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Investigation into the Processes Responsible for Heavy Oil Recovery by Alkali-Surfactant Flooding

机译:碱表面活性剂洪水调查负责重油回收的过程

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This paper describes a suite of alkali-surfactant (AS) floods that were performed in systems containing viscous heavy oil (11,500 mPa·s). The study investigates how AS injection can be used to generate oil and water emulsions, which can in turn lead to improved sweep efficiencies and oil recovery. Data is obtained from core flooding, with in-situ saturation measurements made using low field NMR. This work is applicable to the many heavy oil reservoirs in countries like Canada and Venezuela that contain viscous oil that still has some limited mobility under reservoir conditions. In previous studies, improved oil recovery compared to waterflooding was observed. This work provides additional information that can be used to better understand how chemical injection can lead to oil recovery. The core floods in this study indicate that emulsification is most efficient when used to block pre-formed water channels and improve the sweep efficiency of the flood. Both O/W and W/O emulsions may form in the same system, even under controlled salinity conditions. The re-distribution of water from the flooded channels into emulsified droplets in the oil is at least partially responsible for the pressure increase seen in these systems. W/O emulsification is accompanied by wettability alteration, as evidenced by the NMR spectra obtained. After the chemical flood is completed, it may be possible to restore the original water wet condition of the rock, which can provide potential for future non-thermal improved oil recovery.
机译:本文描述了一种在含有粘性重油(11,500mPa·s)的系统中进行的碱性表面活性剂(AS)泛洪。该研究调查了如何使用注射来产生油和水乳液,这又导致改善扫描效率和溢油。数据是从核心泛滥获得的,使用低场NMR制造的原位饱和度测量。这项工作适用于加拿大等国家的许多重油储层,含有粘性油的含粘稠油,在储层条件下仍有一些有限的流动性。在先前的研究中,观察到与水塑料相比的改善的储存。这项工作提供了额外的信息,可以用于更好地了解化学注射会如何导致溢油。本研究中的核心泛滥表明,当用于阻塞预形成的水通道并提高洪水的扫描效率时,乳化是最有效的。 O / W和W / O乳液均可在同一系统中形成,即使在受控的盐度条件下也可以形成。从淹没通道的水重新分布到油中的乳化液滴中至少部分地负责这些系统中看到的压力增加。 W / O乳化伴随着润湿性改变,如获得的NMR光谱所证明。化学洪水完成后,可以恢复岩石的原始水湿条件,这可以为未来的不热改善的储油率提供潜力。

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