PANG Yumao, ZHANG Xunhua, GUO Xingwei, XIAO Guolin, HAN Zuozhen. Basin modeling in the initial stage of exploration: a case study from the North Subbasin of the South Yellow Sea Basin[J]. Acta Oceanologica Sinica, 2017, 36(9): 65-78. doi: 10.1007/s13131-017-1112-1
Citation: PANG Yumao, ZHANG Xunhua, GUO Xingwei, XIAO Guolin, HAN Zuozhen. Basin modeling in the initial stage of exploration: a case study from the North Subbasin of the South Yellow Sea Basin[J]. Acta Oceanologica Sinica, 2017, 36(9): 65-78. doi: 10.1007/s13131-017-1112-1

Basin modeling in the initial stage of exploration: a case study from the North Subbasin of the South Yellow Sea Basin

doi: 10.1007/s13131-017-1112-1
  • Received Date: 2017-02-05
  • Basin modeling has become an important tool for analyzing sedimentary basins. The North Subbasin of the South Yellow Sea Basin is filled with thick Meso-Cenozoic terrigenous deposits during the rift evolution stage. The accumulation of data and achievements of geological investigations in recent years have provided the preconditions for basin modeling. The necessary parameters and geological elements for simulations are collated and summarized. Modeling of tectono-thermal evolution is performed and the related trend in heat flow is reconstructed and calibrated. The heat flow value commences from an average level of 61 mW/m2 during Middle-Late Jurassic, rises to about 80 mW/m2 from circa 145 Ma to circa 74 Ma, and then undergoes a gradual decline to 65 mW/m2 until the end of Oligocene.Three evolutionary phases, namely, the initial rifting phase, syn-rifting phase, and post-rifting phase, have been identified. The modeling results show that the North Subbasin generally enters into a stage of strong rifting during Cretaceous and undergoes rapid subsidence until the Late Cretaceous, then follows by a stage of moderate rifting during the Paleogene. The input and general workflow involved in 3-D modeling are introduced. Reconstruction of the petroleum system in the North Subbasin reveals that the threshold depth of hydrocarbon generation is located near the top of the Paleogene Funing formation, and the underlying Jurassic and Cretaceous source rocks have reached or exceeded peak oil generation and have almost completed the generation and expulsion of hydrocarbons. The main generation and expulsion in the Jurassic source rocks take place during the syn-rifting and post-rifting phases, whereas the peak generation and expulsion in the Cretaceous and Paleogene source rocks take place during the post-rifting phase. Although the study area is still a relatively less explored sedimentary basin, the results of modeling can provide valuable information for exploration. A preliminary discussion of the main uncertainty factors is also presented.
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  • Allen P A, Allen J R. 1990. Basin analysis:principles and applications. Cambridge:Blackwell Scientific Publications, 451
    Aydin A. 2000. Fractures, faults, and hydrocarbon entrapment, migration and flow. Marine and petroleum geology, 17(7):797-814
    Bao Hanyong, Guo Zhanfeng, Huang Yaping, et al. 2013a. tectono-thermal evolution of the Subei Basin since the Late Cretaceous. Geological Journal of China Universities (in Chinese), 19(4):574-579
    Bao Hanyong, Guo Zhanfeng, Zhang Luolei, et al. 2013b. Calculating methods and assessment of stretching factor:a case study of Northern Jiangsu Basin. Petroleum Geology & Experiment (in Chinese), 35(3):331-346
    Baur F, Littke R, Wielens H, et al. 2010. Basin modeling meets rift analysis-A numerical modeling study from the Jeanne d'Arc basin, offshore Newfoundland, Canada. Marine and Petroleum Geology, 27(3):585-599
    Behar F, Vandenbroucke M, Tang Y, et al. 1997. Thermal cracking of kerogen in open and closed systems:determination of kinetic parameters and stoichiometric coefficients for oil and gas generation. Organic Geochemistry, 26(5):321-339
