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一种用于稠油油藏的超分子聚合物凝胶基暂堵剂的制备及性能评价

Preparation and Performance Evaluation of a Supramolecular Polymer Gel-Based Temporary Plugging Agent for Heavy Oil Reservoir.

作者信息

Niu Cheng, Fan Sheng, Chen Xiuping, He Zhong, Dai Liyao, Wen Zhibo, Li Meichun

机构信息

Petroleum Engineering Technology Institute of Northwest Petroleum Branch, SINOPEC, Urumqi 830011, China.

Key Laboratory of Enhanced Oil Recovery in Carbonate Fractured-Vuggy Reservoirs, SINOPEC, Urumqi 830011, China.

出版信息

Gels. 2024 Aug 19;10(8):536. doi: 10.3390/gels10080536.

Abstract

When encountering heavy oil reservoirs during drilling, due to the change in pressure difference inside the well, heavy oil will invade the drilling fluid, and drilling fluid will spill into the reservoir along the formation fractures, affecting the drilling process. A supramolecular polymer gel-based temporary plugging agent was prepared using acrylamide (AM), butyl acrylate (BA), and styrene (ST) as reacting monomers, N, N-methylenebisacrylamide (MBA) as a crosslinking agent, ammonium persulfate (APS) as an initiator, and poly(vinyl alcohol) (PVA) as a non-covalent component. A supermolecular polymer gel with a temperature tolerance of 120 °C and acid solubility of 90% was developed. The experimental results demonstrated that a mechanically robust, thermally stable supramolecular polymer gel was successfully synthesized through the copolymerization of AM, BA, and ST, as well as the in situ formation hydrogen bonding between poly (AM-co-BA-co-ST) and PVA, leading to a three-dimensional entangled structure. The gel-forming solution possessed excellent gelling performance even in the presence of a high content of salt and heavy oil, demonstrating superior resistance to salt and heavy oil under harsh reservoir conditions. High-temperature and high-pressure plugging displacement experiments proved that the supramolecular polymer gel exhibited high pressure-bearing capacity, and the blocking strength reached 5.96 MPa in a wedge-shaped fracture with a length of 30 cm. Furthermore, the dissolution rate of the supramolecular polymer gel was as high as 96.2% at 120 °C for 48 h under a 15% HCl solution condition.

摘要

在钻井过程中遇到稠油储层时,由于井内压差变化,稠油会侵入钻井液,钻井液会沿地层裂缝溢入储层,影响钻井进程。以丙烯酰胺(AM)、丙烯酸丁酯(BA)和苯乙烯(ST)为反应单体,N,N-亚甲基双丙烯酰胺(MBA)为交联剂,过硫酸铵(APS)为引发剂,聚乙烯醇(PVA)为非共价组分,制备了一种基于超分子聚合物凝胶的暂堵剂。研制出了一种耐温120℃、酸溶率为90%的超分子聚合物凝胶。实验结果表明,通过AM、BA和ST的共聚以及聚(AM-co-BA-co-ST)与PVA之间原位形成氢键,成功合成了一种机械强度高、热稳定性好的超分子聚合物凝胶,形成了三维缠结结构。即使在高含盐量和稠油存在的情况下,成胶溶液仍具有优异的成胶性能,在恶劣的储层条件下表现出卓越的抗盐和抗稠油能力。高温高压封堵驱替实验证明,超分子聚合物凝胶具有较高的承压能力,在长度为30 cm的楔形裂缝中封堵强度达到5.96 MPa。此外,在15%盐酸溶液条件下,超分子聚合物凝胶在120℃下48 h的溶解率高达96.2%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/374a/11354005/db913f350261/gels-10-00536-g001.jpg

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