:212-270.

    Google Scholar

    [16] 庞洁红, 李三忠, 戴黎明,等. 太平洋洋底高原的海山成因-重点以Shatsky海隆成因为例[J]. 海洋地质与第四纪地质, 2011, 31(2):1-10.

    Google Scholar

    [PANG Jiehong, LI Sanzhong, DAI Liming, et al. Genesys of oceanic plateaus and aesmounts in the Pacific ocean-A case study of Shatsky rise[J]. Marine Geology and Quaternary Geology, 2011, 31(2):1-10.]

    Google Scholar

    [17] 刘光鼎. 中国海区及邻域地质地球物理图集[M]. 北京:科学出版社,1993:1-94.[LIU Guangding. Geological and Geophysical Atlas of China Seas and Its Neighborings[M]. Beijing:Sicence Press, 1993:1

    Google Scholar

    -94.]

    Google Scholar

    [18] 耿秀山, 万延森, 李善为,等. 苏北海岸带的演变过程及苏北浅滩动态模式的初步探讨[J]. 海洋学报, 1983, 5(1):62-70.

    Google Scholar

    [GENG Xiushan, WAN Yansen, LI Shanwei, et al. A preliminary study of the evolution of the northern Jiangsu coastal zone and northern Jiangsu shoal dynamic mode[J]. Acta Oceanologica Sinica, 1983, 5(1):62-70.]

    Google Scholar

    [19] 吴根耀,矢野孝雄. 东亚大陆边缘的构造格架及其中-新生代演化[J]. 地质通报, 2007, 26(7):787-799.

    Google Scholar

    [WU Genyao, YANO Takao. Tectonic framework and Meso-Cenozoic evolution of the East Asian continental margin[J]. Geological Bulletin of China, 2007, 26(7):787-799.]

    Google Scholar

    [20] 李献华,周汉文,丁式江,等.海南岛洋中脊型变质基性岩:古特提斯洋壳的残片[J].科学通报,2000,45(1):84-89.

    Google Scholar

    [LI Xianhua,ZHOU Hanwen,DINGShijiang,et al. Metamorphic mid-oceanic mafic rocks in the Hinan Province:segments of Paleo-Tethys oceanic crust[J].Chinese Science Bulletin, 2000, 45(1):84-89.]

    Google Scholar

    [21] 刘海龄,阎贫,张伯友,等. 南海前新生代基底与东特提斯构造域[J]. 海洋地质与第四纪地质, 2004, 24(1):16-28.

    Google Scholar

    [LIU Hailing,YAN Pin,ZHANG Boyou,et al. Pre-Cenozoic basements of the south China Sea and eastern Tethyan Realm[J]. Marine Geology and Quarternary Geology, 2004, 24(1):16-28.]

    Google Scholar

    [22] 刘海龄, 阎贫, 刘迎春, 等. 南海北缘琼南缝合带的存在[J]. 科学通报,2006, 51(Ⅱ):92-101.[LIU Hailing, YAN Ping, LIU Yingchun, et al. Existence of the Southern Qiong Suture in the northern South China Sea[J]. Chinese Science Bulltin, 2006

    Google Scholar

    , 51(Ⅱ):92-101.]

    Google Scholar

    [23] Isozaki Y, Aoki K, Nakama T, et al.New insight into a subduction-related orogen:A reappraisal of the geotectonic framework and evolution of the Japanese Islands[J]. Gondwana Research, 2010, 8:82-105.

    Google Scholar

    [24] Li S Z, Santosh M, Zhao G C,et al. Intracontinental deformation in a frontier of super-convergence:A perspective on the tectonic milieu of the South China Block[J]. Journal of Asian Earth Sciences, 2012,49:313-329.

    Google Scholar

    [25] Li Z X, Li X H, Chung S L,et al. Magmatic switch-on and switch-off along the South China continental margin since the Permian:Transition from an Andean-type to a Western Pacific-type plate boundary[J]. Tectonophysics, 2012,532-535:271-290.

    Google Scholar

    [26] Li X H, Li Z X, He B, et al. The Early Permian active continental margin and crustal growth of the Cathaysia Block:In situ U-Pb, Lu-Hf and O isotope analyses of detrital zircons[J]. Chemical Geology, 2012,328:195-207.

    Google Scholar

    [27] 李三忠, 王涛, 金宠, 等. 雪峰山基底隆升带及其邻区印支期陆内构造特征与成因[J]. 吉林大学学报:地球科学版, 2011, 41(1):93-105.

