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Analysis of Microscopic Displacement Mechanisms of a MIOR Process in Porous Media with Different Wettability

机译:不同润湿性多孔介质中MIOR过程的微观位移机理分析

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摘要

The wettability of the reservoir rock has an important effect on the displacement of fluids on a microscopic scale in all EOR processes, especially in the microbial improved oil recovery (MIOR) process. This study describes the effect of wettability on microscopic two-phase flow displacement mechanisms of bacterial flooding. It enables us to get better understanding and prediction capability of macroscale flow behavior of the MIOR process. To achieve the goal, a number of visualization experiments have been carried out in glass micromodels with water wet and oil wet wettability status. Synthetic brine and model oil and an alkane oxidizing bacterium are used to explain the different behavior of microscopic displacement mechanisms in the water wet and oil wet micromodels. The results obtained in the two media are presented and compared. The observational results show the effect of wettability of porous media on remaining oil saturation and oil phase transportation. In water wet model, the oil is remained mostly as isolated drops while in oil wet model, the remaining oil is the continuous phase. The bacteria have the ability to displace the residual oil trapped in the micromodel. It is shown that the bacteria have various performances in the oil wet and water wet systems. The acting mechanisms supporting the displacement process are the interfacial tension reduction, wettability changes, and pore blocking.
机译:在所有EOR过程中,尤其是在微生物改良采油(MIOR)过程中,储层岩石的润湿性对微观尺度上的流体驱替具有重要影响。这项研究描述了润湿性对细菌驱替微观两相流驱替机制的影响。它使我们能够更好地了解和预测MIOR过程的宏观流动行为。为了达到这个目的,已经在具有水湿和油湿润湿状态的玻璃微模型中进行了许多可视化实验。用合成盐水和模型油以及烷烃氧化细菌来解释在水湿模型和油湿模型中微观驱替机制的不同行为。介绍并比较了在两种介质中获得的结果。观测结果表明,多孔介质的润湿性对剩余油饱和度和油相传输有影响。在水湿模型中,油主要以孤立液滴的形式保留,而在油湿模型中,剩余的油为连续相。细菌具有驱赶微模型中残留的残油的能力。结果表明,细菌在油湿和水湿系统中具有各种性能。支持驱替过程的作用机理是界面张力降低,润湿性变化和孔隙阻塞。

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