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CO _2 migration in saline aquifers. Part 2. Capillary and solubility trapping

机译:在盐水层中CO _2迁移。第2部分。毛细管和溶解度捕获

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摘要

The large-scale injection of carbon dioxide (CO _2) into saline aquifers is a promising tool for reducing atmospheric CO _2 emissions to mitigate climate change. An accurate assessment of the post-injection migration and trapping of the buoyant plume of CO _2 is essential for estimates of storage capacity and security, but these physical processes are not fully understood. In Part 1 of this series, we presented a complete solution to a theoretical model for the migration and capillary trapping of a plume of CO _2 in a confined, sloping aquifer with a natural groundwater through-flow. Here, we incorporate solubility trapping, where CO _2 from the buoyant plume dissolves into the ambient brine via convective mixing. We develop semi-analytical solutions to the model in two limiting cases: when the water beneath the plume saturates with dissolved CO _2 very slowly or very quickly (instantaneously) relative to plume motion. We show that solubility trapping can greatly slow the speed at which the plume advances, and we derive an explicit analytical expression for the position of the nose of the plume as a function of time. We then study the competition between capillary and solubility trapping, and the impact of solubility trapping on the storage efficiency, a macroscopic measure of plume migration. We show that solubility trapping can increase the storage efficiency by several-fold, even when the fraction of CO _2 trapped by solubility trapping is small.
机译:向盐水层中大量注入二氧化碳(CO _2)是减少大气CO _2排放以缓解气候变化的有前途的工具。注入后迁移和捕集CO_2浮羽的准确评估对于估计存储容量和安全性至关重要,但是这些物理过程尚未完全了解。在本系列的第1部分中,我们提供了一个理论模型的完整解决方案,用于在自然地下水流通的密闭倾斜含水层中迁移和毛细捕集CO _2羽流。在这里,我们引入了溶解度捕集,其中来自浮羽的CO _2通过对流混合溶解到周围的盐水中。我们在两种极限情况下为模型开发半解析解:当羽流下方的水相对于羽流运动非常缓慢或非常快(即刻)饱和时,溶解的CO _2会饱和。我们表明溶解度捕获可以大大减慢羽流前进的速度,并且我们得出了羽流鼻部位置随时间变化的明确分析表达式。然后,我们研究毛细管和溶解度捕获之间的竞争,以及溶解度捕获对存储效率(羽流迁移的宏观度量)的影响。我们表明,即使当溶解度捕集捕获的CO _2比例很小时,溶解度捕集也可以使存储效率提高数倍。

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