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Insights into the Effects of Salinity on the Transport Behavior of Polymer-Enhanced Branched-Preformed Particle Gel Suspension in Porous Media

机译:盐度对多孔介质中聚合物增强支化颗粒凝胶悬浮液的盐度对盐度的影响

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摘要

The branched-preformed particle gel (B-PPG) is a novel viscoelastic particle gel used for improving sweep efficiency and enhancing oil recovery in a heterogeneous mature reservoir. To improve the performance of B-PPG, partially hydrolyzed polyacrylamide (HPAM) is used to increase the viscosity and to prepare a homogeneous B-PPG suspension. Although some encouraging progress has been made in the application of polymer-enhanced B-PPG suspension, its transport behavior in porous media is still unclear, which is crucial for its application in enhanced oil recovery (EOR) in a heterogeneous reservoir. Due to the complex reservoir condition of different brine salinities, the physiochemical property of polymer-enhanced B-PPG suspension as well as its transport behavior in porous media can be affected, which may lead to unsatisfactory results. Understanding the effects of salinity on the transport behavior of polymer-enhanced B-PPG suspension in porous media is of vital importance in figuring out the flow behavior and improving the sweep efficiency in the mature reservoir. In this study, the effects of salinity on the swelling ratio, particle size, viscosity property, and suspension stability of B-PPG and polymer-enhanced B-PPG suspension were studied. Meanwhile, sand pack flow experiments were conducted to study the transport behavior of polymer-enhanced B-PPG suspension in porous media. The results show that when the brine salinity increases, the swelling ratio and particle size of B-PPG, as well as the viscosity and the suspension stability of polymer-enhanced B-PPG suspension all demonstrate a decreasing trend. In the range of 3550–10 651 mg·L~(–1), as the brine salinity increases, the resistance factor decreases and the transportation of polymer-enhanced B-PPG suspension in porous media becomes easier. In this case, the ratio of swollen B-PPG particle diameter to the pore throat diameter turns out to be the determining factor that governs the transport behavior. However, when the brine salinity is higher than 10 651 mg·L~(–1), with the increase of brine salinity, the resistance factor increases. As a result, the effects of viscosity and suspension stability of polymer-enhanced B-PPG suspension become more prominent.
机译:支链预成型颗粒凝胶(B-PPG)是一种新型粘弹性颗粒凝胶,用于提高扫描效率并增强异质成熟储层中的油回收。为了改善B-PPG的性能,部分水解的聚丙烯酰胺(HPAM)用于增加粘度并制备均匀的B-PPG悬浮液。尽管在施用聚合物增强的B-PPG悬浮液中已经进行了一些令人鼓舞的进展,但其在多孔介质中的运输行为尚不清楚,这对于其在异质储层中的增强的溢油(EOR)中的应用至关重要。由于不同盐水盐度的复杂储层条件,聚合物增强的B-PPG悬浮液的理化性能以及其在多孔介质中的运输行为可以受到影响,这可能导致不令人满意的结果。理解盐度对多孔介质中聚合物增强的B-PPG悬浮液的运输行为的影响对于阐述流动行为并提高成熟储存器中的扫描效率至关重要。在该研究中,研究了盐度对B-PPG和聚合物增强的B-PPG悬浮液的溶胀比,粒度,粘度性和悬浮稳定性的影响。同时,进行了砂包流程实验,以研究多孔介质中聚合物增强的B-PPG悬浮液的运输行为。结果表明,当盐水盐度增加时,B-PPG的溶胀比和粒度,以及聚合物增强的B-PPG悬浮液的粘度和悬浮稳定性都表现出降低趋势。在3550-10651 mg·l〜(-1)的范围内,随着盐水盐度的增加,电阻因子降低,多孔介质中的聚合物增强的B-ppg悬浮液的运输变得更容易。在这种情况下,溶胀的B-PPG粒径与孔喉部直径的比率变成了控制传输行为的确定因素。然而,当盐水盐度高于10651 mg·l〜(-1)时,随着盐水盐度的增加,电阻因子增加。结果,聚合物增强的B-PPG悬浮液的粘度和悬浮稳定性的影响变得更加突出。

著录项

  • 来源
    《Energy & fuels》 |2021年第2期|1104-1112|共9页
  • 作者单位

    College of Petroleum Engineering China University of Petroleum (East China)|Research Institute of Exploration and Development of Shengli Oilfield SINOPEC;

    College of Petroleum Engineering China University of Petroleum (East China);

    College of Petroleum Engineering Yangtze University;

    Research Institute of Exploration and Development of Shengli Oilfield SINOPEC;

    College of Petroleum Engineering Yangtze University;

    College of Petroleum Engineering Yangtze University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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