    Brown LF, Fisher WL. 1977. Seismic stratigraphic interpretation of depositional systems. In:Payton CE (ed) Seismic stratigraphy-applications to hydrocarbon exploration. AAPG Mem 26:213-248
    Cai Jia, Zhao Zhigang, Zhang Xilin, et al. 2014. On sedimentary facies in Funing formation of northern sag in north depression in South Yellow Sea Basin. Journal of Geology (in Chinese), 38(4):530-535
    Cao Qiang, Ye Jiaren. 2008. Prediction of source rock of Northeast Sag in North Depression in South Yellow Sea Basin. Geological Science and Technology Information (in Chinese), 27(4):75-79
    Cao Qiang, Ye Jiaren, Shi Wanzhong, et al. 2009. Preliminary prediction and evaluation of source rocks in low-exploration basins:A case study on the northeast sag of the Northern South Yellow Sea Basin in China. Acta Petrolei Sinica (in Chinese), 30(4):522-529
    Du Qingxiang, Han Zuozhen, Shen Xiaoli, et al. 2017. Geochemistry and geochronology of Upper Permian-Upper Triassic volcanic rocks in eastern Jilin Province, NE China:implications for the tectonic evolution of the Palaeo-Asian Ocean. International Geology Review, 59(3):368-390
    Gao Shunli, Xu Xi, Zhou Zuyi. 2015. Structural deformation and genesis of the northern sub-basin in South Yellow Sea since Late Cretaceous. Oil & Gas Geology (in Chinese), 36(6):924-933
    Gao Shunli, Zhou Zuyi. 2014. Discovery of the Jurassic strata in the North-East Sag of South Yellow Sea. Geological Journal of China Universities (in Chinese), 20(2):286-293
    Gonçalves F T, Mora C A, Córdoba F, et al. 2002. Petroleum generation and migration in the Putumayo Basin, Colombia:insights from an organic geochemistry and basin modeling study in the foothills. Marine and petroleum geology, 19(6):711-725
    Hao Tianyao, Huang Song, Xu Ya, et al. 2010. Geophysical understandings on deep structure in Yellow Sea. Chinese Journal of Geophysics (in Chinese), 53(6):315-1326
    He Lijuan. 2002. Effects of lithospheric rheology on thermal-mechanical modeling of extensional basins. Chinese Journal of Geophysics (in Chinese), 45(1):49-55
    Helwig J A. 1985. Origin and classification of sedimentary basins. 17th Annu offshore TechnolConf, Houston, OTC 4843, 21-32.
    Hou Fanghui, Zhang Zhixun, Zhang Xunhua, et al. 2008. Geologic evolution and tectonic styles in the South Yellow Sea Basin. Marine Geology & Quaternary Geology (in Chinese), 28(5):61-68
    Jarvis G T, McKenzie D P. 1980. Sedimentary basin formation with finite extension rates. Earth and Planetary Science Letters, 48(1):42-52
    Jin Zhijun, Cao Jian, Hu Wenxuan, et al. 2008. Episodic petroleum fluid migration in fault zones of the northwestern Junggar Basin (northwest China):Evidence from hydrocarbon-bearing zoned calcite cement. AAPG bulletin, 92(9):1225-1243
    Juan V C. 1986. Thermal-tectonic evolution of the Yellow Sea and East China Sea-Implication for transformation of continental to oceanic crust and marginal basin formation. Tectonophysics, 125(1-3):231-244
    Lee G H, Kwon Y I, Yoon C S, et al. 2006. Igneous complexes in the eastern Northern South Yellow Sea Basin and their implications for hydrocarbon systems. Marine and Petroleum Geology, 23(6):631-645
    Li Pilong, Jin Zhijun, Zhang Shanwen, et al. 2003. The present research status and progress of petroleum exploration in the Jiyang Depression. Petroleum Exploration and Development (in Chinese), 30(3):1-4
    Li Ming, Zhao Yimin, Liu Xiao, et al. 2009. Distribution of petroleum enriched areas, Changling Sag, southern Songliao Basin. Petroleum Exploration and Development (in Chinese), 36(4):413-418
    Liao Jie, Zhou Di, Zhao Zhongxian. 2009. Numerical models of the tectono-thermal evolution of rift basins and their applications to the Northern South China Sea. Journal of Tropical Oceanography (in Chinese), 28(6):41-51
