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Experimental studies of CO 2 -brine-rock interaction effects on permeability alteration during CO 2 -EOR

机译:CO 2-岩石-岩石相互作用对CO 2 -EOR过程中渗透率变化影响的实验研究

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Carbon dioxide (CO2) sequestration through CO2 enhanced oil recovery (EOR) in oil reservoirs is one way to reduce this gas in the atmosphere. Undesirable chemical reactions that occur during these operations can affect the reservoir structure and characteristics. In this study, the effect of CO2-water-rock interaction on the rock permeability alteration and final oil recovery has been evaluated experimentally during CO2 injection into a carbonate rock. The effect of flow rate, displacement type and pressure were investigated during CO2 EOR injection. Different scenarios of miscible/immiscible displacement, secondary/tertiary recovery has been evaluated for different levels of connate water salinity and injection rate. The results show that the severity of damage is directly related to the injection rate, however change in displacement type from miscible to immiscible reduce the intensity of chemical reactions in porous medium. Moreover, in the tertiary CO2 injection, the chemical reactions become more severe due to the higher water saturations. Interestingly, this growth in the level of chemical reactions has a negligible impact on permeability reduction, since the major volume of possible reactions occurs in coarse and high permeable pores. Results reveal that damage is more intense in the case of more saline water.
机译:通过CO2强化油藏中的石油采收率(EOR)隔离二氧化碳(CO2)是减少大气中这种气体的一种方法。在这些操作中发生的不良化学反应会影响储层的结构和特性。在这项研究中,已通过实验评估了将CO2注入碳酸盐岩期间,CO 2-水-岩相互作用对岩石渗透率变化和最终采油率的影响。在注入CO2 EOR的过程中,研究了流速,排量类型和压力的影响。对于不同水平的原生水盐度和注入速率,已经评估了混溶/不混溶驱替,二次/三次采收的不同方案。结果表明,破坏的严重程度与注入速率直接相关,但是,置换类型从可混溶变为不可混溶会降低多孔介质中化学反应的强度。此外,在三次注入二氧化碳中,由于较高的水饱和度,化学反应变得更加严重。有趣的是,化学反应水平的这种增长对渗透率降低的影响可忽略不计,因为可能的反应的大部分发生在粗糙和高渗透率的孔隙中。结果表明,在添加更多盐水的情况下,破坏更为严重。

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