YANG Fengli, ZHOU Zuyi, ZHANG Na, LIU Ning, NI Bin. Stress field modeling of northwestern South China Sea since 5.3 Ma and its tectonic significance[J]. Acta Oceanologica Sinica, 2013, 32(12): 31-39. doi: 10.1007/s13131-013-0385-2
Citation: YANG Fengli, ZHOU Zuyi, ZHANG Na, LIU Ning, NI Bin. Stress field modeling of northwestern South China Sea since 5.3 Ma and its tectonic significance[J]. Acta Oceanologica Sinica, 2013, 32(12): 31-39. doi: 10.1007/s13131-013-0385-2

Stress field modeling of northwestern South China Sea since 5.3 Ma and its tectonic significance

doi: 10.1007/s13131-013-0385-2
  • Received Date: 2013-05-18
  • Rev Recd Date: 2013-08-04
  • Tectonically, the northwestern South China Sea (SCS) is located at the junction between three micro-plates, i.e., the Indochina, South China and Zhongsha-Xisha micro-plates, and involves three basins, i.e., the Yinggehai Basin, the Qiongdongnan Basin and Xisha Trough in the east, and the Zhongjiannan Basin in the south. Since the Pliocene (5.3 Ma), the Yinggehai Basin has experienced repeated accelerating subsidence, high thermal fluid, and widely developing mud-rich overpressure chambers, abundant mud diapers and crust-mantle mixed CO2. While a large central canyon was developed in the Qiongdongnan Basin, new rift occurred in the Xisha Trough. These characteristics demonstrate a single tectonic unit for the northwestern SCS, for which we have undertaken stress field modeling to understand its plate deformations and sedimentary responses. Our results demonstrate that an extension tectonic event occurred after 5.3 Ma in the Yinggehai-Qiongdongnan-Xisha trough area, which is characterized by thinner crust (<16 000 m), half-graben or graben structural style and thicker sedimentary sequences (>3 500 m). A new rift system subsequently was developed in this area; this event was mainly driven by the combined effects of different movement velocity and direction of the three micro-plates, and the far-field effect of the continental collision between the Indian Plate and the Tibetan Plateau, and subduction of the Pacific Plate underneath the Eurasian Plate.
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  • Anderson D L. 1989.Theory of the Earth. Oxford: Blackwell Scientific Publications
    Ben A Z, Uyeda S. 1983. Entrapment of marginal seas. In: Hilde T W C, SelyaUyeda, eds. Geodynamics of the Western Pacific-Indonesian Region. Geodynamic Series, 1983, II: 91-104
    CaiJia. 2009. Paleo-morphologic restoration of paleogene in Qiongdongnan basin and its control on Sequence Architecture and Sedimentary Characteristics (in Chinese) [dissertation]. Beijing: China University of Geosciences
    Carlson R L, Melia P J. 1984.Subduction hinge migration. Tectonophysics, 102(1984): 399-411
    Chen Jie, Wen Ning. 2010. Atlas of Geophysics of the South China Sea (in Chinese). Beijing: Science Press, 6
    Flower M F J, Tamaki K, N Hoang M. 1998. Mantle extrusion: a model for dispersed volcanism and DUPAL-like asthenosphere in east Asia and the western Pacific. In: Flower M F J, ed. Mantle Dynamics and Plate Interactions in East Asia. Geodynamics Ser 27. Washington D C: AGU, 67-87
    GaoHongfang, Chen Ling. 2006. An analysis of structural framework and formation mechanism of Zhongjiannan Basin in the west of South China Sea. Oil & Gas Geology (in Chinese), 27(4): 512-516
    GaoHongfang. 2011. A tentative discussion on strike-slipping character and formation mechanism of western-edge fault belt in South China Sea. Geology in China (in Chinese), 38(3): 537-543
