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Design of a Simulator for Enhanced Oil Recovery Process Using a Nigerian Reservoir as a Case Study
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作者 Kamilu Folorunsho Oyedeko Alfred Akpoveta Susu 《Advances in Chemical Engineering and Science》 2014年第4期430-453,共24页
This study involves the applications of different numerical techniques in a more general way to the design of a simulator for an enhanced oil recovery process with surfactant assisted water flooding. The data from a h... This study involves the applications of different numerical techniques in a more general way to the design of a simulator for an enhanced oil recovery process with surfactant assisted water flooding. The data from a hypothetical oil well and a Nigerian oil well were used for the validation of the simulator. The process is represented by a system of nonlinear partial differential equations: the continuity equation for the transport of the components and Darcy’s equation for the phase flow. The orthogonal collocation, finite difference and coherence theory techniques were used in solving the equations that characterized the multidimensional, multiphase and multicomponent flow problem. Matlab computer programs were used for the numerical solution of the model equ- ations. The predicted simulator, obtained from the resulting numerical exercise confers uncondi- tional stability and more insight into the physical reservoir description. The results of the ortho- gonal collocation solution were compared with those of finite difference and coherence solutions. The results indicate that the concentration of surfactants for orthogonal collocation show more features than the predictions of the coherence solution and the finite difference, offering more opportunities for further understanding of the physical nature of the complex problem. We have found out that the partition of the three components between the two-phases determines other physical property data and hence the oil recovery. The oil recovery for the Nigerian oil reservoir is higher than the recovery predicted for the hypothetical crude. The displacement mechanism for the multicomponent and multiphase system is stable in the Nigerian oil reservoir due to the mod- erate value of the oil/water viscosity instead of the hypothetical reservoir with high value of oil/water ratio. 展开更多
关键词 Enhanced oil Recovery SIMULATOR DESIGN Multidimensional MULTICOMPONENT and Multiphase System Surfactant Assisted Flooding Orthogonal COLLOCATION Finite Difference Coherence Theory Hypothetical reservoir nigerian reservoir
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断层封堵技术在尼日利亚p64区块应用 被引量:2
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作者 宋建平 《石油天然气学报》 CAS CSCD 北大核心 2011年第2期54-57,165,共4页
在尼日尔三角洲盆地石油勘探中,对影响断层封堵因素进行了分析,详细介绍了Allan图解法断层封堵技术的适用条件及其基本原理。利用Allan图解法断层封堵技术对尼日利亚p64区块重点圈闭(即Kukaku断层圈闭)进行断层封堵分析,认为对Kukaku断... 在尼日尔三角洲盆地石油勘探中,对影响断层封堵因素进行了分析,详细介绍了Allan图解法断层封堵技术的适用条件及其基本原理。利用Allan图解法断层封堵技术对尼日利亚p64区块重点圈闭(即Kukaku断层圈闭)进行断层封堵分析,认为对Kukaku断层圈闭起控制作用的断层在主要勘探目的层F1、F2、F3、F5、G1等层段具有封堵性。经圈闭综合评价,在Kukaku断层圈闭上部署了Kukaku-1井。通过钻探,Kukaku-1井共钻遇油层20.1 m、气层52.5 m,取得了良好钻探效果。 展开更多
关键词 尼日尔三角洲 断层圈闭 断层封堵 储集层 排替压力 砂泥岩并置 断面剖面
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