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Enhanced Wettability Modification and CO2 Solubility Effect by Carbonated Low Salinity Water Injection in Carbonate Reservoirs

机译:碳酸盐储层中碳酸低盐水注水增强润湿性改性和CO2溶解度效果

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摘要

Carbonated water injection (CWI) induces oil swelling and viscosity reduction. Another advantage of this technique is that CO2 can be stored via solubility trapping. The CO2 solubility of brine is a key factor that determines the extent of these effects. The solubility is sensitive to pressure, temperature, and salinity. The salting-out phenomenon makes low saline brine a favorable condition for solubilizing CO2 into brine, thus enabling the brine to deliver more CO2 into reservoirs. In addition, low saline water injection (LSWI) can modify wettability and enhance oil recovery in carbonate reservoirs. The high CO2 solubility potential and wettability modification effect motivate the deployment of hybrid carbonated low salinity water injection (CLSWI). Reliable evaluation should consider geochemical reactions, which determine CO2 solubility and wettability modification, in brine/oil/rock systems. In this study, CLSWI was modeled with geochemical reactions, and oil production and CO2 storage were evaluated. In core and pilot systems, CLSWI increased oil recovery by up to 9% and 15%, respectively, and CO2 storage until oil recovery by up to 24% and 45%, respectively, compared to CWI. The CLSWI also improved injectivity by up to 31% in a pilot system. This study demonstrates that CLSWI is a promising water-based hybrid EOR (enhanced oil recovery).
机译:碳酸水浸注水(CWI)诱导油溶胀和粘度降低。该技术的另一个优点是CO 2可以通过溶解性捕获存储。盐水的CO 2溶解度是确定这些效果程度的关键因素。溶解度对压力,温度和盐度敏感。盐析现象使得低盐水盐水使得将CO 2溶解到盐水中的有利条件,从而使盐水能够将更多CO 2输送到储存器中。此外,低盐水注水(LSWI)可以改变润湿性并增强碳酸盐储层中的储存。高二氧化碳溶解度潜力和润湿性改性效果促使杂交碳酸碳酸低盐度注水(CLSWI)的部署。可靠的评估应考虑在盐水/油/岩体系统中确定CO2溶解度和润湿性改性的地球化学反应。在本研究中,CLSWI与地球化学反应进行了建模,并评估油生产和二氧化碳储存。在核心和试验系统中,CLSWI分别增加了高达9%和15%的石油回收率,直至与CWI相比,进出油恢复高达24%和45%。 CLSWI在试点系统中也能将重新注射到31%。本研究表明,CLSWI是一种有前途的水性混合益智EOR(增强的采油)。

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  • 作者

    Ji Ho Lee; Kun Sang Lee;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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