4.6 Article

Development of re-crosslinkable dispersed particle gels for conformance improvement in extremely high-temperature reservoirs

期刊

PETROLEUM SCIENCE
卷 19, 期 6, 页码 2922-2931

出版社

KEAI PUBLISHING LTD
DOI: 10.1016/j.petsci.2022.05.017

关键词

Dispersed particle gel; Re-crosslinking; Conformance improvement; High-temperature petroleum reservoir; Injection performance

资金

  1. Research Foundation of China University of Petroleum-Beijing at Karamay [XQZX20200010]
  2. Natural Science Foundation of Xinjiang Uygur Autonomous Region [2019D01B57]
  3. Tianshan Talent Project [2019Q025]
  4. Sichuan Province Regional Innovation Cooperation Project [2020YFQ0036]
  5. CNPC Strategic Cooperation Science and Technology Project [ZLZX2020-01-04-04]

向作者/读者索取更多资源

A re-crosslinkable dispersed particle gel (RDPG) system applied for conformance control in highly permeable channels of extremely high-temperature petroleum reservoirs was investigated. The RDPG suspension demonstrated stability and easy injection at room temperature, and it could pass through the pore throat by elastic deformation effect. It could undergo re-crosslinking reaction at high temperature to form a strong gel, showing promise for conformance improvement in extremely high-temperature reservoirs.
Micro-scale and nano-scale dispersed gel particles (DPG) are capable of deep migration in oil reservoirs due to their deformability, viscoelasticity, and suitable particle size. Therefore, it has been widely studied and applied in reservoir conformance control in recent years. However, for highly permeable channels, their plugging performance is still limited. In addition, conventional in situ cross-linked polymer gels (ISCPGs) have fast gelation time under extremely high-temperature conditions, which often causes problems such as difficulty in pumping. Therefore, a re-crosslinkable dispersed particle gel (RDPG) system applied for conformance control in highly permeable channels of extremely high-temperature petroleum reservoirs was investigated. The particle size distribution, gelation time, gel strength, injection performance, and performance strength in porous media were investigated using a laser particle size meter, the Sydansk bottle test method, rheometer, and core displacement experiments, respectively. Results show that the RDPG suspension can be stable for more than 6 months at room temperature with storage modulus G ' much lower than 10 Pa. It can pass through the pore throat by elastic deformation effect and does not cause strong blockage. Moreover, it can undergo re-crosslinking reaction at 150 degrees C to form a strong bulk gel. The gel strength G ' of re-crosslinked RDPG can be as high as 69.3 Pa, which meets the strength requirement of conformance control. The RDPG suspension has the properties of easy injection, and it also has strong plugging, and high-temperature resistance after re-crosslinked in the core, which can be a very promising material for conformance improvement in extremely high-temperature reservoirs. (c) 2022 The Authors. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd.

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