Advanced Search

Indexed by SCI、CA、РЖ、PA、CSA、ZR、etc .

Volume 25 Issue 3
Jun 2014
Turn off MathJax
Article Contents
Ming Sun, Hua Wang, Jihua Liao, Huajun Gan, Jun Xiao, Jinfeng Ren, Shu'e Zhao. Sedimentary Characteristics and Model of Gravity Flow Depositional System for the First Member of Upper Miocene Huangliu Formation in Dongfang Area, Yinggehai Basin, Northwestern South China Sea. Journal of Earth Science, 2014, 25(3): 506-518. doi: 10.1007/s12583-014-0451-5
Citation: Ming Sun, Hua Wang, Jihua Liao, Huajun Gan, Jun Xiao, Jinfeng Ren, Shu'e Zhao. Sedimentary Characteristics and Model of Gravity Flow Depositional System for the First Member of Upper Miocene Huangliu Formation in Dongfang Area, Yinggehai Basin, Northwestern South China Sea. Journal of Earth Science, 2014, 25(3): 506-518. doi: 10.1007/s12583-014-0451-5

Sedimentary Characteristics and Model of Gravity Flow Depositional System for the First Member of Upper Miocene Huangliu Formation in Dongfang Area, Yinggehai Basin, Northwestern South China Sea

doi: 10.1007/s12583-014-0451-5
More Information
  • Corresponding author: Hua Wang, 569811200@qq.com
  • Received Date: 26 Oct 2013
  • Accepted Date: 29 Mar 2014
  • Publish Date: 01 Jun 2014
  • The gravity flow deposit were mainly developed in the lowstand systems tract (LST) of the first member of Upper Miocene Huangliu Formation (Ehl 1) in Dongfang area, Yinggehai Basin, has become a valuable target for gas exploration and production. The gravity flow sedimentary characteristics of lithofacies associations, sedimentary texture, seismic facies and logging facies were described in detail on the basis of integrated analysis of cores, logging and seismic data. The sedimentary microfacies types composed of neritic sandbar, continental shelf mud, main channel, bifurcated or cross-cutting distributary channel, overspill, and natural levee are revealed under the constraint of high resolution sequence stratigraphic framework in the Ehl 1. The gravity flow deposit system in the LST is divided into three evolution stages corresponding to periods of three parasequence sets. The gravity flow deposit was induced in the early LST, expanded rapidly in the middle LST and decreased slightly in the late LST. But its developing scale decreased sharply in the transgression systems tract (TST) and finally vanished in the highstand systems tract (HST). This spatial evolution rule is constrained by the integrated function of sediments supply of the Vietnam Blue River in the LST, the development of local gradient change in sea floor (micro-topography, i.e., flexure slope break), and the fall in relative sea level. On the basics of the deep study of the coupling relationship among the three main control factors, the sedimentary model is established as an optimal component of "source-channel-sink" for shallow marine turbidite submarine fan.

     

