首页> 外文期刊>Journal of Petroleum Science & Engineering >Formulation development and visualized investigation of temperature-resistant and salt-tolerant surfactant-polymer flooding to enhance oil recovery
【24h】

Formulation development and visualized investigation of temperature-resistant and salt-tolerant surfactant-polymer flooding to enhance oil recovery

机译:耐耐耐盐和耐盐性表面活性剂 - 聚合物洪水的配方开发和可视化研究,以提高采油

获取原文
获取原文并翻译 | 示例
       

摘要

As a tertiary oil recovery technique with broad application prospects, surfactant-polymer flooding can significantly improve sweep efficiency and enhance oil recovery, while eliminate the negative effects of alkali thoroughly. However, for most oil reservoirs abroad, belonging to marine carbonate reservoirs with high temperature and high salt content, SP flooding is largely limited. In this paper, the surface (interface) chemical properties of different types of surfactants were evaluated to select a mixed surfactant system with better performance and synergistic effect. And experiments on the physicochemical properties evaluation of polymers were performed to select a more suitable polymer. On this basis, the formulation of the surfactant-polymer binary composite system was optimized and the performance was evaluated. A visualized model was adopted to study the process of SP flooding, which vividly reflected the interaction of chemical agents with crude oil and the migration of chemical agents in porous media, as well as macroscopic and microscopic EOR mechanisms of SP Flooding. The results showed that Hexadecyl dimethyl carboxybetaine (C16HSB), heavy alkyl the linear alkylated diphenylmethane sulfonate (C-14-DSDM) and the hydrophobically modified polyacrylamide-based novel functional polymer GT-1 were selected. The optimized formulation of the SP flooding system was selected for 2000 mg/L GT-1 + 3000 mg/L C-14-DSDM + 1000 mg/L C16HSB, which showed higher apparent viscosity and lower interfacial tension (7.2 x 10(-3) mN/m) under the condition of 70 degrees C and 9780.5 mg/L formation water salinity. The system showed a certain resistance to temperature and salt, and stability under the conditions of temperature below 80 degrees C and salinity below 40000 mg/L and an EOR value of 31.2% in the visualized displacement experiment. Surfactants in the SP flooding system can emulsify the residual oil into spherical and flocculent emulsions, which are then stripped, drawn into filaments, and easily motivated. The retention of more polymer molecules in the throat causes the intermolecular association of polymer molecules to form a denser network structure, which plays an important role in increasing flow resistance and changing the direction of liquid flow, and its viscoelasticity contributes to the discharge of residual oil. Under the synergistic effect of surfactants and polymer, hydrodynamic residual oil, membrane residual oil, and residual oil droplets can be mobilized, thus beneficial to enhance oil recovery.
机译:作为具有广泛应用前景的三级采油技术,表面活性剂 - 聚合物洪水可显着提高扫描效率,增强储存,同时彻底消除了碱的负面影响。然而,对于国外的大多数石油储层,属于具有高温和高盐含量的海洋碳酸盐储层,SP洪水大大限制。本文评价了不同类型表面活性剂的表面(界面)化学性质,选择具有更好性能和协同效应的混合表面活性剂体系。进行对聚合物的物理化学性质评估的实验,以选择更合适的聚合物。在此基础上,优化了表面活性剂 - 聚合物二元复合体系的制剂,评价了性能。采用了一种可视化模型来研究SP洪水的过程,从生动地反映了化学试剂与原油的相互作用以及多孔介质中的化学试剂的迁移,以及SP洪水的宏观和微观EOR机制。结果表明,选择十六烷基二甲基羧基脲(C16HSB),重型烷基化二苯基甲烷磺酸盐(C-14-DSDM)和疏水改性的聚丙烯酰胺基新型官能聚合物GT-1。 SP泛洪系统的优化配方选自2000mg / L GT-1 + 3000 mg / L C-14-DSDM + 1000mg / L C16HSB,表明表观粘度和较低的界面张力(7.2×10( - 3)Mn / m)在70℃和9780.5mg / L形成水盐度的条件下。该系统显示出一定的温度和盐的耐药性,并且在低于80℃的温度条件下的稳定性和低于40000mg / L的盐度,并且在可视化位移实验中的EOR值为31.2%。 SP洪水系统中的表面活性剂可以将残留的油乳化成球形和絮状乳液,然后将其剥离,吸入细丝,并且容易激励。喉部中更多的聚合物分子的保留导致聚合物分子的分子间缔合缔合形成更密集的网络结构,这在增加流动阻力和改变液体流动方向时起着重要作用,并且其粘弹性有助于排出残留的油。在表面活性剂和聚合物的协同作用下,可以动集流体动力残留油,膜残留油和残留的油滴,因此有利于提高采油。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号