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首页> 外文期刊>Energies >The Performance of Surfactant-Polymer Flooding in Horizontal Wells Consisting of Multilayers in a Reservoir System
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The Performance of Surfactant-Polymer Flooding in Horizontal Wells Consisting of Multilayers in a Reservoir System

机译:储层系统多层组成的水平井中表面活性剂-聚合物驱性能

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Surfactant-polymer (SP) flooding has been demonstrated to be an effective method to recover oil in the enhanced oil recovery (EOR) stage when water flooding is no longer relevant. Theoretically, adding surfactant causes the reduction of the interfacial tension between oil and water in pores, therefore reducing the residual oil saturation, whereas the sweep efficiency will be significantly improved by the polymer injection as a result of proper mobility control. With regard to the well patterns, water flooding has demonstrated a high productivity in horizontal wells. Recently, other EOR processes have been increasingly applied to the horizontal wells in various well patterns. In this study, the efficiency of SP flooding applied to horizontal wells in various well configurations is investigated in order to select the best EOR performance in terms of either a technical or economical point of view. Furthermore, the reservoir is assumed to be anisotropic with four different layers that have same porosity but different permeability between each layer. The study figures out that, the utilization of a horizontal injector and producer always gives a higher oil production in comparison with the reference case of a conventional vertical injector and producer; however, the best EOR performances that demonstrate the higher oil recovery and lower fluid injected volume than those of the reference case are achieved when the production well is located in bottom layers and parallel with the injection well at a distance. While the location of producer decides oil productivity, the location of injector yet affects the uniformity of fluids propagation in the reservoir. A predefined feasibility factor is also taken into consideration in order to reject the infeasible cases that might give a high oil production but require a higher injected volume than the reference case. This factor is used as an economic parameter to evaluate the success of the EOR performance. The simulation is carried out in a quarter five-spot pattern reservoir with the support of the Computer Modeling Group (CMG) simulator. Understanding the predominant EOR performance of SP flooding in horizontal wells will help to select the best plan to obtain the highest oil recovery when considering economic issues.
机译:当水驱不再相关时,表面活性剂-聚合物(SP)驱油已被证明是在提高采油率(EOR)阶段采油的有效方法。从理论上讲,添加表面活性剂会降低孔隙中油和水之间的界面张力,从而降低残余油饱和度,而由于适当的迁移率控制,注入聚合物可以显着提高吹扫效率。关于井眼模式,注水在水平井中表现出很高的生产率。近来,其他EOR工艺已经以各种井眼模式越来越多地应用于水平井。在这项研究中,为了从技术或经济角度选择最佳的EOR性能,研究了将SP注水应用于各种井配置的水平井的效率。此外,假定该储层是各向异性的,具有四个不同的层,这些层具有相同的孔隙率,但每一层之间的渗透率不同。研究表明,与传统的立式喷油器和采油器的参考案例相比,使用卧式喷油器和采油器总是可以提高采油量;但是,当生产井位于底层且与注入井保持一定距离时,可以实现最佳的EOR性能,该性能表现出比参考案例更高的采油率和更低的注液量。尽管生产者的位置决定了石油的生产率,但注入器的位置仍然影响着流体在油藏中传播的均匀性。还考虑了预定义的可行性因素,以便拒绝不可行的情况,这种情况可能会产生大量的石油,但需要的注入量比参考情况要大。该因素用作评估EOR性能成功与否的经济参数。在计算机模型组(CMG)模拟器的支持下,在四分之一五点模式的油藏中进行模拟。了解水平井中SP驱的主要EOR性能后,将有助于在考虑经济问题时选择最佳方案,以获得最高的石油采收率。

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