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The Calculation of Oil-water Relative Permeability From Capillary Pressure Data in an Oil-wet Porous Media: Case Study in a Dolomite Reservoir

机译:从油湿多孔介质中的毛细压力数据计算油水相对渗透率:以白云岩储层为例

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摘要

Estimating relative permeability eurves from capillary pressure data is a well-known technique and the reliability of these techniques for approximation of liquid-gas relative permeability curves had thoroughly investigated. However, there is not enough information to conclude which method is the standard one for calculating oil-water relative permeability curves. The authors utilized various capillary pressure techniques such as the Corey, Brooks-Corey, Li-Purcell, and Li-Burdine methods to calculate oil-water relalive permeabilities using the measured oil-water capillary pressure data in drainage process in an oil-wet Dolomite reservoir. Despite wide popularity of Purcell and Burdine methods for calculating relative permeability, the authors used new Li-Purcell and Li-Burdine methods. The calculated results were compared to the experimental data of oil-water relative permeabilities measured in a Dolomite reservoir. The Corey and Brooks-Corey models show an acceptable and nearly exact match with the measured oil relative permeability values. However, the Li-Purcell and Li-Burdine models underestimate the values for welting phase in most cases. It is also worth mentioning that, except Li-Purcell method, the results of all other methods for calculating nonwetting phase relative permeability are almost the same and they are in good agreement with the measured data. Results of this work reveal that calculation of oil-water relalive permeability using the capillary pressure data is also a reliable technique in oil-wet systems.
机译:从毛细管压力数据估计相对渗透率eurves是一种众所周知的技术,并且已经深入研究了这些技术近似于液-气相对渗透率曲线的可靠性。但是,没有足够的信息来推断哪种方法是计算油水相对渗透率曲线的标准方法。作者利用Corey,Brooks-Corey,Li-Purcell和Li-Burdine等各种毛细管压力技术,利用油湿白云岩排水过程中测得的油水毛细管压力数据,计算了油水相对渗透率。水库。尽管Purcell和Burdine方法广泛用于计算相对渗透率,但作者仍使用了新的Li-Purcell和Li-Burdine方法。将计算结果与在白云岩油藏中测得的油水相对渗透率的实验数据进行了比较。 Corey和Brooks-Corey模型显示出与测得的油相对渗透率值可接受且几乎精确的匹配。但是,在大多数情况下,Li-Purcell和Li-Burdine模型低估了焊接阶段的值。还值得一提的是,除Li-Purcell方法外,其他所有用于计算非润湿相相对磁导率的方法的结果都几乎相同,并且与测量数据非常吻合。这项工作的结果表明,使用毛细压力数据计算油水相对渗透率也是在油湿系统中可靠的技术。

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