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分支预成型颗粒凝胶在多孔介质中的传输特性:弹性模量、匹配系数和注入速率的影响

Transport Characteristics of Branched-Preformed Particle Gel in Porous Media: Influence of Elastic Modulus, Matching Coefficient, and Injection Rate.

作者信息

Chen Ruping, He Hong, Tian Yuhang, Xiong Zixiang, Ke Wenli, Pei Haihua, Zhang Peng

机构信息

College of Petroleum Engineering, Yangtze University, Wuhan 430100, China.

Key Laboratory of Drilling and Production Engineering for Oil and Gas, Wuhan 430100, China.

出版信息

Gels. 2025 Apr 23;11(5):315. doi: 10.3390/gels11050315.

Abstract

The viscoelastic branched-preformed particle gel (B-PPG) has been successfully applied to enhance oil recovery in mature reservoirs. However, due to a lack of a clear understanding of the transport characteristics of B-PPG in porous media, the injectivity and plugging efficiency are not ideal, and the incremental oil recovery is not as expected, which poses a great obstacle to the large-scale popularization and application of B-PPG in mature oilfields. Thus, the influences of elastic moduli, matching coefficients, and injection rates on transport characteristics of B-PPG in porous media were investigated by conducting core flow experiments. The results indicate that the elastic modulus of B-PPG can significantly affect the injectivity and plugging efficiency. The higher the elastic modulus is, the more difficult it is to transport in the porous medium. When the particle size is similar, as the elastic modulus increases, the resistance factor () and residual resistance factor () increase. When the elastic modulus is similar, as the particle size increases, the and increase. As the matching coefficient decreases, the and decrease, reflecting the improvement of injectivity and the weakening of plugging efficiency. The higher the reservoir permeability, the lower the matching coefficient. When the reservoir permeability ranges from 0.30 to 5.30 μm, the B-PPG with an elastic modulus of 42.2 Pa and a of 525 μm can migrate smoothly into the depth of porous media and form effective plugging. As the injection rate increases, the and decrease, reflecting the improvement of injectivity and the weakening of plugging efficiency. Therefore, to achieve good injectivity and plugging efficiency of the B-PPG suspension, the injection rate should be in the range of 0.5 mL·min to 1.5 mL·min. Hence, these findings could give an important understanding of the factors affecting the transport characteristics of B-PPG and provide guidance for enhancing oil recovery by B-PPG flooding in mature oilfields.

摘要

粘弹性预成型颗粒凝胶(B-PPG)已成功应用于提高成熟油藏的采收率。然而,由于对B-PPG在多孔介质中的运移特性缺乏清晰认识,其注入性和封堵效率不理想,增油效果未达预期,这给B-PPG在成熟油田的大规模推广应用带来了巨大障碍。因此,通过开展岩心流动实验,研究了弹性模量、匹配系数和注入速率对B-PPG在多孔介质中运移特性的影响。结果表明,B-PPG的弹性模量能显著影响注入性和封堵效率。弹性模量越高,在多孔介质中运移越困难。当粒径相近时,随着弹性模量增大,阻力系数()和残余阻力系数()增大。当弹性模量相近时,随着粒径增大,和增大。随着匹配系数减小,和减小, 这反映了注入性的提高和封堵效率的减弱。油藏渗透率越高,匹配系数越低。当油藏渗透率在0.30至5.30μm范围内时,弹性模量为42.2Pa、粒径为525μm的B-PPG能顺利迁移至多孔介质深部并形成有效封堵。随着注入速率增大,和减小,这反映了注入性的提高和封堵效率的减弱。因此,为使B-PPG悬浮液具有良好的注入性和封堵效率,注入速率应在0.5mL·min至1.5mL·min范围内。因此,这些研究结果有助于深入了解影响B-PPG运移特性的因素,并为成熟油田采用B-PPG驱油提高采收率提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4851/12111434/98085c54c670/gels-11-00315-g001.jpg

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