    Gong Zaisheng, Li Sitian, XieTaijun. 1997. Analysis of Continent Marginal Basins and Oil & Gas Concentration of the Northern South China Sea (in Chinese). Beijing: Science Press
    Gong Zaisheng, Li Sitian. 2004. Hydrocarbon accumulation dynamics study of continent marginal basins of the northern South China Sea (in Chinese). Beijing: Science Press,46-60
    Guolingzhi, Zhongzhihong, Wang liangshu, et al. 2001.Regional tectonic evolution around Yinggehai Basin of South China Sea. Geological Journal of China Universities (in Chinese), 7(1): 2-12
    He Jiaxiong, Zhu Youhai, Huang Xia, et al. 2011.Accumulated mechanisms for different genetic types of non-biological CO2 and controlling factors in north marginal basins, South China Sea. Natural Gas Geosicence (in Chinese), 22(6): 935-942
    He Liansheng, Wang Guangyu, Shi Xiaochao. 1980. Xisha trough- the Cenozoic rift: Geological Review (in Chinese), 26(6): 486-489
    He Lijuan, XiongLiangping, Wang Jiyang, et al. 2000.The simulation research about the tectonic thermal evolution of Yinggehai Basin (in Chinese). Science in China (Series D), 30(4): 415-419
    Hilde T W C, Lee C S. 1984. Origin and evolution of the West Philippine basin: a new interpretation. Tectonophysics, 102(1984): 85-104
    Kong Yuan, XuZhongjie, Chen Rihui, et al. 2012. Mesozoic tectonic and geographic evolution in the areas around the South China Sea. Global Geology, 31(4): 693-703
    Lee G H, Watkins J S. 1998. Seismic sequence stratigraphy and hydrocarbon potential of the PhuKhanh Basin, offshore central vietnam, South China Sea. AAPG Bulletin, 82(9): 1711-1735
    Lei Chao.2012. The cenozoic tectonic deformation pattern and its evolution process analysis in Yinggehai-Qiongdongnan basin in the northern of the South China Sea (in Chinese) [dissertation]. Beijing: China University of Geosciences
    Lerche I, Yarzab R F, Kendall C G St C. 1984. Determination of paleo-heat flux form vitrinite reflectance data. AAPG Bulletin, 68(11): 1704-1717
    Li Jiabiao. 1997. The Rifting and Collision of the South China Sea Terrain System. Proceedings of 30th Geological Congress,VSP,1997(13): 33~46
    Li Jiabiao, Jin Xianglong, RuanAiguo, et al. 2004. Extrusional structure of the middle of accretionary wedge in Manila Trench. Science Bulletin (in Chinese), 49(10): 1000-1008
    Lin Zhen. 2004. Magnetic basement and crust structure of Zhongjiannan Basin in the Nansha Sea Area. Marine Geology Letters (in Chinese), 20(4): 17-24
    Liu Baoming, Xia Bin, Li Xuxuan, et al. 2006. Southeastern extension and significance of structureal evolution of Red River Fault Zone. Science in China (Series D: Earth Science) (in Chinese), 36(10): 914-924
    Liu Daizhi. 1990. Study on the mathematical model of the mantel creep with variable viscosityand its application (2). GeotectonicaetMetallogenia (in Chinese), 14(4): 89-93
    Liu Fanglan, Wu Lushan. 2006. Topographic and morphologic characteristics and genesis analysis of Xisha Trough sea area in the South China Sea. Marine Geology & Quaternary Geology (in Chinese), 26(3): 7-14
    Liu Guangding. 1992. Features of geophysical fields and geodynamics of the sea areas of China. Acta Geological Sinca (in Chinese), 66(4): 300-314
    Liu Z, Peter B. 2002. Finite element modeling of neotectonics in New Zealand. Journal of Geophysical Research: Solid Earth (1978-2012), 107(B12): ETG 1-1-ETG 1-18
    Liu Z, Peter B. 2006. Two-dimensional and three-dimensional finite element modelling of mantle processes beneath central South Island, New Zealand. Geophys J Int, 165: 1003-1028
