碳酸盐岩油藏低矿化度水聚合物驱研究进展

IF 1.8 4区 工程技术 Q3 ENGINEERING, CHEMICAL Macromolecular Reaction Engineering Pub Date : 2023-03-11 DOI:10.1002/mren.202300007
Fabio Pedro Nascimento, Verônica de Jesus Pereira, Ladislane dos Santos Bastos, Gloria Meyberg Nunes Costa, Silvio Alexandre Beisl Vieira de Melo
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引用次数: 2

摘要

低矿化度水-聚合物驱(LSWPF)是一种新兴的混合提高采收率(EOR)方法,它利用低矿化度水(LSW)和聚合物的协同效应来提高微观和宏观的波及效率。聚合物驱是一种提高采收率的方法,旨在提高水的粘度,提高注入流体对储层的流动比。增强了流度控制,降低了水的相对渗透率,达到了更有利的波及效率条件。LSW是一种EOR方法,旨在通过利用原油和储层岩石的相互作用来改变润湿性。与海水或地层水相比,当注入水的矿化度非常低时,它可以提高采收率。文献报道了LSWPF在砂岩储层中的应用。然而,LSWPF在碳酸盐岩储层中的应用仍然不足。本文分析了LSWPF作为碳酸盐岩油藏海水聚合物驱的替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Low Salinity Water–Polymer Flooding in Carbonate Oil Reservoirs: A Critical Review

Low salinity water–polymer flooding (LSWPF) is an emerging hybrid enhanced oil recovery (EOR) method that uses the synergetic effects of low salinity water (LSW) and polymers to enhance both the microscopic and macroscopic sweep efficiencies. Polymer flooding is an EOR method that aims to increase water viscosity and improve the mobility ratio of the injected fluid to the reservoir. It enhances mobility control and reduces water relative permeability, reaching a more favorable condition for sweep efficiency. LSW is an EOR method that aims to change wettability by exploiting crude oil and reservoir rock interactions. It allows for improving oil recovery when the injected water has a very low salinity compared to seawater or formation water. The literature reports LSWPF studies applied to sandstone reservoirs. However, LSWPF applications in carbonate reservoirs still lack. This review critically analyzes LSWPF as an alternative to Polymer flooding using seawater in carbonate reservoirs.

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来源期刊
Macromolecular Reaction Engineering
Macromolecular Reaction Engineering 工程技术-高分子科学
CiteScore
2.60
自引率
20.00%
发文量
55
审稿时长
3 months
期刊介绍: Macromolecular Reaction Engineering is the established high-quality journal dedicated exclusively to academic and industrial research in the field of polymer reaction engineering.
期刊最新文献
Front Cover: Macromol. React. Eng. 6/2024 Masthead: Macromol. React. Eng. 6/2024 Front Cover: Macromol. React. Eng. 5/2024 Masthead: Macromol. React. Eng. 5/2024 Poly(butylene succinate) Microparticles Prepared Through Green Suspension Polycondensations
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