Assessment of Oil Production for Low-Salinity Water Based Polymer Injection Method in Carbonate Oil Reservoir

Y. Lee, H. Park, S. Kim, Y. Song, J. Kim, W. Sung
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Abstract

This study experimentally investigates the effect of pH and SO42- on oil production in carbonate reservoir applying low-salinity water based polymerflooding (LSWPF), which has additional synergetic effect by altering the wettability and improving the mobility ratio. Particularly, SO42- ions contained in injection water not only decrease electrical potential of rock surface, but also retain stability of polymer chain. Therefore, it is essential to analyse the potential of sulfate on oil production in LSWPF. From the results of viscosity analysis and zeta potential measurement of polymer solution, it was confirmed that Ca2 yielded precipitation with polymer molecule, leading to viscosity reduction, while SO42- stretched the polymer chains. In the results of coreflooding experiments for LSWPF, injecting polymer solution containing higher concentration of sulfate with neutral pH revealed less degradation and affected wettability alteration, resulting in enhancing oil recovery. In overall, we demonstrated the interaction between low-salinity waterflooding and polymerflooding, especially the impact of sulfate ions on polymer degradation and consequently enhanced oil recovery. In field application of low-salinity polymerflooding method to carbonate reservoir, pH and PDI of injection water should be designed in advance to maximize the oil recovery.
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碳酸盐岩油藏低矿化度水基聚合物注水采油效果评价
本研究通过实验研究了pH和SO42-对碳酸盐岩油藏低矿化度水基聚合物驱(LSWPF)采油的影响,通过改变润湿性和提高流度比,还能产生额外的协同效应。特别是注入水中所含的SO42离子不仅降低了岩石表面的电势,而且保持了聚合物链的稳定性。因此,有必要分析硫酸盐对LSWPF采油的潜力。从聚合物溶液的粘度分析和zeta电位测量结果来看,Ca2与聚合物分子产生沉淀,导致粘度降低,而SO42-拉伸聚合物链。在LSWPF岩心驱油实验中,注入pH值为中性的高浓度硫酸盐聚合物溶液,降解程度较低,影响润湿性改变,从而提高采收率。总的来说,我们证明了低矿化度水驱和聚合物驱之间的相互作用,特别是硫酸盐离子对聚合物降解的影响,从而提高了石油采收率。在碳酸盐岩油藏低矿化度聚合物驱的现场应用中,为了使采收率最大化,应提前设计好注入水的pH和PDI。
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