    Miyashiro A. 1986. Hot regions and the origing of marginal basins in the Western Pacific.Tectonophysics, 122(1986): 195-216
    Pang Xiongqi, Chen Zhangming, Chen Fajing. 1994. An approach to modeling nonlinear change paleoheat flux by backstripping. Journal of Daqing Petroleum Institute (in Chinese), 18(2): 9-16
    Peter B, Kong X. 1994. Computer simulations of California tectonics confirm very low strength of major faults. Geological Society of America Bulletin, 106(2): 159-174
    Peter B. 1999. Thin-plate and thin Shell finite-element programs for forward dynamic modeling of plate deformation and faulting. Computers & Geosciences, 25: 383-394
    Peter B. 2003. An updated digital model of plate boundaries. Geochemistry Geophysics Geosystems, 4(3): 1027
    Peter D C, Andrew C, Ian H C, et al. 2006. Thermochronology of mineral grains in the Red and Mekong Rivers, Vietnam: Provenance and exhumation implications for Southeast Asia. Geochemistry Geophysics Geosystems, 7(10): 1-28
    QiuXuelin, Zhou Di, Xia Kanyuan, et al. 2000.OBH experiment and crustal structure of Xisha Trough, South China Sea. Tropic Oceanology (in Chinese), 19(2): 9-18
    Sato K, Peter B. 2002. Numerical modeling of neotectonics of Japan with SHELLS (abstract). Eos Transactions of the American Geophysical Union, Western Pacific Geophysics Meeting Supplement, SE22A-03
    Shan Jiazeng, Zhang Qiming. 1994. The mechanism of mud diapir structure in Yinggehai Basin, the South China Sea. Petroleum Exploration & Development (in Chinese), 21(2): 106-107
    Shi Xiaobin, QiuXuelin, Xia Kanyuan, et al. 2003. Heat flow characteristics and its tectonic significance of South China Sea. Journal of Tropical OceaNogRaphy, 22(3): 63-73
    Shi Xiaobin, Zhou Di, Zhang Yixiang, et al. 2002.Density, Thermal and rheological structures of Xisha Trough, South China Sea. Tropic Oceanology (in Chinese), 21(2): 23-31
    Song Yang, Zhao ChangYu, Zhang Gongchen, et al. 2011. Research on tectonic-thermal modeling for Qiongdongnan Basin and Pearl River Mouth Basin in the northern China Sea. Chinese Journal of Geophysics (in Chinese), 54(12): 3057-3069
    Su Ming, Li Junliang, Jiang Tao, et al. 2009. Morphological features and formation mechanism of central canyon in the Qiongdongnan Basin, Northern South China Sea. Marine Geology & Quaternary Geology (in Chinese), 9(4): 85-93
    Su Ming, XieXinong, Jiang Tao, et al. 2011a. Characteristics of S40 boundary and its significance in Qiongdongnan Basin, Northern Continental Margin of South China Sea. Earth Science-Journal of China University of Geosciences (in Chinese), 36(5): 886-894
    Su Ming, XieXinong, Li Junliang, et al. 2011b. Gravity flow on slope and abyssal systems in the Qiongdongnan Basin, Northern South China Sea.Acta Geologic Sinica, 85(1): 243-253
    Sun Xiangyang, RenJianye. 2003. Dynamical mechanism for generation and evolution of Yinggehai Basin, the South China Sea. Marin Geology & Quaternary Geology (in Chinese), 23(4): 45-50
    Sun Xiaoqing. 2008. Present situation and prospect of application for finite element numerical simulation of palaeo-tectonic stress field. Fault-Block Oil & Gas Field, 15(3): 31-33
    Tapponnier P, Peltzer G, Armijo P. 1986. On the mechanics of the collision between India and Asia.GeolSocLond Spec Pub, 19: 115-157
    Tapponnier P, Peltzer G, LeDain A Y, et al. 1982. Propagating extrusion tectonics in Asia: new insights from simple experiments with plasticine. Geology, 611-616
    Taylor B, Hayes D E. 1983. Origin and history of the South China Sea Basin. In: Hayes D E, ed. The tectonic and geologic evolution of Southeast Asian Seas and Islands. Washington D C: 23-561
