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Discontinuity Stability Analysis for Carbon Dioxide Enhanced Oil Recovery

  • Xiaoyu Fang,
  • Chuixian Kong,
  • Yanxin Lv,
  • Gongran Liu,
  • Jiaojiao Chen,
  • Guifeng Wang

摘要

Carbon dioxide (CO2) enhanced oil recovery (EOR) is considered to be an effective measure to increase oil productivity by injecting CO2 into reservoirs. Nevertheless, the injection of CO2 can potentially induce instability in discontinuities such as faults and fractures within the reservoir, influencing the safety and efficiency of the operation. Qualitative analysis of fault stability was implemented in the integrated process of CO2-EOR, by integrating fluid dynamics models, in-situ stress conditions and rock mechanics parameters. The results show that there is a pressure decreasing region around the oil producer, and CO2 injection has a prominent influence on reservoir pressure maintenance. The reservoir pressure and liquid flow of oil producer is slightly higher from the beginning of CO2 injection. The minimum effective normal stress and the maximum slip tolerance of the faults are aligned with the axis between the CO2 injector and the oil producer. The fault friction angle is the primary factor in discontinuity stability analysis, influencing the slip rate and mode during CO2-EOR. The larger the friction angle, the fewer faults are in the critical slip state. Fault stability analysis is a complete assessment, indicating that a fault may remain stable even if certain parts reach a critical state.