首页> 外文会议>Abu Dhabi International Petroleum Exhibition Conference >Modeling the Effects of Salinity, Polymer Rheology, Temperature, and Reservoir Wettability on the Performance of In-Depth Gel Treatment Coupled with Surfactant and Polymer Flooding
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Modeling the Effects of Salinity, Polymer Rheology, Temperature, and Reservoir Wettability on the Performance of In-Depth Gel Treatment Coupled with Surfactant and Polymer Flooding

机译:盐度,聚合物流变,温度,储层润湿性对含有表面活性剂和聚合物驱性的深入凝胶处理性能的影响

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In-depth gel treatment is a chemical EOR process used to improve the sweep efficiency from heterogeneous reservoirs with crossflow. However, if these reservoirs are saturated with viscous oil, polymer and surfactant flooding should be combined with in-depth gel treatment. Thus, in this study, a 3D model using the UTGEL simulator was built to model in-depth gel treatment combined with surfactant slug and polymer solution. The model was represented by one quarter of the five-spot pattern with eight layers where two thief zones are located in the middle of the model. The thief zones had a permeability of 1500 md with a total thickness of 20 ft, while the rest of the layers had a permeability of 100 md with a total thickness of 200 ft. The gel system consisted of a polyacrylamide/Cr(VI)/thiourea solution, which is considered an in-situ gelation system. Gelant solution was injected for 60 days when the water cut in the model reached 65%, followed by surfactant slug for 2 years, polymer solution for 3 years, and then post-water injection for the rest of the simulation time. The concentrations of the surfactant ranged from 0.01 to 0.2 wt.%, while the polymer concentration was 1,000 ppm. The injection rate was 1,070 bbl/day during all flooding and treatment processes. The results showed that it is imperative to implement surfactant with gel treatment to reduce the interfacial tension between water and oil phases and to alter the wettability of the reservoir rocks. Thus, gel treatment alone or gel followed by polymer was not as efficient as the injection of a surfactant slug. The results also showed that as the reservoir temperature increased, the overall performance of gel, polymer, and surfactant decreased. Therefore, the higher the temperature, the lower the recovery factor. The results also revealed the importance of viscoelastic behavior of the HPAM polymer solution where higher results for both water-wet and oil-wet conditions were obtained compared to shear-thinning behavior only. Moreover, the results revealed interesting behavior regarding the concentration of the surfactant, where the recovery factor increased as the concentration of the surfactant increased in oil-wet conditions. However, in water-wet conditions, the results were unpromising and unfavorable. Furthermore, the injection of surfactant directly after the gel treatment was more effective in improving the sweep efficiency than the injection of polymer directly after the gel treatment. Finally, as the salinity of makeup water and/or reservoir brine increased, the recovery factor decreased for both water and oil-wet systems. This is because, as salinity increased, the adsorption of both polymer and surfactant increased and the polymer viscosity decreased. Furthermore, the presence of divalent cations such as Ca~(+2) and Mg~(+2), would have a negative impact on overall treatment.
机译:深入的凝胶处理是一种化学EOR工艺,用于提高具有交叉流的异构储层的扫描效率。但是,如果这些储存器饱和粘稠的油,则应与深入凝胶处理结合聚合物和表面活性剂泛滥。因此,在本研究中,使用UTGEL模拟器的3D模型构建为模型深入凝胶处理,与表面活性剂块和聚合物溶液相结合。该模型由四分之一的四分之一表示,其中八层两个贼区位于模型中间。小偷区域的渗透率为1500md,总厚度为20英尺,而这些层的其余部分具有100md的渗透率,总厚度为200英尺。凝胶系统由聚丙烯酰胺/ Cr(VI)组成,而且硫脲溶液,被认为是一种原位凝胶化系统。在模型中的水切割达到65%的情况下注射胶质剂溶液60天,然后是表面活性剂块2年,聚合物溶液3岁,然后在其余的模拟时间后注射水。表面活性剂的浓度范围为0.01至0.2重量%。%,而聚合物浓度为1,000ppm。在所有洪水和治疗过程中注射率为1,070 BBL /天。结果表明,实施具有凝胶处理的表面活性剂,以减少水和油阶段之间的界面张力,并改变水库岩石的润湿性。因此,单独的凝胶处理或凝胶之后的聚合物并不像注射表面活性剂块一样有效。结果还表明,随着储层温度的增加,凝胶,聚合物和表面活性剂的整体性能下降。因此,温度越高,回收率越低。结果还揭示了HPAM聚合物溶液的粘弹性行为的重要性,其中与仅剪切稀疏行为相比,获得了水湿和油湿条件的更高结果。此外,结果显示了关于表面活性剂浓度的有趣行为,其中回收因子随着表面活性剂浓度增加的油湿条件而增加。然而,在水湿条件下,结果是不妥协和不利的。此外,在凝胶处理之后,在凝胶处理之后直接注射表面活性剂在提高扫描效率方面比立即注射聚合物更有效。最后,随着化妆水和/或储层盐水的盐度增加,水和油湿系统的回收率降低。这是因为,随着盐度的增加,两种聚合物和表面活性剂的吸附增加,聚合物粘度降低。此外,二价阳离子如Ca〜(+ 2)和Mg〜(+ 2),对整体治疗产生负面影响。

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