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聚合物驱后加密井网与化学驱协同提高采收率的实验研究

Experimental Investigation of Synergistic Enhanced Oil Recovery by Infill Well Pattern and Chemical Flooding After Polymer Flooding.

作者信息

Zhang Xianmin, Yu Junzhi, Liu Lijie, Liu Xilei, Lu Xuan, Feng Qihong

机构信息

State Key Laboratory of Deep Oil and Gas, China University of Petroleum (East China), Qingdao 266580, China.

School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, China.

出版信息

Gels. 2025 Aug 19;11(8):660. doi: 10.3390/gels11080660.

Abstract

Well pattern infill adjustment combined with chemical flooding is an important technical approach for significantly improving oil recovery in high-water-cut reservoirs after polymer flooding. Current research predominantly focuses on the evaluation of oil displacement potential through either well pattern infilling or chemical flooding alone, while systematic experimental investigations and mechanism studies on the synergistic effect of well pattern infilling and chemical flooding remain insufficient. To overcome the limitations of single adjustment measures, this study proposes a synergistic improved oil recovery (IOR) strategy integrating branched preformed particle gel (B-PPG) heterogeneous phase composite flooding (HPCF) with well pattern infill adjustment. Two-dimensional visual physical simulation experiments are conducted to evaluate the synergistic oil displacement effects of different displacement systems and well pattern adjustment strategies after polymer flooding and to elucidate the synergistic IOR mechanisms under the coupling of dense well patterns and chemical flooding. The experimental results demonstrate that, under well pattern infill conditions, the HPCF system exhibits significant water control and oil enhancement effects during the chemical flooding stage, achieving a 29.95% increase in stage recovery compared to the water flooding stage. The system effectively blocks high-permeability channels while enhancing displacement in low-permeability zones through a coupling effect, thereby significantly expanding the displacement sweep volume, improving displacement uniformity, and efficiently mobilizing the remaining oil in low-permeability and residual oil-rich areas. Meanwhile, well pattern infill adjustment optimizes the injection-production well pattern layout, shortens the inter-well spacing, and effectively increases the displacement pressure differential between injection and production wells. This induces disturbances and reconfiguration of the streamline field, disrupts the original high-permeability channel-dominated flow regime, further expands the sweep range of the remaining oil, and substantially improves overall oil recovery. The findings of this study enrich and advance the theoretical framework of water control and potential tapping, as well as synergistic IOR mechanisms, in high-water-cut and strongly heterogeneous reservoirs, providing a reliable theoretical and technical basis for the efficient development and remaining oil recovery in such reservoirs during the late production stage.

摘要

井网加密调整与化学驱相结合是聚合物驱后大幅提高高含水油藏采收率的重要技术途径。目前的研究主要集中在单独通过井网加密或化学驱来评价驱油潜力,而关于井网加密与化学驱协同效应的系统实验研究和机理研究仍显不足。为克服单一调整措施的局限性,本研究提出了一种将分支型预聚体颗粒凝胶(B-PPG)非均相复合驱(HPCF)与井网加密调整相结合的协同提高采收率(IOR)策略。开展二维可视化物理模拟实验,以评价聚合物驱后不同驱替体系和井网调整策略的协同驱油效果,并阐明密井网与化学驱耦合作用下的协同IOR机理。实验结果表明,在井网加密条件下,HPCF体系在化学驱阶段具有显著的控水增油效果,与水驱阶段相比,阶段采收率提高了29.95%。该体系通过耦合效应有效封堵高渗通道,同时增强低渗区的驱替作用,从而显著扩大驱替波及体积,提高驱替均匀性,有效动用低渗和剩余油富集区的剩余油。同时,井网加密调整优化了注采井网布局,缩短了井距,有效增大了注采井间的驱替压差。这引发了流线场的扰动和重构,破坏了原有的以高渗通道为主导的流态,进一步扩大了剩余油的波及范围,大幅提高了整体采收率。本研究结果丰富和推进了高含水强非均质油藏控水挖潜及协同IOR机理的理论框架,为这类油藏后期高效开发和剩余油采收提供了可靠的理论和技术依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a620/12385995/53aedf2c5390/gels-11-00660-g001.jpg

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