Li Meijun, Wang Tieguan, Liu Ju, Zhang Meizhu, Lu Hong, Ma Qinglin, Gao Lihui. OIL CHARGING ORIENTION AND ACCUMULATION CHARACTERISTICS OF OIL RESERVOIRS IN THE FUSHAN SAG, BEIBUWAN BASIN[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2007, 29(2): 172-177. doi: 10.11781/sysydz200702172
Citation: Li Meijun, Wang Tieguan, Liu Ju, Zhang Meizhu, Lu Hong, Ma Qinglin, Gao Lihui. OIL CHARGING ORIENTION AND ACCUMULATION CHARACTERISTICS OF OIL RESERVOIRS IN THE FUSHAN SAG, BEIBUWAN BASIN[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2007, 29(2): 172-177. doi: 10.11781/sysydz200702172

OIL CHARGING ORIENTION AND ACCUMULATION CHARACTERISTICS OF OIL RESERVOIRS IN THE FUSHAN SAG, BEIBUWAN BASIN

doi: 10.11781/sysydz200702172
  • Received Date: 2006-09-29
  • Rev Recd Date: 2007-01-31
  • Publish Date: 2007-03-28
  • By using reservoir geochemical approach,this paper mainly studies on the hydrocarbon migration and charging orientation of Eocene Liushagang Formation(E2l) oil reservoirs in the Fushan Sag,Beibuwan Basin.Combined with the petroleum geological background,the reason that caused the difference between oil pools in upper(E2l31) and mid-lower parts(E2l32—E2l33)of Liushagang Formation has also been discussed.It shows that the oils in E2l31 horizon in Huachang oil and gas field are mainly sourced from the Bailian sub-Sag.The unconformity between E2l2 and E2l3,the sandstone of fan delta front and the faults are good carrier beds for these oils.Comparison with the E2l31,the oils in E2l32-E2l33 horizons have relatively higher density,lower maturity,high content of CO2 and lower oil and gas yields.All these characteristics are determined by the special fault systems and specific geological background.The oils in E2l32-E2l33 horizons are mainly derived from the source rock of the third member of the Liushagang Formation in Huachang area,which have relatively lower thermal maturity and limited hydrocarbon generation potential.Controlled by the giant faults that cut through the E2l3 stratum and terminated in the basement,the volcanic-mantle derived CO2 can migrate through these faults and charge in E2l32-E2l33 traps.The geochemical research provides direct evidence for hydrocarbon charging orientation and pathways.

     

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