    Google Scholar

    [LI Sanzhong,WANG Tao,JIN Chong,et al. Features and causes of Indosinian intracontinental structures in the Xuefengshan Precambrian Basement and its neighboring regions[J]. Journal of Jilin University (Earth Science Edition), 2011, 41(1):93-105.]

    Google Scholar

    [28] Meyerhoff A. Surge-tectonic evolution of southeastern Asia:A geohydrodynamics approach[J]. Journal of Southeast Asian Earth Sciences, 1995, 12:145-247.

    Google Scholar

    [29] Kinoshita O. Possible manifestations of slab window magmatisms in Cretaceous southwest Japan[J]. Tectonophysics, 2002, 344(1-2):1-13.

    Google Scholar

    [30] Sun W D, Ding X, Hu Y H, et al. The golden transformation of the Cretaceous plate subduction in the west Pacific[J]. Earth and Planetary Science Letters,2007, 262:533-542.

    Google Scholar

    [31] 姜涌泉. 浅析东海陆架盆地沉积作用的主要控制因素[J]. 南方油气地质, 1994(1), 68-75.[JIANG Yongquan. Analysis for the main factors controlling sedimentation in east China Sea Basin[J]. Southern Petroleum Gelology, 1994

    Google Scholar

    (1), 68-75.]

    Google Scholar

    [32] 李三忠, 刘建忠, 赵国春, 等. 华北克拉通东部地块中生代变形的关键时限及其对构造的制约——以胶辽地区为例[J]. 岩石学报, 2004, 20(3):633-646.

    Google Scholar

    [LI Sanzhong, LIU Jianzhong, ZHAO Guochun, et al. Key geochronology of Mesozoic deformation in the eastern block of the North China Craton and its constraints on regional tectonics:A case of Jiaodong and Liaodong Peninsula[J]. Acta Petrologica Sinica, 2004, 20(3):633-646.]

    Google Scholar

    [33] 黄镇国. 台湾板块构造与环境演变[M]. 北京:海洋出版社, 1995.[HUANG Zhenguo. Taiwan Plate Tectonics and Environmental Evolution[M]. Beijing:Ocean Press,1995.]

    Google Scholar

    [34] 毛建仁, 邢光福, 叶海敏, 等. 中国东南部及邻区中新生代岩浆作用与成矿[M]. 北京:科学出版社, 2013.[MAO Jianren, XING Guangfu, YE Haimin, et al. Meso-Cenozoic Magmatism and Mineralization in the southeastern China and its adjacents[M]. Beijing:Science Press, 2013.]

    Google Scholar

    [35] 张旗,王元龙,金惟俊,等. 晚中生代的中国东部高原:证据、问题和启示[J]. 地质通报, 2008, 27(9):1404-1430.

    Google Scholar

    [ZHANG Qi,WANG Yuanlong,JIN Weijun,et al. Eastern China Plateau during the Late Mesozoic:Evidence, problems and implication[J]. Geological Bulletin of China, 2008, 27(9):1404-1430.]

    Google Scholar

    [36] 张旗,金惟俊,李承东,等. 中国东部燕山期大规模岩浆活动与岩石圈减薄:与大火成岩省的关系[J]. 地学前缘, 2009, 16(2):21-51.

    Google Scholar

    [ZHANG Qi,JIN Weijun,LI Chengdong,et al. Yanshanian large-scale magmatism and lithosphere thinning in Eastern China:Relation to large igneous province[J]. Earth Science Frontiers, 2009, 16(2):21-51.]

    Google Scholar

    [37] Li Z.X, Li X H. Formation of the 1300-km-wide intracontinental orogen and postorogenic magmatic province in Mesozoic South China:A flat-slab subduction model[J]. Geology, 2007,35:179-182.

    Google Scholar

    [38] 索艳慧, 李三忠, 戴黎明,等. 东亚及其大陆边缘新生代构造迁移与盆地演化[J]. 岩石学报, 2012, 28(8):2602-2618.

    Google Scholar

    [SUO Yanhui, LI Sanzhong, DAI Liming, et al. Cenozoic tectonic migration and basin evolution in East Asia and its continental margins[J]. Acta Petrologica Sinica, 2012, 28(8):2602-2618.]

