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A Mechanistic Pore-Scale Analysis of the Low-Salinity Effect in Heterogeneously Wetted Porous Media

机译:异质湿润多孔介质中低盐度效应的机械孔隙率分析

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Low-salinity (LS) waterflooding has been a topic of substantial recent interest in the petroleum industry. Studies have shown that LS brine injection can increase oil production relative to high-salinity (HS) brine injection, but contradictory results have also been reported and a mechanistic explanation of these findings remains elusive. We have recently developed a pore-scale model of LS brine injection in uniformly wetted networks (Watson et al. in Transp Porous Med 118:201-223, 2017), and we extend this approach here to investigate the low-salinity effect (LSE) inheterogeneouslywetted media. We couple a steady-state fluid displacement model to an innovative tracer algorithm and track the evolving salinity front as oil and HS brine are displaced from the network. The wettability of the pore structure is locally modified where water salinity falls below a critical threshold, and simulations show that this can have significant consequences for oil recovery. Our results demonstrate that, for heterogeneously wetted networks, the oil-wet (OW) pores are the only viable source of incremental oil by LS brine injection. Moreover, we show that a LS-induced increase in the displaced OW pore fraction is a necessary, but not sufficient, condition to guarantee additional oil production. Simulations further suggest that the initial OW pore fraction, the average network connectivity and the initial HS brine saturation are factors that can determine the extent of incremental oil recovery following LS brine injection. This study clearly highlights that the mechanisms of the LSE can be markedly different in uniformly wetted and in non-uniformly wetted porous media.
机译:低盐度(LS)浇水是在石油工业近期兴趣的主题。研究表明,LS盐水注射可以增加相对于高盐度(HS)盐水注射的石油,但也涉及矛盾的结果,这些发现的机制解释仍然难以捉摸。我们最近在均匀湿润的网络中开发了LS盐水注入的孔径模型(Watson等人。在Transp Propo Med 118:2017中),我们在此处扩展了这种方法来研究低盐度效应(LSE )有侵入式润肤的媒体。我们将稳态流体位移模型与创新的示踪算法耦合,并随着来自网络移位的油和HS盐水,跟踪进化的盐度前面。孔隙结构的润湿性在本地改性,水盐度低于临界阈值,并且模拟表明这可能对储存产生重大后果。我们的结果表明,对于异构润湿网络,油湿(OW)孔隙是LS盐水注入的唯一可行性油源。此外,我们表明LS诱导的流离失所者孔径分数的增加是一种必要但不足的条件,以保证额外的石油生产。模拟进一步表明初始孔隙率,平均网络连接和初始HS盐水饱和度是可以确定LS盐水注入后的增量油回收程度的因素。本研究清楚地突出显示LSE的机制可以在均匀湿润和非均匀湿润的多孔介质中显着不同。

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