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Research paper An experimental investigation into enhancing oil recovery using smart water combined with anionic and cationic surfactants in carbonate reservoir

机译:研究论文将碳酸盐储层中的智能水与阴离子和阳离子表面活性剂联合加强碳酸盐康复的试验研究

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Among all EOR methods, chemical flooding using wettability alteration materials may be a promising choice to enhance oil recovery. The present study involves a combination of smart water and anionic and cationic surfactant injection as a new approach of EOR in an oil wet carbonate reservoir. CTAB as a cationic and SDS as an anionic surfactant were considered. The modified seawater from Persian Gulf was selected as the smart water. The effects of the smart water salt content and the concentration of the surfactants were measured. The optimum salt concentration of smart water was obtained when SW-3KCl, SW-1NaCl, and SW-4Nasub2/subSosub4/sub were used. Moreover, the optimum smart water combined with the surfactants was estimated to be 0.1CMC of SDS and 0.9 CMC of CTAB. The results showed that the combination of smart water and surfactants in carbonate reservoirs changed the wettability towards a water wet system. The oil recovery factor for distilled water, the seawater and the combination of smart water and the optimum surfactant concentrations were calculated to be 28%, 42% and 58%, respectively. The combination of smart water and surfactant had more oil recovery compared to an individual surfactant or smart water flooding.
机译:在所有EOR方法中,使用润湿性改变材料的化学洪水可能是提高石油回收的有希望的选择。本研究涉及智能水和阴离子和阳离子表面活性剂注射的组合,作为油湿碳酸盐储层中的新方法。考虑CTAB作为阳离子和SDS作为阴离子表面活性剂。来自波斯湾的改良海水被选为智能水。测量智能水盐含量和表面活性剂浓度的影响。当使用SW-3KCl,SW-1NACL和SW-4NA 2 / so> SO 4 时,获得智能水的最佳盐浓度。此外,将与表面活性剂合并的最佳智能水估计为0.1cmc的SDS和0.9cmc CTAB。结果表明,碳酸盐储层中的智能水和表面活性剂的组合改变了对水湿系统的润湿性。蒸馏水,海水和智能水和最佳表面活性剂浓度的采油因子分别计算为28%,42%和58%。与个体表面活性剂或智能水泛水相比,智能水和表面活性剂的组合具有更多的溢油。

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