通过低盐度注水和纳米颗粒提高石油采收率:小型综述

IF 5.3 3区 工程技术 Q2 ENERGY & FUELS
Aftab Hussain Arain*, Berihun Mamo Negash, Ahmad Salam Farooqi and Rayed S. Alshareef, 
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引用次数: 0

摘要

为提高成熟油田的采收效率,低盐度注水越来越受欢迎。人们提出了许多低盐度注水背后的基本机制。润湿性改变被认为是低盐度注水的基本机制。然而,我们仍需对这些现象有更全面的了解。因此,要使低盐度注水在提高石油采收率方面取得成效,就必须对其基本机制和影响因素进行深入分析。应用纳米粒子改善采油过程是一项前景广阔的技术,目前正在迅速扩展。大量研究表明,在注水中加入纳米粒子可提高石油采收率,并促进油藏岩石中残留石油的流动。本研究还对纳米粒子和低盐度注水在提高石油采收率方面的协同效应进行了全面的现代评述。纳米粒子与储层流体相互作用会导致润湿性改变、界面张力降低和脱节压力增加。研究表明,与传统的低盐度注水方法相比,在低盐度注水中加入纳米粒子可提高效率。然而,正确理解储层特征以及注入流体和纳米粒子的特性,可以显著提高纳米流体在提高石油采收率方面的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Improving Oil Recovery through Low Salinity Waterflooding and Nanoparticles: A Mini Review

Improving Oil Recovery through Low Salinity Waterflooding and Nanoparticles: A Mini Review

Low salinity waterflooding has become increasingly popular to improve recovery efficiency in matured oil fields. Numerous underlying mechanisms behind the low salinity waterflooding have been suggested. The wettability alteration is recognized as the fundamental mechanism for low salinity waterflooding. However, a more comprehensive understanding of these phenomena still needs to be provided. Therefore, a thorough analysis of the underlying mechanisms and influencing factors is necessary for the efficacy of low salinity waterflooding in improving oil recovery. The application of nanoparticles to improve oil recovery processes is a promising technology, experiencing rapid expansion. Numerous investigations have shown that integrating nanoparticles in waterflooding may increase oil recovery and facilitate the flow of residual oil trapped inside the reservoir rock. This study also provides a thorough and contemporary review of the synergetic effect of nanoparticles and low salinity waterflooding on improving oil recovery. Nanoparticles interacting with reservoir fluids cause wettability alteration, decreased interfacial tension, and increased disjoining pressure. The studies suggest that integrating nanoparticles into low salinity waterflooding resulted in a higher efficiency than the conventional low salinity waterflooding method. However, a proper understanding of reservoir characteristics and the properties of the injected fluid and nanoparticles can significantly improve the effectiveness of nanofluids in improving oil recovery.

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来源期刊
Energy & Fuels
Energy & Fuels 工程技术-工程:化工
CiteScore
9.20
自引率
13.20%
发文量
1101
审稿时长
2.1 months
期刊介绍: Energy & Fuels publishes reports of research in the technical area defined by the intersection of the disciplines of chemistry and chemical engineering and the application domain of non-nuclear energy and fuels. This includes research directed at the formation of, exploration for, and production of fossil fuels and biomass; the properties and structure or molecular composition of both raw fuels and refined products; the chemistry involved in the processing and utilization of fuels; fuel cells and their applications; and the analytical and instrumental techniques used in investigations of the foregoing areas.
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