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Characterization of oil bearing sandstones for sustainable oil production in electrically enhanced oil recovery

机译:用电增强油采收率的可持续石油生产的含油砂岩特性

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Electrically assisted transport of hydrocarbons in geological porous media has gained much attention both for environmental mitigation of contaminating oils and for recovery of reservoir oils over the last two decades. The basic concept of the method is to apply a direct current (DC) to activate ElectroKinetic (EK) phenomena near the solid-liquid interfaces inside the porous media. In electrically enhanced oil recovery (EEOR) applications, the phenomenon leads to oil transport under an applied electric field in the reservoir. The environmentally friendly aspects of the EEOR process make it a promising method for sustainable enhanced oil recovery applications. Mathematical modeling and reservoir simulation of EEOR require accurate estimation of constitutive relations including relative permeability curves. Viscous coupling between the two fluids due to momentum transfer across fluid-fluid interface has significant contribution to the oil production in EEOR and needs to be considered in development of relative permeability curves. In this paper, incorporation of viscous coupling for development of relative permeability curves for EEOR applications is investigated and the relative permeability curves for different oil bearing natural sandstone core specimens under applied electric field are developed.
机译:在过去的二十年中,碳氢化合物在地质多孔介质中的电辅助运输已经引起了人们的广泛关注,这既是减轻污染油的环境,又是对储油油的回收。该方法的基本概念是施加直流(DC)来激活多孔介质内部固液界面附近的电动(EK)现象。在电增强油采收(EEOR)应用中,该现象导致油层在油藏中施加电场的情况下进行输油。 EEOR工艺的环保方面使其成为可持续提高采油率的有前途的方法。 EEOR的数学建模和油藏模拟需要准确估算本构关系,包括相对渗透率曲线。由于动量跨流体-流体界面传递而导致的两种流体之间的粘性耦合对EEOR中的产油量有重大贡献,在开发相对渗透率曲线时需要考虑这一点。在本文中,研究了粘滞耦合在EEOR应用中相对渗透率曲线的开发,并在施加电场的情况下开发了不同含油天然砂岩岩心样品的相对渗透率曲线。

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