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低酸值轻质原油低盐度强化采油的采收率及机理

Oil Recovery Efficiency and Mechanism of Low Salinity-Enhanced Oil Recovery for Light Crude Oil with a Low Acid Number.

作者信息

Kakati Abhijit, Kumar Ganesh, Sangwai Jitendra S

机构信息

Enhanced Oil Recovery Laboratory, Petroleum Engineering Program, Department of Ocean Engineering, Indian Institute of Technology Madras, Chennai 600 036, India.

出版信息

ACS Omega. 2020 Jan 10;5(3):1506-1518. doi: 10.1021/acsomega.9b03229. eCollection 2020 Jan 28.

Abstract

Low salinity waterflooding (low salinity-EOR) has attracted great interest from many giant oil producers and is currently under trial in some of the oil fields of the United States, Middle Eastern countries, and North Sea reservoirs. Most of the reported studies on this process were carried out for medium to relatively heavy oil with significant polar contents. In this work, we have investigated low salinity waterflooding performance for light paraffinic crude oil with a low acid number. This study has been performed using crude oil from an Indian offshore oilfield and Indian offshore seawater. Oil recovery efficiencies of seawater and its diluted versions (low salinity seawater) were evaluated through core-flooding experiments performed on a silica sand pack containing small amounts (2 wt %) of bentonite clay saturated with crude oil. Interfacial tension and wettability studies were performed to understand the associated low salinity effects on the crude oil/brine/rock properties. Effluent brine produced during the flooding experiments was also analyzed to obtain a clearer insight into the low salinity-enhanced oil recovery (EOR) mechanism. The results showed that injection of low salinity seawater can significantly increase the waterflood recovery in comparison with high salinity seawater injection. Interfacial tension and contact angle studies revealed that there is an optimum dilution level at which the interfacial tension and wettability are the most favorable for enhanced oil recovery even in the case of light paraffinic crude. These results are in line with the results obtained from the core-flooding experiments. The possible reason behind recovery improvement based on the interfacial tension and wettability studies in conjugation with the effluent brine analysis has been discussed in detail. In this study, we have observed that the enhanced oil recovery efficiency could be achieved by applying low salinity seawater flooding even in the case of light paraffinic oil with a low acid number.

摘要

低盐度水驱(低盐度提高采收率)已引起众多大型石油生产公司的极大兴趣,目前正在美国、中东国家的一些油田以及北海油藏进行试验。大多数关于该过程的已报道研究是针对具有显著极性成分的中质至相对重质原油开展的。在这项工作中,我们研究了低酸值轻质石蜡基原油的低盐度水驱性能。本研究使用了来自印度近海油田的原油和印度近海海水。通过在装有少量(2重量%)膨润土且已被原油饱和的硅砂岩心驱替实验,评估了海水及其稀释液(低盐度海水)的原油采收效率。进行了界面张力和润湿性研究,以了解相关的低盐度对原油/盐水/岩石性质的影响。还对驱替实验期间产出的采出盐水进行了分析,以便更清楚地了解低盐度提高采收率(EOR)机理。结果表明,与注入高盐度海水相比,注入低盐度海水可显著提高水驱采收率。界面张力和接触角研究表明,即使对于轻质石蜡基原油,也存在一个最佳稀释水平,此时界面张力和润湿性最有利于提高采收率。这些结果与岩心驱替实验获得的结果一致。结合采出盐水分析,基于界面张力和润湿性研究对采收率提高背后的可能原因进行了详细讨论。在本研究中,我们观察到,即使对于低酸值的轻质石蜡基油,应用低盐度海水驱也可实现提高原油采收效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2936/6990623/c00c1ddda951/ao9b03229_0001.jpg

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