Numerical Analysis Of Immiscible/Near-Miscible CO2-WAG Displacement, Incorporating Compositional And Interfacial Tension Effects

G. Wang, G. Pickup, K. Sorbie, E. Mackay
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Abstract

Summary The central objective of this paper is to study the balance and interactions of the different mechanistic contributions to the physics occurring during oil displacement by CO2 (both continuous and WAG). Mechanism 1 (M1) is the conventional oil stripping/compositional effect and Mechanism 2 (M2) is the near-miscible IFT effect on oil relative permeability through enhanced layer flow. Using sufficiently fine-scale models, we explain how these mechanisms interact with each other and affect the sweep and local displacement efficiency in a heterogeneous permeability field. We believe that studying the key processes separately leads to a greater insight into the physics of CO2 displacement, and this will help us to simulate the transition from immiscible to miscible displacement consistently at larger scales.
考虑组分和界面张力影响的非混相/近混相CO2-WAG驱替数值分析
本文的主要目的是研究CO2驱油过程中(包括连续驱油和WAG驱油)发生的不同物理机制的平衡和相互作用。机制1 (M1)是常规的原油剥蚀/成分效应,机制2 (M2)是近混相IFT通过增强层流对原油相对渗透率的影响。利用足够精细的模型,我们解释了这些机制如何相互作用,并影响非均质渗透率场的波及和局部驱替效率。我们相信,单独研究关键过程可以更深入地了解二氧化碳驱替的物理特性,这将有助于我们在更大的尺度上持续模拟从非混相驱替到混相驱替的转变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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