  • loading
  • Deng, H. W., Wang, H. L., Wang, J. F., et al., 2004. Self-Similarity of Constitution of Sequence Stratigraphy and Distribution of Sandbodies and Lithologic Reservoirs: Taking Delta-Turbidite Fan System as an Example. Oil & Gas Geology, 25(5): 16–20 (in Chinese with English Abstract)
    Hao, F., Li, S. T., Gong, Z. S., 2001. The Machanics of the Diaper and the Fluid Episodic Infilling of Yinggehai Basin. Science in China Series D: Earth Science, 31(6): 471–476 (in Chinese)
    He, J. X., Xia, B., Zhang, S. L., et al., 2006. Origin and Distribution of Mud Diapirs in the Yinggehai Basin and Their Relation to the Migration and Accumulation of Natural Gas. Geology in China, 33(6): 1336–1344 (in Chinese with English Abstract)
    He, L. J., Xiong, L. P., Wang, J. Y., 2000. Simulation Studies on the Tectonic Thermal Evolution in Yinggehai Basin. Science in China Series D: Earth Science, 30(4): 415–419 (in Chinese)
    He, W. J., Xie, J. Y., Liu, X. Y., et al., 2011. Foraminiferal Biostratigraphy and Sedimentary Environment Reconstruction Based on Paleontological Data from Bore Hole DF1-1-11, Yinggehai Basin. Journal of Stratigraphy, 25(1): 81–87 (in Chinese with English Abstract)
    Jin, B., Liu, Z., Li, X. S., 2009. The Dominant Principle on Natural Gas Accumulation of Mud-Fluid Diapers and Significance an Exploration in Yinggehai Basin. Journal of Jilin University (Earth Science Edition), 39(2): 196–204 (in Chinese with English Abstract)
    Khain, V. E., Polyakova, I. D., 2004. Oil and Gas Potential of Deep- and Ultradeep-Water Zones of Continental Margins. Lithology and Mineral Resources, 39(6): 530–540 doi: 10.1023/B:LIMI.0000046956.08736.e4
    Li, X. B., Chen, Q. L., Liu, H. Q., et al., 2010. Three Types of Sediment Gravity Flows and Their Petrolferous Features of Yanchang Formation in Ordos Basin. Lithologic Reservoirs, 22(3): 16–21 (in Chinese with English Abstract)
    Li, X. B., Fu, J. H., Chen, Q. L., et al., 2011a. The Concept of Sandy Debris Flow and Its Application in the Yanchang Formation Deep Water Sedimentation of the Ordos Basin. Advances in Earth Science, 26(3): 286–294 (in Chinese with English Abstract)
    Li, X. B., Liu, H. Q., Chen, Q. L., 2011b. The Characteristics of the Sandy Debris Flow of the Triassic Yanchang Formation and Its Exploration Significance in the Ordos Basin, China. Acta Geologica Sinica (English Edition), 85(5): 1187–1202 doi: 10.1111/j.1755-6724.2011.00550.x
    Lowe, D. R., 1979. Sediment Gravity Flows: Their Classification and Some Problems of Application to Natural Flows and Deposits. In: Doyle, L. J., Pilkey, O. H., eds., Geology of Continental Slopes. Special Publication, Society of Economic Paleontologists and Mineralogists, Tulsa. 27: 75–82
    Lowe, D. R., 1982. Sediment Gravity Flows II: Depositional Models with Special Reference to the Deposits of High Density Turbidity Currents. Journal of Sedimentary Petrology, 52(1): 279–297
    Middleton, G. V., Hampton, M. A., 1973. Sediment Gravity Flows: Mechanics of Flow and Deposition. In: Middleton, G. V., Bouma, A. H., eds., Turbidites and Deepwater Sedimentation. Society of Economic Paleontologists and Mineralogists, Los Angeles. 1–38
    Middleton, G. V., Hampton, M. A., 1976. Subaqueous Sediment Transport and Deposition by Sediment Gravity Flows. In: Stanley, D. J., Swift, D. J. P., eds., Marine Sediment Transport and Environmental Management. John Wiley, New York. 197–218
    Okay, S., Jupinet, B., Lericolais, G., et al., 2011. Morphological and Stratigraphic Investigation of a Holocene Subaqueous Shelf Fan, North of the Istanbul Strait in the Black Sea. Turkish Journal of Earth Sciences, 20: 287–305
    Paul, M. M., Richard, N. H., 1991. Shallow-Water Gravity-Flow Deposits, Chapel Island Formation, Southeast New-Foundland, Canada. Sedimentology, 38: 935–959 doi: 10.1111/j.1365-3091.1991.tb01880.x
    Pei, J. X., Yu, Z. F., Wang, L. F., et al., 2011. Key Challenges and Strategies for the Success of Natural Gas Exploration in Mid-Deep Strata of the Yinggehai Basin. Acta Petrolei Sinica, 32(4): 573–579 (in Chinese with English Abstract)
    Pigott, J. D., Ru, K., 1994. Basin Superposition on the Northern Margin of the South China Sea. Tectonophysics, 235: 27–50 doi: 10.1016/0040-1951(94)90015-9
    Qiao, B., Zhang, C. M., Du, J. Y., et al., 2011. Contrast of Gravity Flows between Shallow Water and Deep Water in Pearl River Mouth Basin. Lithologic Reservoirs, 23(2): 59–63 (in Chinese with English Abstract)
    Reading, H. G., Richards, M. T., 1994. Turbidite Systems in Deep Water Basin Margins Classified by Grain-Size and Feeder System. AAPG Bulletin, 78: 792–822
    Richards, M. T., Bowman, M. B. J., Reading, H. G., 1998. Submarine Fan Systems I: Characterisation and Stratrigraphic Prediction. Marine and Petroleum Geology, 15: 689–717 doi: 10.1016/S0264-8172(98)00036-1
    Richards, M. T., Bowman, M. B. J., 1998. Submarine Fan Systems II: Variability in Reservoir Architecture. Marine and Petroleum Geology, 15: 821–839 doi: 10.1016/S0264-8172(98)00042-7