    Google Scholar

    [39] Shang Y J, Yue Z Q, Xia B D, et al. A tectonic escape model for the formation of sedimentary basins in the Yangzhou block of the Lower Yangtze Region, eastern China[J]. Journal of Asian Earth Sciences, 2002, 20:105-117.

    Google Scholar

    [40] 李三忠, 索艳慧, 戴黎明, 等. 渤海湾盆地形成于华北克拉通破坏[J]. 地学前缘, 2010, 17(4):64-89.

    Google Scholar

    [LI Sanzhong, SUO Yanhui, DAI Liming, et al. Development of the Bohai Bay Basin and destruction of the North China Craton[J].Earth Science Frontiers, 2010, 17(4):64-89.]

    Google Scholar

    [41] 唐克东, 王莹, 何国琦, 等. 中国东北及邻区大陆边缘构造[J]. 地质学报, 1995, 69(1):16-30.

    Google Scholar

    [TANG Kedong, WANF Ying, HE Guoqi, et al. Continental-margin structure of northeast China and its adjiacent areas[J]. Acta Geologica Sinica, 1995, 69(1):16-30.]

    Google Scholar

    [42] 许志琴, 侯立玮, 王大可, 等. 中国西南部松潘一甘孜中生代碰撞型造山带的薄壳构造及前陆逆冲系[J]. 中国地质科学院院报, 1990(20):126-129.[XU Zhiqin, HOU Liwei, WANG Dake, et al. Thin-skinned tectonics and foreland thrust sheets in the Songpan-garze orogenic belt in southwestern China[J]. Bulletin of the Chinese Academy of Geological Sciences, 1990

    Google Scholar

    (20):126-129.]

    Google Scholar

    [43] 于苏俊. 龙门山北段推覆构造的几何特征及应变分析[J]. 矿物岩石, 2000, 20(4):67-74.

    Google Scholar

    [YU Sujun. Geometrical characteristics and strain analysis of nappe struct ures in the northern section of Longmengshan[J]. JM Neral Petrlo., 2000, 20(4):67-74.]

    Google Scholar

    [44] 李三忠, 张国伟, 李亚林,等. 勉略带三岔子蛇绿岩的变质特征及构造意义[J]. 青岛海洋大学学报, 2001, 31(1):89-94.

    Google Scholar

    [LI Sanzhong, ZHANG Guowei, LI Yalin, et al. Tectonic implication and metamorphism of Sanchazi met gabbro from Mian-lue Suture Zone of Qingling Orogenic Belt[J]. Journal of Ocean University of Qingdao, 2001, 31(1):89-94.]

    Google Scholar

    [45] 王瑜, 万景林, 李大明, 等. 藏南伸展拆离系聂拉木一带构造抬升的热年代学证据[J]. 矿物岩石地球化学通报, 2001, 20(4):292-294.

    Google Scholar

    [WANG Yu, WAN Jinglin, LI Daming, et al. Thermochronological evidence of tectonic uplift in Nyalam south Tibetan detachment system[J]. Bulletin of Mineralogy,Petrology and Geochemistry, 2001, 20(4):292-294.]

    Google Scholar

    [46] 罗笃清, 云金表, 李玉喜. 松辽盆地的正构造反转及其形成机制探讨[J]. 大庆石油学院学报, 1994, 18(2):17-21.

    Google Scholar

    [LUO Duqing, YUNJinbiao, LI Yuxi. Positive structural inversion and the mechanism analysis in Songliao Basin[J]. Journal of Daqing Petroleum Institute, 1994, 18(2):17-21.]

    Google Scholar

    [47] 陆克政, 戴俊生. 胶莱盆地的形成和演化[M]. 东营:石油大学出版社, 1994.[LU Kezheng, DAI Junsheng. Development and Evolution of the Jiaolai Basin[M]. Dongying:Press of China University of Petrolium, 1994.]

    Google Scholar

    [48] Zhu G, Song C Z, Wang D X,et al.Tectonic implication and 40Ar/39Ar geochronology of strike-slipping of Tanlu fault belt[J]. Science in China(Series D),2001, 31(3):250-256.

    Google Scholar

    [49] 陈宣华,王小凤,张青,等.形成演化的年代学研究[J].长春科技大学学报,2000,30(3):215-220.

    Google Scholar

    [CHEN Xuanhua, WANG Xiaofeng, ZHANG Qing, et al. Geochronologic study on the formation and evolution of Tan-Lu Fault[J]. Journal of Changchun University of Science and Technology, 2000, 30(3):215-220.]

