A numerical simulator developed for modeling permeability control for enhanced oil recovery
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A numerical simulator developed for modeling permeability control for enhanced oil recovery

机译:一种用于建模渗透控制的数值模拟器,用于增强的储油

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AbstractWater fingering phenomenon in an oil layer or water preferential injection into highly permeable layers in a multilayer reservoir often leads to a low sweep efficiency in a strong heterogeneous oil reservoir depending on water flooding for enhanced oil recovery (EOR). EOR by means of permeability control during water flooding periods in heterogeneous oil formations has been corroborated by previous experiments in the laboratory and field trial in mature oil fields. However, the quantitative relationships between EOR and permeability control in oil reservoirs are not clearly understood currently. In this paper, the mechanisms of permeability control in oil reservoirs were analyzed by theoretical approaches. Then, a three dimensional multi-phase flow mathematical model considering migration of solid permeability control agents (PCA) was presented. A numerical simulator for predicting multi-phase flow of permeability control in oil reservoirs was developed in Fortran codes. In addition, the permeability reduction and water-cut change induced by PCA calculated by the simulator are validated by experiments. Furthermore, a two and a three dimensional geological models with different types of permeability control agents injected into the highly permeable layer for EOR were studied by using the new simulator developed in this work. The simulation results demonstrate the permeability control processes with elapsed time as well as oil production performance influenced by permeability control. It also reveals a mechanism of permeability control for EOR, and suggests oil recovery improved by 4.9–8.8% in the 2D simulation and 6.1% in the 3D simulation example. It validates the feasibility of numerical simulation and importance of permeability control technology for EOR.Highlights?The mechanism of permeability control in oil reservoirs is studied theoretically.?A model predicting transport of permeability control agents is presented.?It reveals a mechanism of permeability control for EOR.?3D-simulation result shows oil recovery is improved by 6.1% by permeability control.]]>
机译:<![CDATA [ 抽象 油层中的水指法现象或者在多层储层中的高渗透层中的水指法现象经常导致一个根据水洪水洪水(EOR)的水洪水,在强异质油藏中低扫效效率。通过在成熟油田的实验室和田间试验中,通过在异质油田中的渗透率控制期间通过渗透控制,在成熟的油田中的实验室和田间试验中得到了证实。然而,目前尚未清楚地理解油藏中EOR与渗透控制之间的定量关系。本文通过理论方法分析了油藏中渗透控制机制。然后,提出了考虑固体渗透性控制剂(PCA)迁移的三维多相流数学模型。用于预测油藏中的用于预测油藏渗透控制多相流动的数值模拟器。此外,通过实验验证了由模拟器计算的PCA诱导的渗透性降低和脱水变化。此外,通过使用在这项工作中开发的新模拟器,研究了一种具有不同类型的渗透性控制剂的两种和三维地质模型,所述渗透性控制剂注入EOR的高度渗透层。仿真结果证明了具有经过时间的渗透控制过程以及受渗透控制影响的油生产性能。它还揭示了EOR渗透性控制机制,并在2D模拟中提出了7.9-8.8%的石油回收率和3D模拟示例中的6.1%。它验证了EOR的数值模拟和重要性的可行性。 亮点 从理论上研究了油藏中的渗透控制机制。 < CE:标签>? 介绍了预测渗透控制代理的运输的模型。 它显示了EOR的渗透控制机制。 3D仿真结果显示,通过渗透控制提高了7.1%的石油恢复。 ]]>

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