毛细管压力
卤水
毛细管作用
多孔介质
饱和(图论)
超临界流体
润湿
二氧化碳
无量纲量
地质学
矿物学
材料科学
多孔性
热力学
岩土工程
化学
复合材料
数学
组合数学
物理
有机化学
作者
Christopher H. Pentland,Rehab M. El-Maghraby,Stefan Iglauer,Martin J. Blunt
摘要
[1] We measure primary drainage capillary pressure and the relationship between initial and residual non-wetting phase saturation for a supercritical carbon dioxide (CO2)-brine system in Berea sandstone. We use the semi-permeable disk (porous-plate) coreflood method. Brine and CO2 were equilibrated prior to injection to ensure immiscible displacement. A maximum CO2 saturation of 85% was measured for an applied capillary pressure of 296 kPa. After injection of brine the CO2 saturation dropped to 35%; this is less than the maximum trapped saturation of 48% measured in an equivalent n-decane (oil)-brine experiment. The dimensionless capillary pressure is the same to within experimental error for supercritical CO2-brine, n-decane-brine and a mercury-air system. CO2 is the non-wetting phase and significant quantities can be trapped by capillary forces. We discuss the implications for CO2 storage.
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