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Numerical Simulation Studies on Development of an Offshore Heavy Oil Field by Early-stage Chemical Flooding

机译:早期化学洪水开发海上重油场的数值模拟研究

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As one of the major enhanced oil recovery mechanisms, chemical flooding procedure has been widely and successfully used in matured fields and the overall sweep efficiency has been improved between 5- 12% due to various chemical flooding treatments. China National Offshore Oil Company (Cnooc) started its pilot offshore chemical flooding projects to evaluate the chemical flooding opportunities at early development phase. In this paper, we present numerical simulation studies on overall evaluation of a Cnooc’s offshore heavy oil chemical flooding project using chemical flooding simulator. In the numerical simulation studies, we have developed a numerical model with the focus on various complex chemical flooding procedures. Moreover, we have also developed a dynamic well model that is capable of modeling multi-phase flow inside complex multi-lateral wellbores. An algebraic multi-grid linear solver has been developed and implemented into the simulator. As the simulator has been developed following the advanced software architecture design and it can be easily expanded other field applications. The targeted field in this paper is an offshore heavy-oil field with hundreds of wells and a complex fault system. The production started in 1999, and waterflooding in 2000. In 2007, all water injectors have been switched to polymer injection for better conformance control. In this field-scale reservoir simulation study, the polymer solution, reservoir brine and the injected water are represented as miscible components of the aqueous phase. Key factors such as inaccessible pore volume, polymer shear thinning effect, polymer adsorption, and relative permeability reduction factors have been taken into account for the construction of the mathematical model. Simulations have been run for evaluation on optimal polymer injection timing, amount and pattern.
机译:作为主要增强的采油机制之一,化学洪水手术已广泛且成功地在成熟的领域中使用,由于各种化学洪水处理,5-12%的整体扫描效率得到了改善。中国国家海上石油公司(中海油)启动其先行近海化工洪水项目,以评估早期发展阶段的化学洪水机会。本文采用化学洪水模拟器展示了对石油海外重油化学洪水工程的整体评价的数值模拟研究。在数值模拟研究中,我们开发了一个数字模型,重点是各种复杂的化学洪水程序。此外,我们还开发了一种动态井模型,能够在复杂的多横向井筒内建模多相流动。已经开发并实施了代数多网线性求解器并实现到模拟器中。随着模拟器在高级软件架构设计之后开发的,它可以很容易地扩展其他现场应用程序。本文的目标领域是近海重油场,具有数百个井和复杂的故障系统。该生产于1999年开始,2000年浇水。2007年,所有水喷射器已切换到聚合物注射以获得更好的符合控制。在该场估计储层模拟研究中,聚合物溶液,贮存器盐水和注入水被表示为水相的可混溶组分。考虑到数学模型的构建,考虑了孔体积难以接近的孔体积,聚合物剪切稀释效果,聚合物吸附和相对渗透性降低因子。仿真在最佳聚合物注射时序,数量和图案上进行了评估。

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