    Google Scholar

    [50] 张旗, 王焰, 钱青, 等. 中国东部燕山期埃达克岩的特征及其构造-成矿意义[J]. 岩石学报, 2001, 17(2):236-244.

    Google Scholar

    [ZHANG Qi, WANG Yan, QIAN Qing,et al. The characteristics and tectonic-metallogenic significances of the adakites in Yanshan period from eastern China[J]. Acta Petrologica Sinica, 2001, 17(2):236-244.]

    Google Scholar

    [51] 刘训. 对中国东部中、新生代盆地沉积-构造发展的几点认识[J]. 地质学报, 1988, 62(2):111-122.

    Google Scholar

    [LIU Xun. Some recognition on the sedimentary-tectonic development of the Meso-Cenozoic Basins in eastern China[J]. Acta Geologica Sinica, 1988, 62(2):111-122.]

    Google Scholar

    [52] 尚彦军, 夏邦栋, 林鹤鸣, 等. 下扬子区晚中生代逃逸构造初探[J]. 石油与天然气地质, 1997, 18(3):177-182.

    Google Scholar

    [SHANG Yanjun, XIA Bangdong, LIN Heming, et al. An approach to late Mesozoic escape tectonics in Lower Yangtze Region[J]. Oil & Gas Geology, 1997, 18(3):177-182.]

    Google Scholar

    [53] Xu J W, Zhu G, Tong W X. Formation and evolution of the Tancheng-Lujiang wrench fault system:A major shear system to the northwest of the Pacific Ocean[J]. Tectonophysics,1987, 134:273-310.

    Google Scholar

    [54] Li J W, Zhou M F, Li X F, et al. The Hunan-Jiangxi strike-slip fault system in southern China:southern termination of the Tan-Lu fault[J]. Journal of Geodynamics, 2001, 32:333-354.

    Google Scholar

    [55] Cai J X. An early Jurassic dextral strike-slip system in southern South China and its tectonic significance[J]. Journal of Geodynamics, 2013, 63:27-44.

    Google Scholar

    [56] 程世秀, 李三忠, 索艳慧, 等. 南海北部新生代盆地群构造特征及其成因机制[J]. 海洋地质与第四纪地质, 2012,32(6):79-93.

    Google Scholar

    [CHENG Shixiu, LI Sanzhong, SUO Yanhui, et al. Cenozoic tectonics and dynamics of basin groups of the northern South China Sea[J]. Marine Geology and Quaternary Geology, 2012, 32(6):79-93.]

    Google Scholar

    [57] 陈景达. 中国大陆东、南缘构造带沉积盆地类型及其成因机制探讨[J]. 石油学报, 1990, 11(2):13-21.

    Google Scholar

    [CHEN Jingda. Southeastern China continental margin petroleum basin and continental margin tectonic-structural zones[J]. Acta Petrolei Sinica, 1990, 11(2):13-21.]

    Google Scholar

    [58] Yumul H B, Graciano P, Yumul Jr. Mio-Pliocene magmatism in the Baguio Mining District (Luzon, Philippines):age clues to its geodynamic setting[J]. Comptes Rendus de l'Académie des Sciences-Series ⅡA-Earth and Planetary Science, 2000, 331(4):295-302.

    Google Scholar

    [59] 环文林, 时振梁, 郡家全. 中国东部及邻区中新生代构造演化与太平洋板块运动[J]. 地质科学, 1982, 2:179-190.[HUAN Wenlin, SHI Zhenliang, JUN Jiaquan. Meso-cenozoic tectonic evolution of eastern China and adjacent area and movement of the Pacific plate[J]. Scientia Gelolgica Sinica, 1982

    Google Scholar

    , 2:179-190.]

    Google Scholar

    [60] Ratschbacher L, Hacker B R, Webb L E, et al. Exhumation of the ultrahigh-pressure continental crust in east central China:Cretaceous and Cenozoic unroofing and the Tan-Lu fault[J], Journal of Geophysical Research, 2000, 105(B6):13303-13338.

    Google Scholar

    [61] Golonka J. Plate tectonic evolution of the southern margin of Eurasia in the Mesozoic and Cenozoic[J]. Tectonophysics, 2004, 381:235-273.

