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Investigation of Significance of Critical Components in Optimization of WAG Injection Processes under Uncertainty

机译:关键成分在不确定性下优化摇摆注射过程中的关键成分意义研究

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Water alternating gas (WAG) injection has been widely used for the last 50 years throughout the world. The typical improved oil recovery (IOR) potential for WAG injection compared with water injection is 5 to 10%. It was originally intended to improve sweep efficiency during gas flooding, with intermittent slugs of water and gas designed to follow the same route through the reservoir. Mechanisms in WAG injection include microscopic effects, particularly in cases where three-phase flow and hysteresis are important for the IOR effect. Injection of gas usually aids an ongoing waterflood, and finding technical and commercial methods to reduce gas costs would be useful. Water injection alone tends to sweep the lower parts of a reservoir, while gas injected alone sweeps more of the upper parts of a reservoir because of gravitational forces. Gas represents a large fraction of the total cost, making WAG injection an expensive method. Thus, optimizing WAG injection is not only crucial in terms of recovery but also economics, especially where gas is expensive and/or limited. In this study, the significance of key components in a WAG injection process on SPE’s 5th Comparative Solution Project (CSP) is presented that models the WAG process through a pseudo-miscible formulation by means of coupling a full-physics reservoir simulator with commercial optimization and uncertainty software. The results are analyzed and presented in a comparative manner by means of tornado charts showing the significance of each decision and uncertainty variable.
机译:水交交配气(WAG)注射已广泛应用于全球过去50年。与注水相比,湿润注射的典型改善的采油(IOR)电位为5至10%。它最初旨在提高气体洪水期间的扫描效率,具有间歇的水和气体,旨在通过储存器遵循相同的路线。摇头注射的机制包括显微诊断,特别是在三相流动和滞后对IOR效应很重要的情况下。注入气体通常有助于持续的水泡,并找到技术和商业方法,以降低气体成本是有用的。单独的水注射倾向于扫描储存器的下部,而由于引力力,单独注入的气体将扫过储存器的上部更多。气体代表总成本的大部分,使摇头注射昂贵的方法。因此,优化WAG注射在恢复方面不仅至关重要,而且是经济学,特别是在昂贵和/或有限的情况下。在这项研究中,提出了通过耦合具有商业优化和商业优化的全物理储层模拟器的伪可混溶的制定,提出了在SPE的第五比较解决方案项目(CSP)上的摇摆喷射过程中的关键部件在摇摆喷射过程中的重要性。通过耦合具有商业优化和商业优化的全物理储层模拟器不确定性软件。通过龙卷风图表以比较方式分析和呈现结果,示出了每个决定和不确定性变量的意义。

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