Estimation of Minimum Miscibility Pressure for Flue Gas Injection Using Soft Experimentations

Oluwaseun Oyinloye, Naeema Al Darmaki, M. Zarooni, F. Boukadi, Hildah Nantongo
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引用次数: 4

Abstract

A new approach is demonstrated in which soft experimentation can be performed for MMP measurements, thus replacing the common practice of slim tube displacement laboratory experiments. Recovery potential from oil reservoirs by miscible flue gas injection was studied by slim tube and field-scale numerical simulation using two flue gases and seven crude oils sampled at different depths in three candidate reservoirs. The soft experimentations were conducted using Eclipse300 TM , a three-phase compositional simulator. This study investigates minimum miscibility pressure (MMP), a significant miscible gas injection project screening tool. Successful design of the project is contingent to the accurate determination of the MMP. This study evaluates effects of important factors such as injection pressure, oil component composition, and injection gas composition on the MMP and recovery efficiency for slim tube and field-scale displacements. Two applicable MMP correlations were used for comparison and validation purposes.
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用软实验估算烟气喷射最小混相压力
本文提出了一种新的方法,即软实验可以用于MMP测量,从而取代了细管位移实验室实验的常用方法。采用细管和现场数值模拟的方法,对3个候选储层在不同深度取样2种烟气和7种原油,研究了混相烟气注入油藏的采收率潜力。软实验采用三相合成模拟器Eclipse300 TM进行。最小混相压力(MMP)是一种重要的注混气项目筛选工具。项目的成功设计取决于MMP的准确确定。该研究评估了注入压力、油组分组成和注入气体组成等重要因素对小管和现场规模驱油的MMP和采收率的影响。两个适用的MMP相关性用于比较和验证目的。
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