    Google Scholar

    [62] Haile N S. Reconnaissance palaeomangetic results from Sulawesi, Indonesia, and their bearing on palaeogeographic reconstructions[J]. Tectonophysics, 419(6):77-85.

    Google Scholar

    [63] Hall R, Ali J R, Anderson C D. Cenozoic motion of the Philippine Sea Plate:palaeomagnetic evidence from eastern Indonesia.[J]Tectonics, 1995, 14:1117-1132.

    Google Scholar

    [64] Powell C M, Roots S R, Veevers J J. Pre-breakup continental extension in eastern Gondwanaland and the early opening of the eastern Indian Ocean[J]. Tectonophysics,1988, 155:261-283.

    Google Scholar

    [65] Dewey J F, Cande S, Pitman W C. Tectonic evolution of the India-Eurasia collision zone[J]. Eclogae Geol. Helv.,1989, 82:717-734.

    Google Scholar

    [66] Treloar P J, Coward M P. Indian Plate motion and shape:constraints on the geometry of the Himalayan orogen[J]. Tectonophysics, 1991, 191:189-198.

    Google Scholar

    [67] Harrison T M, Chen W J, Leloup Ph, et al. An early Miocene transition in deformation regime within the Red River fault zone, Yunnan, and its significance for Indo-Asian tectonics[J]. Journal of Geophysical Research:Solid Earth (1978-2012), 1992, 97(B5):7159-7182.

    Google Scholar

    [68] Le Pichon X, Fournier M, Jolivet L. 1992. Kinematics, topography, shortening, and extrusion in the India-Eurasia collision zone[J]. Tectonics,1992,11:1085-1098.

    Google Scholar

    [69] Rowley D B. Age of initiation of collision between India and Asia:A review of stratigraphic data[J]. Earth and Planetary Science Letters, 1996, 145(1):1-13.

    Google Scholar

    [70] Mitchell N C, Parson L M. The tectonic evolution of the Indian Ocean Triple Junction, anomaly 6 to present[J]. Journal of Geophysical Research:Solid Earth (1978-2012), 1993, 98(B2):1793-1812.

    Google Scholar

    [71] Royer J Y, Sandwell D T, Evolution of the eastern Indian Ocean since the Late Cretaceous:Constraints from Geosat altimetry[J]. Journal of Geophysical Rerearch:Soild Earth (1978-2012), 1989, 94(B10):13755-13782.

    Google Scholar

    [72] Koppers A A P, Morgan J P, Morgan J W,et al. Testing the fixed hotspot hypothesis using 40Ar/39Ar age progressions along seamount trails[J]. Earth and Planetary Science Letters 2001, 185:237-252.

    Google Scholar

    [73] Doubrovinea P V, Tarduno J A, Zhao X X. On the magnetostratigraphic age of Nauru Basin basalts of the western Pacific Ocean and timing of Ontong Java volcanism[J]. Earth and Planetary Science Letters, 2009, 287(1-2):175-184.

    Google Scholar

    [74] 孙卫东, 凌明星, 王方跃,等. 太平洋板块俯冲与中国东部中生代地质事件[J]. 矿物岩石地球化学通报, 2008, 27(3):218-225.

    Google Scholar

    [SUN Weidong, LING Mingxing, WANG Fangyue, et al. Pacific plate subduction and Mesozoic geological event in eastern China[J]. Bulletin of Mineralogy, Pet-rology and Geochemistry, 2008, 27(3):218-225.]

    Google Scholar

    [75] 李三忠, 张国伟, 周立宏, 等. 中新生代超级汇聚背景下的陆内差异变形:华北伸展裂解和华南挤压逆冲[J]. 地学前缘, 2011, 18(3):79-107.

    Google Scholar

    [LI Sanzhong, ZHANG Guowei, ZHOU Lihong, et al. Opposite Meso-Cenozoic Intracontinental Deformation under the Super-convergence:Rifting and Extension in the North China Craton and Shortening and Thrusting in the South China Craton[J]. Earth Science Frontiers, 2011, 18(3):79-107.]

    Google Scholar

    [76] Northrup C J, Royden L H, Burchfiel B C. Motion of the Pacific plate relative to Eurasia and its potential relation to Cenozoic extension along the eastern margin of Eurasia[J]. Geology,1995, 23:719-722.

    Google Scholar

    [77] 许淑梅, 张晓东,翟世奎. 四国盆地起源于沉积环境演化[J]. 海洋地质与第四纪地质, 2004, 24(2):119-123.

