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The Estimation of Reservoir Brine Properties During Crude Oil Production Using a Simple Predictive Tool

机译:使用简单的预测工具估算原油生产过程中的储层卤水性质

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摘要

Most oil wells eventually produce some quantity of reservoir brine (formation water) over their lifetime. Increased water production is usually indicated by a significant increase in the water to oil ratio (WOR) of the well. As the WOR of well increases, it causes costly added water handling, it reduces efficiency of the depletion mechanism, the afflicted well may be abandoned early, there can be loss of the total field overall recovery, and because reservoir brine (formation water) is corrosive its disposal becomes expensive. In this work, a simple Arrhenius type function is presented for estimation of reservoir brine (formation water) properties for temperatures above 30°C and salt contents between 5% and 25% by mass. An Arrhenius type function has been selected because it is easier than existing approaches, less complicated with fewer computations, and suitable for engineers. These expressions can then be incorporated into further calculations that require predictions of reservoir brine (formation water) properties as functions of temperature and salt content. Estimations are found to be in excellent agreement with the reliable data in the literature with average absolute deviation being around 0.09-2.6%. The tool developed in this study can be useful for the petroleum engineers to have a quick check on the reservoir brine properties at various conditions without opting for any experimental measurements. In particular, chemical and petroleum engineers would find the proposed approach to be user-friendly with transparent calculations involving no complex expressions.
机译:大多数油井在其使用寿命期间最终会产生一定数量的储层盐水(地层水)。通常通过井的水油比(WOR)的显着增加来表明增加的产水量。随着井的WOR的增加,增加了水处理的成本,降低了枯竭机理的效率,患病的井可能会提前废弃,可能会损失整个油田的整体采收率,并且因为储层盐水(地层水)腐蚀性的,其处置变得昂贵。在这项工作中,提出了一种简单的Arrhenius类型函数,用于估算温度高于30°C和盐含量在5%至25%(质量)之间的储层盐水(地层水)特性。选择了Arrhenius类型的函数是因为它比现有方法更容易,更简单,计算更少并且适合工程师。然后,可以将这些表达式合并到进一步的计算中,这些计算需要根据温度和盐含量预测储层盐水(地层水)的特性。估计与文献中的可靠数据非常吻合,平均绝对偏差约为0.09-2.6%。这项研究中开发的工具对于石油工程师在不选择任何实验测量值的情况下快速检查各种条件下的储层盐水特性可能很有用。尤其是,化学和石油工程师会发现该方法对用户友好,并且透明计算不涉及复杂的表达式。

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