    Ru, K., Pigott, J. D., 1986. Episodic Rifting and Subsidence in the South China Sea. AAPG Bulletin, 70: 1136–1156
    Shanmugam, G., 1996. High-Density Turbidity Currents: Are They Sandy Debris Flows? Journal of Sedimentary Research, 66: 2–10 doi: 10.1306/D426828E-2B26-11D7-8648000102C1865D
    Shanmugam, G., 2000. 50 Years of the Turbidite Paradigm (1950s–1990s): Deep-Water Processes and Facies Models-A Critical Perspective. Marine and Petroleum Geology, 17: 285–342 doi: 10.1016/S0264-8172(99)00011-2
    Shanmugam, G., 2002. Ten Turbidite Myths. Earth Science Reviews, 58: 311–341 doi: 10.1016/S0012-8252(02)00065-X
    Shultz, A. W., 1984. Subaerial Debris-Flow Deposition in the Upper Paleozoic Cutler Formation, Western Colorado. Journal of Sedimentary Research, 54: 759–772
    Su, M., Xie, X. N., Li, J. L., et al., 2011. Gravity Flow on Slope and Abyssal Systems in the Qiongdongnan Basin, Northern South China Sea. Acta Geologica Sinica (English Edition), 85(1): 243–253 doi: 10.1111/j.1755-6724.2011.00394.x
    Wan, Z. F., Xia, B., Xu, L. F., et al., 2010. Study on the Dynamic Mechanism of Tectonic Evolution in Yinggehi Basin. Marine Science Bulletin, 29(6): 654–657 (in Chinese with English Abstract)
    Wang, H., Zhu, W. L., Wang, Y., 1999. Characteristics of Medium-Deep Reservoir and Sedimentary History in Yinggehai Basin. Oil & Gas Geology, 20(1): 55–57 (in Chinese with English Abstract)
    Wang, X. L., Zhou, J. Y., Ma, L., et al., 2008. Gravity Flow Sedimentary Characteristics and the Significance of Petroleum Exploration in the Chaluhe Fault Depression, the Yitong Basin. Petroleum Geology & Experiment, 30(1): 26–31 (in Chinese with English Abstract)
    Wang, Y., Wang, X. Z., Wang, Y. M., et al., 2010. Determina tion of the Gravity Flow Critical Gradient Using Sedimentary Simulation Experiment. Journal of Chengdu University of Technology (Science & Technology Edition), 37(4): 463–468 (in Chinese with English Abstract)
    Wang, Y. M., Xu, Q., Li, D., et al., 2011. Late Miocene Red River Submarine Fan, Northwestern South China Sea. Chinese Science Bulletin, 56(1): 781–787 (in Chinese)
    Wang, Z. F., Pei, J. X., 2011. A New Accumulation Model of High Pressure Gas in Huangliu Formation of the Middle-Deep Interval in Yinggehai Basin: the Significance of Discovering a Good-Quality Gas Pay with Overpressure and High Production in Well DF14. China Offshore Oil and Gas, 23(4): 213–217 (in Chinese with English Abstract)
    Weimer, P., Roger, M. S., Henry, S. P., 2004. Global Overview of Deepwater Exploration and Production. In: Weimer, P., Roger, M. S., eds., Petroleum Systems of Deepwater Settings. Tulsa. SEG/EAGE, 21–39
    Xie, X. N., Li, S. T., Hu, X. Y., 1999. Genetic Mechanisms of the Diaper and the Fluid Guide Economy in Yinggehai Basin. Science in China Series D: Earth Science, 29(3): 247–256 (in Chinese)
    Xie, Y. H., Fan, C. W., 2010. Some New Knowledge about the Origin of Huangliu Formation Reservoirs in Dongfang Area, Yinggehai Basin. China Offshore Oil and Gas, 22(6): 354–359 (in Chinese with English Abstract)
    Xie, Y. H., Zhang, Y. Z., Li, X. S., et al., 2012. Main Controlling Factors and Formation Models of Natural Gas Reservoirs with High-Temperature and Overpressure in Yinggehai Basin. Acta Petrolei Sinica, 33(4): 601–609 (in Chinese with English Abstract)
    Zhang, M. Q., Zhong, Z. H., Xia, B., 2004. Genetic Mechanisms of Mud-Fluid Diaper in Yinggehai Basin and Hydrocarbon Accumulation. Geotectonica et Metallogenia, 28(2): 118–125 (in Chinese with English Abstract)
    Zhu, W. L., Zhang, G. C., Yang, S. K., et al., 2007. Natural Gas Geology of Continental Margin Basins in the Northern South China Sea. Petroleum Industry Press, Beijing. 1–391 (in Chinese)
    Zhu, W. L., Zhang, G. C., Gao, L., 2008. Geological Characteristics and Exploration Objectives of Hydrocarbons in Northern Continental Margin Basin of South China Sea. Acta Petrolei Sinica, 29(1): 1–9 (in Chinese with English Abstract) doi: 10.1111/j.1745-7254.2008.00742.x
    Zhu, Y. H., 2011. Composition and Reservoir Body Distribution of Continental Shelf-Continental Slope Sedimentary System in Earlf Eocene in Pearl Rixer Mouth Basin. Journal of Xi'an Shiyou University (Natural Science Edition), 26(6): 1–8 (in Chinese with English Abstract)
    Zhu, Y. H., Zhu, W. L., Xu, Q., et al., 2011. Sedimentary Response to Shelf-Edge Eeila and Slope Deep-Water Fan in 13.8 Ma of Miocene Epoch in Pearl River Mouth Basin. Journal of Central South University (Science and Technology), 42(12): 3827–3834 (in Chinese with English Abstract)
    Zou, C. N., Zhao, Z. Z., Yang, H., et al., 2009. Genetic Mechanism and Distribution of Sandy Debris Flows in Terrestrial Lacustrine Basin. Acta Sedimentologica Sinica, 27(6): 1065–1075 (in Chinese with English Abstract)
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Figures(8)  / Tables(1)

    Article Metrics

    Article views(678) PDF downloads(178) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return