    Google Scholar

    [XU Shumei, ZHANG Xiaodong,ZHAI Shikui. The origin and sedimentary environment evolution of the Shikoku basin[J]. Marine Geology and Quaternary Geology, 2004, 24(2):119-123.]

    Google Scholar

    [78] Hall R, Fuller M, Ali J R, Anderson C D. The Philippine Sea plate:magnetism and reconstructions[C]//Taylor B, Natland J H, Eds. A Synthesis of Western Pacific Drilling Results, vol. 88. American Geophysical Union, 1995:371-404.

    Google Scholar

    [79] Sdrolias M, Roest W R, Mueller R D. An expression of Philippine Sea plate rotation:the Parece Vela and Shikoku Basins[J]. Tectonophysics, 2004, 394:69-86.

    Google Scholar

    [80] Martin A K. Double saloon door tectonics in the Japan Sea, Fossa Magna, and the Japanese Island Arc[J]. Tectonophysics, 2011, 498:45-65.

    Google Scholar

    [81] 臧绍先,宁杰远.菲律宾海板块与欧亚板块的相互作用及其对东亚构造运动的影响[J].中国物理学报, 2002,45(2):189-197.

    Google Scholar

    [ZANG Shaoxian, NING Jieyuan. Interaction between Philippine Sea Plate and Eurasia Plateand its influence on the movement of eastern Asia[J].Chinese Journal of Geophysics,2002, 45(2):189-197.]

    Google Scholar

    [82] Liu M, Cui X J, Liu F T. Cenozoic rifting and volcanism in eastern China:a mantle dynamic link to the Indo-Asian collision[J]Tectonophysics, 2004, 393:29-42.

    Google Scholar

    [83] 郑彦鹏, 韩国忠, 王勇, 等. 台湾岛及其邻域地层和构造特征[J]. 海洋科学进展, 2003, 21(3):272-280.

    Google Scholar

    [ZHENG Yanpeng, HAN Guozhong, WANG Yong, et al. Stratigraphic and structural characteristics of Taiwan island and its adjacent area[J]. Advances in Marine Science, 2003, 21(3):272-280.]

    Google Scholar

    [84] Hilde T W C, Lee C S. Origin and evolution of the West Philippine Basin:A new interpretation[J]. Tectonophysics, 1984, 102(1-4):85-104.

    Google Scholar

    [85] 金性春. 俯冲作用及其与构造旋回的关系[J]. 海洋通报, 1990, 9(2):77-83.

    Google Scholar

    [JIN Xingchun. Subduction process and its relationship with tectogenetic cycle[J]. Marine Science Bulletin, 1990, 9(2):77-83.]

    Google Scholar

    [86] 安慧婷, 李三忠, 索艳慧, 等. 南海西部新生代控盆断裂及盆地群成因机制[J]. 海洋地质与第四纪地质,2012,32(6):95-111.

    Google Scholar

    [AN Huiting, LI Sanzhong, SUO Yanhui,et al. Basin-controlling faults and formation mechanism of the Cenozoic basin groups in the western South China Sea[J]. Marine Geology and Quaternary Geology, 2012, 32(6):95-111.]

    Google Scholar

    [87] 薛友辰, 李三忠, 刘鑫,等. 南海东部俯冲系统分段性及相关盆地群成盆动力学机制[J]. 海洋地质与第四纪地质, 2012, 32(6):129-147.

    Google Scholar

    [XUE Youchen, LI Sanzhong, LIU Xin, et al. Segmentation of subduction system in the eastern South China Sea and dynamics of related basin groups[J].Marine Geology and Quaternary Geology, 2012, 32(6):129-147.]

    Google Scholar

    [88] Ali J R. Aitchison J C. Greater India. Earth-Science Reviews, 2005, 72(3-4):169-188.

    Google Scholar

    [89] Zhao D P, Maruyama S, Omori S. Mantle dynamics of Western Pacific and East Asia:Insight from seismic tomography and mineral physics[J]. Gondwana Research, 2007, 11:120-131.

    Google Scholar

    [90] 李三忠, 索艳慧, 刘鑫, 等. 南海的盆地群与盆地动力学[J]. 海洋地质与第四纪地质, 2012, 32(6):55-78.

    Google Scholar

    [LI Sanzhong, SUO Yanhui, LIU Xin, et al. Basin dynamics and basin groups of the South China Sea[J]. Marine Geology and Quaternary Geology, 2012, 32(6):55-78.]

