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Low salinity effect on the recovery of oil trapped by nanopores: A molecular dynamics study

机译:低盐度对被纳米孔捕集的油的回收率的影响:分子动力学研究

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摘要

Low salinity waterflooding (LSW) is an effective method for enhancing the oil recovery from many reservoirs, and its success has been traced to a host of low salinity effects. In this work, we perform molecular dynamics simulations to study the feasibility of recovering oil trapped by nanopores by lowering the reservoir salinity. The oil is initially trapped by a slit nanopore, with a portion of the oil protruding from the pore entrance. After the reservoir salinity is lowered, the thin brine films that separate the oil and pore walls become thicker to drive some of the trapped oil out of the pore. We quantify the free energy profile of this process and clarify the underlying molecular mechanisms. Interestingly, the brine film growth is dominated by the water transport from the brine reservoir into the pore rather than by the depletion of ions from the brine film. These results provide molecular evidence that low salinity brines benefit the recovery of the oil trapped by nanopores. They highlight that when ion depletion from thin brine films is suppressed, the osmosis of water can play a fundamental role in the expansion of the brine films; thus, the enhanced oil recovery. The slow osmosis of water through thin brine films and thus the slow displacement of oil from the pore may help explain the anomalously slow oil recovery reported in micro-modeling experiments of LSW.
机译:低盐度注水(LSW)是一种提高许多油藏采收率的有效方法,其成功可追溯到许多低盐度效应。在这项工作中,我们进行分子动力学模拟,以研究通过降低储层盐度来回收被纳米孔捕获的油的可行性。最初,油被狭缝的纳米孔捕集,一部分油从孔隙入口突出。降低储层盐度后,将油和孔隙壁分隔开的稀盐水膜变得更厚,从而将一些被困的油驱出孔隙。我们量化了此过程的自由能图,并阐明了潜在的分子机制。有趣的是,盐水膜的生长主要是由水从盐水储层向孔隙中的传输所主导,而不是由盐水膜中的离子消耗所致。这些结果提供了分子证据,表明低盐度盐水有利于回收被纳米孔捕获的油。他们强调指出,当抑制卤水薄膜中的离子消耗得到抑制时,水的渗透作用可以在卤水薄膜的膨胀中发挥根本作用;因此,提高了石油采收率。水通过薄盐水膜的缓慢渗透作用,从而使油从孔隙中缓慢排出,可能有助于解释LSW微观模型实验中异常缓慢的油采收率。

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