    TengJiwen, Wu Hua, Wang Aiwu, et al. 1994. The structure and dynamics of the lithosphere in Continent Margin of Southeast China (in Chinese). Science in China (Series B), 24(8): 866-870
    Wang Wei, Zhou Zuyi. 2008. Uncertainties in the inversion of vitrinite reflectance profile—A case study of well Chayuan 1, west Huibei and east Chongqing. Petroleum Geology & Experiment (in Chinese), 30(3): 292-296
    XieWenyan, Wang Tao, Zhang Yiwei, et al. 2009. Characteristics and dynamic analysis of Cenozoic rifting and magmatism in Southwest Qiongdongnan Basin.GeotectonicaEtMetallogenia (in Chinese), 33(2): 199-205
    XieWenyan, Zhang Yiwei, Sun Zhen, et al. 2007. Characteristics and formation mechanism of Faults in Qiongdongnan Basin. Marine Geology & Quaternary Geology (in Chinese), 27(1): 71-78
    XiongBinhui, Liu Chuncheng, GuoRui. 2009. The depositional model of Xisha Trough. Offshore Oil (in Chinese), 29(4): 1-9
    XuHuilong, QiuXuelin, Sun Jinlong. 2006. Neotectonics and the accumulation of oil and gas attributed to the expulsion activity of geopressured system in the Yinggehai Basin, the South China Sea. Marine Geology & Quaternary Geology (in Chinese), 26(3): 93-100
    Yan Pin, Deng Hui, Liu Hailing, et al. 2006.The temporal and spatial distribution of volcanism in the South China Sea region. J Asian Earth Sci, 27: 647-659
    Yang Fengli, GaoDengliang, Sun Zhuan, et al. 2012. The evolution of the South China Sea Basin in the Mesozoic - Cenozoic and its significance for oil and gas exploration: A review and overview. In: GaoDengliang, ed., Tectonics and Sedimentation: Implications for Petroleum Systems: AAPG Memoir 100. 397 - 418
    Yasvi M, Epp D, Nagasaka K, et al. 1970.Terrestrial heat flow in the seas round the NanseiShoto( Ryukyu Island ). Tectonophsics, 10(1970): 225-234
    Yin Xiulan, Ma Yinsheng, FengXiangyang, et al. 2005.Thermal stresses and their effects during the deep hot fluids penetrating upward in DF1-1 diapiric area, Yinggehai Basin. Earth Science——Journal of China University of Geoscience (in Chinese), 30(1): 83-88
    Yin Youquan. 2003. Computational Solid Mechanics Methods (in Chinese). Beijing: Beijing Science and Technology Press, 121-148
    Zhang Shengli. 2010. Modeling of tectonic stress field-the theory, method and related research progress of the finite element method. Northwestern Seismological Journal, 32(4): 405-410
    Zhang Yuchang, GaoChanglin. 2006. Continental thermal covering effect and basin evolution. West China Petroleum Geosciences (in Chinese), 2(1): 1-7
    Zhang Xunhua, Li Yancheng, Qi Zhenhua, et al. 1997. An Approach the Formation and Evolution Model of South China Sea Basin (in Chinese). Marine Geology and Quaternary Geology, 17(2): 1-6
    Zhao Huimin, LvBingquan, Sun Hongbin, et al. 2002. Formation and Evolution of Marginal Basins in the Western Pacific. Marine Geology and Quaternary Geology (in Chinese), 22(1): 57-62
    Zhou Zhengyu, Liao Zongting. 2005. 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. Sedimentary Geology and Tethyan Geology, 25(4): 27-32
    Zhou Zuyi, Ding Xiao, Liao Zongting, et al. 1997. Formation of marginal basins and its implication to the tectonic evolution of Southeast China. Advance in Earth Sciences, 12(1): 7-14
    Zhu Mangzheng, Stephan G, Tim M. 2009. The red river fault zone in the Yinggehai Basin, South China Sea.Tectonophysics, 479: 397-417
    Zhu Weilin, MiLijun. 2010. Atlas of Oil and Gas Basins, China Sea (in Chinese). Beijing: Publishing House of Oil Industry, 20-25
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