CO2-Foam Monitoring using Resistivity and Pressure Measurements

M. Karakas, F. Aminzadeh, A. Graue
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Abstract

This paper focuses on combining resistivity and pressure measurements to determine the effectiveness of foam as a mobility control method. It presents a theoretical framework to describe the expected resistivity changes during CO2-foam displacements. With this objective, we first provide equations to estimate the resistivity for CO2-foam systems and then utilize two distinct foam models to quantify these effects. Using analytical solutions based on the fractional flow theory, we present resistivity and mobility distributions for ideal and non-ideal reservoir displacement scenarios. Additionally, assuming pressure measurements only, we examine the inter-dependency between various foam parameters. Our results suggest that the combination of pressure and resistivity measurements in time-lapse mode could be deployed as an effective monitoring tool in field applications of the (CO2) foam processes. The proposed method is novel as it could be employed to predict under-performing CO2-foam floods and improve oil recovery and CO2 storage.
利用电阻率和压力测量监测二氧化碳泡沫
本文的重点是结合电阻率和压力测量来确定泡沫作为一种流动性控制方法的有效性。它提出了一个理论框架来描述二氧化碳泡沫置换过程中预期电阻率的变化。为此,我们首先提供了估算二氧化碳泡沫体系电阻率的方程,然后利用两种不同的泡沫模型来量化这些影响。利用基于分流理论的解析解,给出了理想和非理想储层驱替情况下的电阻率和流度分布。此外,仅假设压力测量,我们检查各种泡沫参数之间的相互依赖性。我们的研究结果表明,延时模式下的压力和电阻率测量相结合可以作为一种有效的监测工具部署在(CO2)泡沫过程的现场应用中。该方法是新颖的,因为它可以用来预测表现不佳的二氧化碳泡沫驱,提高石油采收率和二氧化碳储量。
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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