    Liu Qiongying, He Lijuan. 2015. Discussion on several problems in tectono-thermal modeling of rift basins. Chinese Journal of Geophysics (in Chinese), 58(2):601-612
    Magoon L B, Dow W G. 1994. The petroleum system:From source to trap. American Association of Petroleum Geologists (AAPG), Mem 60, Tulsa:3-24
    McKenzie D. 1978. Some remarks on the development of sedimentary basins. Earth and Planetary science letters, 40(1):25-32
    Moretti I. 1998. The role of faults in hydrocarbon migration. Petroleum Geoscience, 4(1):81-94
    Novelli L, Welte D H, Mattavelli L, et al. 1988. Hydrocarbon generation in southern Sicily. A three dimensional computer aided basin modeling study. Organic geochemistry, 13(1):153-164
    Pang Yumao, Zhang Xunhua, Xiao Guolin, et al. 2016a. Comparative study of tectonic evolution and petroleum geological conditions of typical superimposed basins in upper and lower Yangtze block. Marine Geology & Quaternary Geology (in Chinese), 36(1):133-142
    Pang Yumao, Zhang Xunhua, Xiao Guolin, et al. 2016b. Structural and geological characteristics of the South Yellow Sea Basin in Lower Yangtze Block. Geological Review (in Chinese), 62(3):604-616
    Pang Yumao, Zhang Xunhua, Xiao Guolin, et al. 2017. Characteristics of Meso-Cenozoic Igneous Complexes in the South Yellow Sea Basin, Lower Yangtze Craton of Eastern China and the Tectonic Setting. ACTA GEOLOGICA SINICA(English edition), 91(3):971-987
    Pitman J K, Steinshouer D, Lewan M. 2004. Petroleum generation and migration in the Mesopotamian Basin and Zagros Fold Belt of Iraq:results from a basin-modeling study. GeoArabia, 9(4):41-72
    Poelchau H S, Baker D R, Hantschel T, et al. 1997. Basin simulation and the design of the conceptual basin model. In:Welte D H, Horsfield B, Baker D R, Eds. Petroleum and Basin Evolution. Berlin:Springer, 3-70
    Posamentier H W, Vail P R. 1988. Sequences, systems tracts and eustatic cycles. AAPG Bull 72:237
    Qi Jianghao, Wen Zhenhe, Zhang Xunhua, et al. 2013. Lithostratigraphic correlation of Mesozoic and Palaeozoic marine strata between South Yellow Sea and Upper Yangtze region. Marine Geology&Quaternary Geology (in Chinese), 33(1):109-119
    Qiu Nansheng. 2004. Sedimentary basin thermal system research theory and application. Beijing, China, Petroleum Industry Press (In Chinese)
    Rodriguez J F, Littke R. 2001. Petroleum generation and accumulation in the Golfo San Jorge Basin, Argentina:a basin modeling study. Marine and Petroleum Geology, 18(9):995-1028
    Royden L, Keen C E. 1980. Rifting process and thermal evolution of the continental margin of eastern Canada determined from subsidence curves. Earth and Planetary Science Letters, 51(2):343-361
    Schneider F, Wolf S, Faille I, et al. 2000. A 3D basin model for hydrocarbon potential evaluation:application to Congo offshore. Oil & Gas Science and Technology, 55(1):3-13
    Shinn Y J, Chough S K, Hwang I G. 2010. Structural development and tectonic evolution of Gunsan Basin (Cretaceous-Tertiary) in the central Yellow Sea. Marine and Petroleum Geology, 27(2):500-514
    Steckler M S, Watts A B. 1978. Subsidence of the Atlantic-type continental margin off New York. Earth and Planetary Science Letters, 41(1):1-13
    Sweeney J J, Burnham A K. 1990. Evaluation of a simple model of vitrinite reflectance based on chemical kinetics (1). AAPG, 74(10):1559-1570
    Tong Zhigang, Hu Gencheng, He Qing. 2005. The tectonic subsidence and heat flow of the Western Nansha area. Geotectonica ET Metallogenia (in Chinese), 29(3):371-376
    Wang Liangshu, Li Cheng, Shi Yangshen, et al. 1995. Distributions of geotemperature and terrestrial heat flow density in Lower Yangtze area. Acta Geophysica Sinica (in Chinese), 38(4):469-476
    Waples D W. 2001. A new model for heat flow in extensional basins:radiogenicheat, asthenospheric heat, and the McKenzie model. Natural ResourcesResearch, 10(3):227-238
