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The effect of capillary-trapped CO2 on oil recovery and CO2 sequestration during the WAG process

机译:毛细管捕获的CO2对WAG过程中采油率和CO2封存的影响

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This study investigated capillary-trapped CO2 depending on the consideration of hysteresis effect in relative permeability for various water-alternation-gas (WAG) operating conditions to ascertain the oil production process. From the simulation results of CO2 WAG flooding method, the trapped CO2 led to prevent water-flow, in which CO2 acts as a gas blocker near the well. It caused the injection pressure increase during water injection period. As the trapped CO2 in pores increased, the reservoir pressure was also increased and maintained above minimum miscibility pressure (MMP). Ultimately, it was concluded that the reservoir was kept under miscible conditions throughout WAG process, reducing residual oil and increasing oil recovery.
机译:本研究根据对各种水交变气体 (WAG) 操作条件下相对渗透率的滞后效应的考虑,研究了毛细管捕获的 CO2,以确定石油生产过程。从CO2 WAG驱法的模拟结果可以看出,CO2被截留的CO2阻碍了水流,CO2在井附近起到了气体阻滞剂的作用。它导致注水期间注入压力升高。随着孔隙中捕获CO2的增加,储层压力也随之增加并保持在最小混溶压力(MMP)以上。最终得出的结论是,在整个WAG过程中,储层保持在混溶条件下,减少了残油并提高了石油采收率。

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