    Google Scholar

    [91] 李三忠, 索艳慧, 刘鑫, 等. 南海的基本构造特征与成因模型:问题与进展及论争[J]. 海洋地质与第四纪地质, 2012, 32(6):35-53.

    Google Scholar

    [LI Sanzhong, SUO Yanhui, LIU Xin, et al. Basic structural pattern and tectonic models of the South China Sea:problems, advances and controversites[J]. Marine Geology and Quaternary Geology, 2012, 32(6):35-53.]

    Google Scholar

    [92] 蔡周荣,刘维亮,万志峰,等.南海北部新生代构造运动厘定及与油气成藏关系探讨[J].海洋通报,2010(2):161-165.[CAI Zhourong, LIU Weiliang, WAN Zhifeng,et al. Determination of Cenozoic tectonic movement in the northern South China Sea and the relationship between oil-gas reservoir and tectonic movement[J].Marine Science Bulletin,2010

    Google Scholar

    (2):161-165.]

    Google Scholar

    [93] 姚伯初. 南海海盆新生代的构造演化史[J]. 海洋地质与第四纪地质, 1996, 16(2):1-13.

    Google Scholar

    [YAO Bochu. Tectonic evolution of the South China Sea in Cenozoic[J]. Marine Geology and Quaternary Geology, 1996, 16(2):1-13.]

    Google Scholar

    [94]

    [95] 夏斌,吕宝凤,吴国干,等.南海北部新生代盆地构造迁移及其对烃源岩的制约作用[J].天然气地球科学,2007(5):629-634.[XAI Bin, LV Baofeng,WU Guogan,et al.The Cenozoic tectonic transport and its control on the source rock in the northern South China Sea[J].Natural Gas Geoscience,2007

    Google Scholar

    (5):629-634.]

    Google Scholar

    [96] 孙晓猛, 王璞珺, 郝福江, 等. 中国东部陆缘中区中-新生代区域断裂系统时空分布特征、迁移规律及成因类型[J]. 吉林大学学报:地球科学版, 2005, 35(5):554-563.

    Google Scholar

    [SUN Xiaomeng, WANG Pujun, HAO Fujiang, et al. Space-time distribution features,migration regularities and genetic types of regional fault system of Meso-Cenozoic in the central section of epicontinent of the East China[J]. Journal of Jilin University(Earth Science Edition), 2005, 35(5):554-563.]

    Google Scholar

    [97] 葛肖虹, 任收麦, 马立祥, 等. 青藏高原多期次隆升的环境效应[J]. 地学前缘, 2006, 13(6):118-130.

    Google Scholar

    [GE Xiaohong, REN Shoumai, MA Lixiang,et al. Multi-stage uplifts of the Qinghai-Tibet plateau and their environmental effects[J]. Earth Science Frontiers, 2006, 13(6):118-130.]

    Google Scholar

    [98] Metcalfe I. Gondwana dispersion and Asian accretion:Tectonic and palaeogeographic evolution of eastern Tethys[J]. Journal of Asian Earth Sciences, 2013, 66:1-33.

    Google Scholar

    [99] Morley C K. Late Cretaceous-Early Palaeogene tectonic development of SE Asia[J]. Earth-Science Reviews, 2012, 115:37-75.

    Google Scholar

    [100] Tapponnier P, Peltzer G, Le Dain A Y,et al. Propagating extrusion tectonics in Asia:New insights form simple experiments with plasticine[J].Geology, 1982, 10:611-616.

    Google Scholar

    [101] Tapponnier P, Peltzer G,Armijo R. On the mechanics of the collision between India and Asia[J]. Geological Society, London, Special Publications, 1986, 19:113-157.

    Google Scholar

    [102] Tian Z Y, Du Y L. Formation and evolution of the Yilan-Yitong graben[J]. Tectonophysics, 1987, 133(3-4):165-173.

    Google Scholar

    [103] Ren J Y, Tamaki K, Li S T, Zhang J X. Late Mesozoic and Cenozoic rifting and its dynamic setting in Eastern China and adjacent areas[J]. Tectonophysics, 2002, 344:175-205.

    Google Scholar

    [104] Zhu B Q, Wang H F, Chen Y W, Chang X Y, Hu Y G, Xie J. Geochronological and geochemical constraint on the Cenozoic extension of Cathaysian lithosphere and tectonic evolution of the border Sea basins in East Asia[J]. Journal of Asian Earth Sciences 2004, 24, 163-175.