    Welte D H, Yalçin M N. 1987. Formation and occurrence of petroleum in sedimentary basins as deduced from computer-aided basin modelling. Petroleum geochemistry and exploration in the Afro-Asian region,:17-23
    Welte D H, Yalçin M N. 1988. Basin modelling:a new comprehensive method inpetroleum geology. Organic Geochemistry, 13(1–3):141-151
    Wu Shiguo, Ni Xianglong, Cai Feng. 2008. Petroleum geological framework and hydrocarbon potential in the Yellow Sea. Chinese Journal of Oceanology and Limnology, 26:23-34
    Wygrala B P. 1988. Integrated computer-aided basin modeling applied to analysis of hydrocarbon generation history in a Northern Italian oil field. Organic geochemistry, 13(1):187-197
    Wygrala B P. 1989. Integrated study of an oil field in the southern Po basin, northern Italy[dissertation]. Germany:University of Cologne
    Xiao Guolin. 2002. Reassessment of petroleum geologic features and potential reserves in the South Yellow Sea Basin. Marine Geology & Quaternary Geology (in Chinese), 22(2):81-87
    Xu Yi, Li Zhiwei, Liu Jinsong, et al. 2008. Pn wave velocity and anisotropy in the Yellow Sea and adjacent region. Chinese Journal of Geophysics (in Chinese), 51(5):1444-1450
    Xu Yi, Li Zhiwei, Kim K H, et al. 2009. Crustal velocity structure and collision boundary between the Sino-Korea and Yangtze blocks in the Yellow Sea. Chinese Journal of Geophysics (in Chinese), 52(3):646-652
    Yalçin M N. 1991. Basin modeling and hydrocarbon exploration. Journal of Petroleum Science and Engineering, 5(4):379-398
    Yang Shuchun, Cai Dongsheng, Feng Xiaojie, et al. 2003a. Thermal maturation and hydrocarbon generation stages of the pre-Tertiary source rocks in south basin, the Southern Yellow Sea. China Offshore Oil and Gas:Geology (in Chinese), 17(6):370-375
    Yang Shuchun, Hu Shengbiao, Cai Dongsheng, et al. 2003b. Geothermal field characteristics and tectono-thermal evolution in the southern basin of South Yellow Sea. Chinese Science Bulletin (in Chinese), 48(14):1564-1569
    Yao Yongjian, Chen Chunfeng, Feng Zhiqing, et al. 2010. Tectonic evolution and hydrocarbon potential in northern area of the South Yellow Sea. Journal of Earth Science, 21:71-82
    Yao Yongjian, Feng Zhiqiang, Hao Tianyao, et al. 2008. A new understanding of the structural layers in the South Yellow Sea Basin and their hydrocarbon-bearing characteristics. Earth Science Frontiers, 15(6):232-240
    Yao Yongjian, Xia Bin, Feng Zhiqiang, et al. 2005. Tectonic evolution of the South Yellow Sea since the Paleozoic. Petroleum Geology & Experiment (in Chinese), 27(2):124-128
    Yi S, Yi S, Batten D J, et al. 2003. Cretaceous and Cenozoic non-marine deposits of the Northern South Yellow Sea Basin, offshore western Korea:palynostratigraphy and palaeoenvironments. Palaeogeography, Palaeoclimatology, Palaeoecology, 191(1):15-44
    Zhang Xunhua, Yang Jinyu, Li Gang, et al. 2014a. Basement structure and distribution of Mesozoic-Paleozoic marine strata in the South Yellow Sea basin. Chinese Journal of Geophysics (in Chinese), 57(12):4041-4051
    Zhang Yinguo, Xiao Guolin, Wu Zhiqiang, et al. 2014b. Sedimentary characteristics and evolution of the Paleogene in the northern depression of the South Yellow Sea Basin. Marine Geology Frontiers (in Chinese), 30(10):26-33
    Zhang Minghua, Xu Deshu, Chen Jianwen. 2007. Geological structure of the yellow sea area from regional gravity and magnetic interpretation. Applied Geophysics, 4(2):75-83
    Zhang Zhongmin, Zhou Jin, Wu Xingwei. 2006. Oil and gas migration periods and accumulation process in central anticlinal zone in the Xihu Sag, the East China Sea Basin. Petroleum Geology & Experiment (in Chinese), 28(1):30-33
    Zhu Ping. 2007. Petroleum system analysis of the Northern Sag, the Southern Yellow Sea Basin. Petroleum Geology & Experiment (in Chinese), 29(6):549-553
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