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聚合物-表面活性剂二元驱油提高采收率的协同优化:配方、段塞设计及盐度效应的岩心尺度实验分析

Synergistic Optimization of Polymer-Surfactant Binary Flooding for EOR: Core-Scale Experimental Analysis of Formulation, Slug Design, and Salinity Effect.

作者信息

Tang Wenjie, Maimaiti Patiguli, Shao Hongzhi, Que Tingli, Liu Jiahui, Bai Shixun

机构信息

Research Institute of Exploration and Development, Xinjiang Oilfield Company, PetroChina, Karamay 834000, China.

School of Petroleum, China University of Petroleum-Beijing at Karamay, Karamay 834000, China.

出版信息

Polymers (Basel). 2025 Aug 8;17(16):2166. doi: 10.3390/polym17162166.

Abstract

As conventional waterflooding enters mid-to-late stages, chemical enhanced oil recovery (EOR) technologies such as polymer-surfactant binary flooding have emerged to address declining recovery rates. This study systematically investigates the synergistic effects of polymer-surfactant binary formulations through core-flooding experiments under varying concentrations, injection volumes, and salinity conditions. The optimal formulation, identified as 0.5% surfactant and 0.15% polymer, achieves a maximum incremental oil recovery of 42.19% with an interfacial tension (IFT) reduction to 0.007 mN/m. A 0.5 pore volume (PV) injection volume balances sweep efficiency and economic viability, while sequential slug design with surfactant concentration gradients demonstrates superior displacement efficacy compared with fixed-concentration injection. Salinity sensitivity analysis reveals that high total dissolved solids (TDS) significantly degrade viscosity, whereas low TDS leads to higher viscosity but only marginally enhances the recovery. These findings provide experimental evidence for optimizing polymer-surfactant flooding strategies in field applications, offering insights into balancing viscosity control, interfacial tension reduction, and operational feasibility.

摘要

随着常规水驱进入中后期,聚合物 - 表面活性剂二元驱等化学强化采油(EOR)技术应运而生,以应对采收率下降的问题。本研究通过在不同浓度、注入量和盐度条件下的岩心驱替实验,系统地研究了聚合物 - 表面活性剂二元配方的协同效应。确定的最佳配方为0.5%表面活性剂和0.15%聚合物,可实现最大增量采收率42.19%,界面张力(IFT)降至0.007 mN/m。0.5孔隙体积(PV)的注入量平衡了波及效率和经济可行性,而具有表面活性剂浓度梯度的顺序段塞设计与固定浓度注入相比,显示出卓越的驱替效果。盐度敏感性分析表明,高总溶解固体(TDS)会显著降低粘度,而低TDS会导致粘度升高,但仅略微提高采收率。这些发现为优化聚合物 - 表面活性剂驱油策略在现场应用中提供了实验依据,为平衡粘度控制、降低界面张力和操作可行性提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64fe/12389002/b6ab6dd4c7f4/polymers-17-02166-g001.jpg

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