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首页> 外文期刊>American Journal of Science >TWO-DIMENSIONAL REACTIVE TRANSPORT MODELING OF CO_2 INJECTION IN A SALINE AQUIFER AT THE SLEIPNER SITE, NORTH SEA
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TWO-DIMENSIONAL REACTIVE TRANSPORT MODELING OF CO_2 INJECTION IN A SALINE AQUIFER AT THE SLEIPNER SITE, NORTH SEA

机译:北海斯利普纳矿区咸水层中CO_2注入的二维反应传输模型

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This paper presents a 2D reactive transport model of long-term geological storage of carbon dioxide. A data set from the Utsira formation in Sleipner (North Sea) is utilized for geochemical simulation, while the aquifer is approximated as a 2D cylindrically symmetric system. Using the reactive transport code TOUGHREACT, a 25 year injection scenario followed by a 10,000 year storage period are simulated. Supercritical CO_2 migration, dissolution of the CO_2 in the brine, and geochemical reactions with the host rock are considered in the model. Two mineralogical assemblages are considered in the Utsira formation, a sand formation that is highly permeable and a shale formation representing four semi-permeable layers in the system that reduce the upward migration of the supercritical CO_2. The impacts of mineral dissolution and precipitation on porosity are calculated. Furthermore, the 2D cylindrical geometry of the mesh allows simulating both the upward migration of the supercritical gas bubble as well as the downward migration of the brine containing dissolved CO_2. A mass balance of the CO_2 stored in, respectively, the supercritical phase, dissolved in the aqueous phase, and sequestered in solid mineral phases (carbonate precipitation) is calculated over time. Simulations with lower residual gas saturation and with different mesh refinement are also performed to test the sensitivity on mass balance estimates.
机译:本文提出了二氧化碳长期地质储存的二维反应性运输模型。来自Sleipner(北海)Utsira地层的数据集用于地球化学模拟,而含水层被近似为2D圆柱对称系统。使用反应性运输代码TOUGHREACT,模拟了25年的注入情景以及10,000年的存储期。该模型考虑了超临界CO_2的迁移,盐水中CO_2的溶解以及与基质岩石的地球化学反应。在Utsira地层中考虑了两个矿物学组合,一个高渗透性的砂层和一个代表系统中四个半渗透层的页岩层,这些层减少了超临界CO_2的向上迁移。计算了矿物溶解和沉淀对孔隙度的影响。此外,网格的2D圆柱几何形状既可以模拟超临界气泡的向上迁移,也可以模拟包含溶解的CO_2的盐水的向下迁移。随时间计算分别存储在超临界相中,溶解在水相中和螯合在固体矿物质相(碳酸盐沉淀)中的CO_2的质量平衡。还执行了具有较低残留气体饱和度和不同网格细化的模拟,以测试质量平衡估计值的敏感性。

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