    Google Scholar

    [105] 李文勇, 李东旭, 夏斌,等.北黄海盆地构造演化特征分析[J]. 现代地质, 2006, 20(2):268-276.

    Google Scholar

    [LI Wenyong, LI Dongxu, XIA Bin, et al. Characteristics of structural evolution in north Yellow Sea basin[J]. Geoscience, 2006, 20(2):268-276.]

    Google Scholar

    [106] 李廷栋, 莫杰. 中国滨太平洋构造域构造格局和东海地质演化[J]. 海洋地质与第四纪地质, 2002, 22(4):1-6.

    Google Scholar

    [LI Yandong, MO Jie. Tectonic framework of the west circum-Pacific tectonic tract and the geological evolution of the East China Sea[J]. Marine Geology and Quaternary Geology, 2002, 22(4):1-6.]

    Google Scholar

    [107] 侯方辉, 张志珣, 张训华, 等. 南黄海盆地地质演化及构造样式地震解释[J]. 海洋地质与第四纪地质, 2008, 28(5):61-68.

    Google Scholar

    [HOU Fanghui, ZHANG Zhixun, ZHANG Xunhua, et al. Geologic evolution and tectonic styles in the south Yellow Sea basin[J]. Marine Geology and Quaternary Geology, 2008, 28(5):61-68.]

    Google Scholar

    [108] Zhou D, Ru K, Chen H Z. Kinematics of Cenozoic extension on the South China Sea continental margin and its implications for the tectonic evolution of the region[J]. Tectonophysics 1995, 251(1-4), 161-177.

    Google Scholar

    [109] 周征宇, 廖宗廷. 印度板块向欧亚板块俯冲碰撞的新模式及其对青藏高原构造演化的影响[J]. 沉积与特提斯地质, 2005, 25(4):27-32.

    Google Scholar

    [ZHOU Zhengyu, LIAO Zongting. The model for the subduction and collision of the Indian plate with the Eurasian plate and its implications for the tectonic evolution of the Qinghai-Xizang Plateau[J].Sedimentary Geology and Tethyan Geology, 2005, 25(4):27-32.]

    Google Scholar

    [110] 陈尚平, 孙德忠. 特提斯洋壳在青藏隆升中所起的作用[J]. 地球学报, 1999, 20(1):24-29.

    Google Scholar

    [CHEN Shangping, SUN Dezhong. Effects of the Tethyan Oceanic crust on the Qinghai-Tibet Uplift[J]. Acta Geoscientia Sinica, 1999, 20(1):24-29.]

    Google Scholar

    [111] 郝杰, 周新华, 李齐, 等. 沿雅鲁藏布江(东段)地区推覆与反向冲断构造的地质特征及其形成机制[J]. 地震地质, 1996, 18(1):30-36.

    Google Scholar

    [HAO Jie, ZHOU Xinhua, LI Qi, et al. Gelolgical features and formation mechanism of the nappe and backthrust along the Yarlung Zangpo River (east section)[J]. Seismology and Gelolgy, 1996, 18(1):30-36.]

    Google Scholar

    [112] Wang E, Burchfiel B C. Interpretation of Cenozoic tectonics in the right-lateral accommodation zone between the Ailao Shan shear zone and the eastern Himalayan syntaxis[J]. International Geology Review,1997, 39:191-219.

    Google Scholar

    [113] 姚华舟, 朱章显, 韦延光, 等. 巽他群岛-新几内亚岛地区地质与矿产[M]. 北京:地质出版社, 2010.[YAO Huazhou, ZHU Zhangxian, WEI Yanguang, et al. Geology and Mineralization in the Sundaland Islands and New Guinea Islands[M]. Beijing:Geological Publishing House, 2010.]

    Google Scholar

    [114] 索艳慧, 李三忠, 刘鑫, 等. 中国东部NWW向活动断裂带构造特征:以张家口-蓬莱断裂带为例[J]. 岩石学报, 2013, 29(3):953-966.

    Google Scholar

    [SUO Yanhui, LI Sanzhong, LIU Xin, et al. Structural characteristics of NWW-trending active fault zones in East China:A case study of the Zhangjiakou-Penglai Fault Zone[J]. Acta Petrologica Sinica, 2013, 29(3):953-966.]

    Google Scholar

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