Improving water-oil relative permeability parameters using new synthesized calcium oxide and commercial silica nanofluids

Y. Ahmadi, B. Aminshahidy
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引用次数: 12

Abstract

This paper addressed the application of new hydrophobic synthesized calcium oxide (CaO) and silicon dioxide (SiO2) nanofluids to low permeability carbonate porous media. Crude oil and plugs were selected from one of oil reservoirs in the west of Iran. The main goal of this paper is comparing the results of improving water-oil relative permeability parameters in low permeability plugs of carbonate cores in the presence of new synthesized CaO and SiO2 nanofluids. All the experiments were performed at a temperature of 40 °C and at a nanoparticle concentration of 45 ppm. The experimental approaches were designed into two main steps: 1) the effects of both nanoparticles on the changes in interfacial tension (between oil and brine) and oil viscosity 2) the effects of both nanoparticles on wettability (qualitatively) and relative permeability parameters. SiO2 and CaO decreased interfacial tension from 46.414 mN/m to 41.772 mN/m and 32.860 mN/m respectively. Moreover, SiO2 and CaO decreased oil viscosity from 9.90 cP to 8.61 cP and 8.01 cP respectively. Based on the obtained results in the core flood experiments, although CaO and SiO2 nanofluids decreased effective water permeability, effective oil permeability and ultimate oil recovery increased. Moreover, it was seen that the CaO nanofluid improved oil flow in carbonate cores more than the commercial SiO2 flooding. Finally, it was seen that both nanoparticles change the wettability from oil-wet to water-wet (qualitatively).
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利用新合成的氧化钙和工业二氧化硅纳米流体改善水-油相对渗透率参数
研究了新型疏水合成氧化钙(CaO)和二氧化硅(SiO2)纳米流体在低渗透碳酸盐多孔介质中的应用。原油和桥塞是从伊朗西部的一个油藏中选择的。本文的主要目的是比较新合成的CaO和SiO2纳米流体对碳酸盐岩心低渗透桥塞中水-油相对渗透率参数的改善效果。所有实验均在温度为40℃,纳米颗粒浓度为45 ppm的条件下进行。实验方法设计分为两个主要步骤:1)两种纳米颗粒对界面张力(油与盐水之间)和油粘度变化的影响;2)两种纳米颗粒对润湿性(定性)和相对渗透率参数的影响。SiO2和CaO使界面张力分别从46.414 mN/m降低到41.772 mN/m和32.860 mN/m。SiO2和CaO分别使原油粘度从9.90 cP降至8.61 cP和8.01 cP。岩心驱油实验结果表明,CaO和SiO2纳米流体虽然降低了有效渗透率,但提高了有效渗透率和最终采收率。此外,对比商业SiO2驱油,CaO纳米流体对碳酸盐岩心油流的改善效果更明显。最后,观察到两种纳米颗粒都将润湿性从油湿性转变为水湿性(定性)。
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