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Hydrocarbon accumulation characteristics of beach-bar sandstones in the southern slope of the Dongying Sag, Jiyang Depression, Bohai Bay Basin, China
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  • 作者:Song Guo (1) (2)
    Lijuan Tan (3)
    Chengyan Lin (3)
    Hongnan Li (3)
    Xiuxiang Lü (1) (2)
    Hongtao Wang (4)
  • 关键词:Dongying Sag ; beach ; bar sandstone ; hydrocarbon accumulation characteristics ; play elements ; model experiment
  • 刊名:Petroleum Science
  • 出版年:2014
  • 出版时间:June 2014
  • 年:2014
  • 卷:11
  • 期:2
  • 页码:220-233
  • 全文大小:
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  • 作者单位:Song Guo (1) (2)
    Lijuan Tan (3)
    Chengyan Lin (3)
    Hongnan Li (3)
    Xiuxiang Lü (1) (2)
    Hongtao Wang (4)

    1. College of Geoscience, China University of Petroleum, Beijing, 102249, China
    2. State Key Laboratory of Petroleum Resource and Prospecting, China University of Petroleum, Beijing, 102249, China
    3. School of Geoscience, China University of Petroleum, Shandong, 266580, China
    4. Exploration and Development Research Institute, Huabei Oilfield of CNPC, Renqiu, Hebei, 062552, China
  • ISSN:1995-8226
文摘
A number of beach-bar sandstone reservoir beds are developed in the upper fourth member of the Eocene Shahejie Formation (Es4 s) on the southern slope of the Dongying Sag. Based on the analysis of seismic and logging data, with characterization and petrographic studies of core and cutting samples, this paper analyzes the hydrocarbon accumulation characteristics in two typical blocks of the Boxing and Wangjiagang oilfields, especially reservoir bed heterogeneity and migration conditions that influence oil and gas distribution, calculates the index of reservoir bed quality (IRQ) with a mathematical method, and discusses the relationship between driving force and resistance of hydrocarbon accumulation. Taking into account the characteristics of thin interbeds in beach-bar sandstones, an experimental model simulated the characteristics of hydrocarbon migration and accumulation in thin interbedded sandstones with reservoir bed heterogeneity. The results showed that hydrocarbon distribution and properties were extremely non-uniform. Reservoir bed and migration conditions controlled hydrocarbon accumulation in beach-bar sandstones. I RQ is above 0.4 in the main hydrocarbon region. Sand body distribution, structural configuration and fault systems controlled the direction of regional migration and location of hydrocarbon accumulation. Simulation experiments indicated that the change of driving force for hydrocarbon migration affected selective accumulation mechanisms. Hydrocarbon moved vertically along fault zones to the reservoir and resulted in the distribution of hydrocarbon in the reservoir. Two kinds of hydrocarbon accumulation models exist in the study area. One is a hydrocarbon accumulation model controlled by reservoir bed heterogeneity and the second is a hydrocarbon accumulation model controlled by a complex migration system with faults connecting sandbodies. Finally, different exploration strategies should be adopted for the detailed exploration for beach-bar sandstone reservoirs according to different geological backgrounds.

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