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A Numerical Investigation on the Performance of Alkaline-Surfactant-Polymer Flooding in Naturally Fractured Carbonate Reservoirs

机译:天然碎裂碳酸盐储层中碱性表面活性剂 - 聚合物水分性能的数值研究

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Naturally Fractured Reservoirs are important contributors to the world's oil and gas reserves representing around one-fifth of the world's reservoirs. They usually are of lower recovery and higher residual hydrocarbon saturation than the rest of reservoirs due to its mixed wettability, low matrix permeability, low fracture porosity, and the complicated fracture network. When alkaline-surfactant-polymer flooding is conducted, it enhances the recovery by altering the wettability, lowering the interfacial tension of the rock, reducing the mobility ratio, and forming a secondary in-situ surfactant, consequently reducing the residual hydrocarbon saturation. However, majority of ASP operations usually underestimate the complicated structure and description of reservoirs. As a result, this lacking causes a serious flood modeling issue on NFRs since they rely on the matrix system mainly being the storage of hydrocarbon, and the fracture system carrying out the production. This paper presents a comprehensive study on modeling ASP flooding on NFRs. It mainly addresses the effects of wettability, IFT, capillary forces, fracture parameters along with fracture and matrix permeabilities on ASP using a dual porosity and dual permeability model. It also addresses the performance, recovery factor and the optimum slug size for an optimum EOR operation, as well as to give guidelines and theoretical justification for better flooding practices based on a modeling approach only.
机译:自然裂缝水库是世界石油和天然气储量的重要贡献者,占世界水库的五分之一。由于其混合润湿性,低矩阵渗透性,低断裂孔隙和复杂的裂缝网络,它们通常具有比其余储层的恢复和较高的储存碳氢化合物饱和度较低。当进行碱性表面活性剂 - 聚合物驱液时,它通过改变润湿性来增强回收,降低岩石的界面张力,降低迁移率,并形成次级原位表面活性剂,从而降低残留的烃饱和度。然而,大多数ASP操作通常低估了水库的复杂结构和描述。因此,这种缺乏导致对NFR进行严重的洪水建模问题,因为它们依赖于矩阵系统,主要是储存烃,以及开展生产的裂缝系统。本文介绍了对NFR上的普通洪水建模综合研究。它主要解决了使用双孔隙度和双渗透率模型的ASP上裂缝和基质渗透性的润湿性,IFT,毛细管力,断裂参数的影响。它还解决了最佳EOR操作的性能,恢复因子和最佳的SLUG尺寸,以及基于仅适用于建模方法的更好的洪水实践提供指导和理论理由。

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