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不利流度比在聚合物驱油过程中对原油动用的影响

Impact of Adverse Mobility Ratio on Oil Mobilization by Polymer Flooding.

作者信息

Murad Abdulmajeed, Skauge Arne, Shaker Shiran Behruz, Skauge Tormod, Klimenko Alexandra, Santanach-Carreras Enric, Jouenne Stephane

机构信息

Department of Chemistry, University of Bergen, 5007 Bergen, Norway.

Institute of GeoEnergy Engineering, Heriot-Watt University, Edinburgh EH14 4AS, UK.

出版信息

Polymers (Basel). 2025 Jul 25;17(15):2033. doi: 10.3390/polym17152033.

Abstract

Polymer flooding is a widely used enhanced oil recovery (EOR) method for improving energy efficiency and reducing the carbon footprint of oil production. Optimizing polymer concentration is critical for maximizing recovery while minimizing economic and environmental costs. Here, we present a systematic experimental study which shows that even very low concentrations of polymers yield relatively high recovery rates at adverse mobility ratios (230 cP oil). A series of core flood experiments were conducted on Bentheimer sandstone rock, with polymer concentrations ranging from 40 ppm (1.35 cP) to 600 ppm (10.0 cP). Beyond a mobility ratio threshold, increasing polymer concentration did not significantly enhance recovery. This plateau in performance was attributed to the persistence of viscous fingering and oil crossflow into pre-established water channels. The study suggests that low concentrations of polymer may mobilize oil at high mobility ratios by making use of the pre-established water channels as transport paths for the oil and that the rheology of the polymer enhances this effect. These findings enable reductions in the polymer concentration in fields with adverse mobility ratios, leading to substantial reductions in chemical usage, energy consumption, and environmental impact of the extraction process.

摘要

聚合物驱是一种广泛应用的提高采收率(EOR)方法,用于提高能源效率和减少石油生产的碳足迹。优化聚合物浓度对于在最大限度提高采收率的同时最小化经济和环境成本至关重要。在此,我们进行了一项系统的实验研究,结果表明,即使在不利的流度比(230厘泊油)下,极低浓度的聚合物也能产生相对较高的采收率。我们在本特海默砂岩上进行了一系列岩心驱替实验,聚合物浓度范围为40 ppm(1.35厘泊)至600 ppm(10.0厘泊)。超过流度比阈值后,增加聚合物浓度并不会显著提高采收率。这种性能上的平稳状态归因于粘性指进和油向预先形成的水道的横向流动的持续存在。该研究表明,低浓度聚合物可通过利用预先形成的水道作为油的传输路径,在高流度比下驱替油,并且聚合物的流变学增强了这种效果。这些发现能够降低流度比不利的油田中的聚合物浓度,从而大幅减少化学药剂使用量、能源消耗以及开采过程对环境的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2476/12349181/65059b7de109/polymers-17-02033-g001.jpg

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