Laboratory evaluation of novel nano composite gel for water shut-off

IF 1.7 0 ENGINEERING, PETROLEUM SOCAR Proceedings Pub Date : 2023-06-30 DOI:10.5510/ogp2023si100835
Elchin F. Veliyev, Azizagha Aliyev
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Abstract

When extracting oil and gas from underground reservoirs, fluids such as water, CO2, polymer solutions, and surfactant solutions are often injected to displace the hydrocarbon resources. However, the presence of high-permeable layers, channels, and fractures in the reservoirs can hinder the efficiency of the displacement processes. The displacing fluids tend to channel through these high-permeability features, leaving behind significant amounts of hydrocarbon in low-permeability zones, which remain unswept. Recent developments in nanocomposite hydrogels, such as PPGs, have shown promising results for water shutoff due to their thermal stability and deformability. In this study, a preformed particle gel with nano additive (NC-PPG) was developed through free radical polymerization of AM, AMPS, and nanoclay. Nanoclay nanoparticles were found to act as physical cross-linkers in the polymer network, leading to smaller pore sizes and slightly enhanced thermal stability. The addition of an appropriate amount of nanoclay nanoparticles significantly improved the swelling rate and mechanical properties of NC-PPG. The presented composition also showed good salt tolerance, as evidenced by its compatibility with highly saline formation water and the plugging rate and RRF of 0.25% NC-PPG solution, which were 94.3% and 17.6, respectively, in the sand-pack flowing experiment. These results suggest that NC-PPG has the potential to effectively plug the high permeability zones in mature reservoirs, making it a suitable candidate for water shutoff treatment and enhanced oil recovery (EOR) strategies. The ability of NC-PPG to improve sweep efficiency and control water flow in reservoirs can contribute to more efficient oil production and reservoir management practices. Keywords: enhanced oil recovery; water shut-off; plugging efficiency; preformed particle gel; nanoclay; sweep efficiency.
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新型纳米复合凝胶水封的实验室评估
从地下储层开采石油和天然气时,通常会注入水、二氧化碳、聚合物溶液和表面活性剂溶液等流体来置换碳氢化合物资源。然而,储层中存在的高渗透层、通道和裂缝会阻碍置换过程的效率。置换流体往往会流经这些高渗透性特征,在低渗透性区域留下大量碳氢化合物,而这些区域仍未被冲刷。纳米复合水凝胶(如 PPG)具有热稳定性和可变形性,其最新发展显示出了良好的隔水效果。在本研究中,通过自由基聚合 AM、AMPS 和纳米粘土,开发出了一种含纳米添加剂的预成型颗粒凝胶(NC-PPG)。研究发现,纳米粘土纳米粒子在聚合物网络中起到了物理交联剂的作用,使孔径变小,热稳定性略有增强。添加适量的纳米粘土纳米粒子可显著提高 NC-PPG 的溶胀率和机械性能。此外,NC-PPG 与高盐度地层水的相容性以及 0.25% NC-PPG 溶液的堵塞率和 RRF(在砂包流动实验中分别为 94.3% 和 17.6)也证明了该组合物具有良好的耐盐性。这些结果表明,NC-PPG 具有有效堵塞成熟油藏中高渗透区的潜力,因此适合用于水关处理和提高石油采收率(EOR)策略。NC-PPG 能够提高清扫效率并控制油藏中的水流,有助于提高石油生产和油藏管理的效率。关键词:提高石油采收率;关水;堵塞效率;预成型颗粒凝胶;纳米粘土;清扫效率。
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来源期刊
SOCAR Proceedings
SOCAR Proceedings ENGINEERING, PETROLEUM-
CiteScore
3.00
自引率
82.40%
发文量
0
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