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Hybrid Carbonated Low Salinity Waterflood in Calcite-Cemented Sandstone: Effects of Low pH and Salinity on Oil Production and CO2 Storage

机译:杂交碳酸盐低盐水水在方解石砂岩中:低pH和盐度对油生产和二氧化碳储存的影响

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Hybrid carbonated low salinity waterflood (CLSWF) introduces synergetic effects of oil viscosity reduction and wettability modification. The technology injecting CO2-saturated low salinity water is a hybrid design of low salinity waterflood (LSWF) and carbonated waterflood (CWF). Coupled with geochemical reaction and equation of state (EOS) modeling, this study proposes compositional simulation of the CLSWF process. In a comparison to LSWF to quantify the synergetic effects, CLSWF introduces enhanced wettability modification effect due to geochemical reactions of ion-exchange and mineral dissolution. The low pH and salinity conditions during CLSWF dissolve significant calcite mineral to increase Ca2+ molality. It results in more cation-exchange and enhances wettability modification following LSWF mechanism. CO2 is transported from CO2-saturated low salinity water to oil during CLSWF. This interphase transport of CO2 reduces oil viscosity improving mobility ratio. As a result, additional oil production with 6% and improved injectivity are observed in CLSWF. In addition, CLSWF introduces CO2 storage effect. Despite of the interphase transport of CO2, significant CO2 is remained in water and captured in reservoir. Therefore, the novel CLSWF is shown to be a promising technology securing both enhanced oil production and CO2 storage.
机译:混合碳酸低盐度水驱(CLSWF)油粘度降低和润湿性修饰引入了协同效应。注入的CO 2饱和的低盐度水的技术是低盐度水驱(LSWF)和碳酸注水(CWF)的混合设计。加上地球化学反应和状态(EOS)建模方程,本研究提出了CLSWF过程的组分模拟。在一个比较LSWF量化协同效应,CLSWF引入了增强的可润湿性的改性效果,由于离子交换和矿物溶解的地球化学反应。 CLSWF在低pH和盐度条件溶解显著方解石矿物增加的Ca 2+质量摩尔浓度。这导致更多的阳离子交换及以下LSWF机制,提高润湿性调整。 CO 2从CO 2 - 饱和低盐度水CLSWF期间输送到油状物。这种相间CO2的运输降低油的粘度提高流动性比。其结果是,额外的油生产用6%和提高注入在CLSWF观察。此外,CLSWF介绍二氧化碳封存效果。尽管CO2的相间运输,显著二氧化碳留在水和水库捕获。因此,该新颖CLSWF被示出为有前途的技术固定既提高油产量和二氧化碳储存。

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