首页> 外文期刊>International Journal of Greenhouse Gas Control >Modelling carbon dioxide storage within closed structures in the UK Bunter Sandstone Formation.
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Modelling carbon dioxide storage within closed structures in the UK Bunter Sandstone Formation.

机译:模拟英国邦特砂岩地层封闭结构内的二氧化碳储存。

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摘要

The Bunter Sandstone Formation in the UK Southern North Sea has the potential to become an important CO2 storage unit if carbon dioxide capture and storage becomes a widely deployed option for the mitigation of greenhouse gases. A detailed geological model of a region of the Bunter Sandstone consisting of four domed structural closures was created using existing seismic, well log and core data. Compositional simulation of CO2 injection was performed to estimate the storage capacity of domes within the system. The injection was constrained by both pressure and CO2 migration criteria, and the storage efficiencies of the domes (volume of stored CO2 divided by the pore volume of the dome) were calculated when injection ceased. A sensitivity study evaluated the effect of varying the total aquifer volume, reservoir heterogeneity and injection well location. A wide range of storage efficiency values were obtained across the different simulation cases, ranging from 4% (closed dome) to 33% (homogeneous model). Intra-reservoir heterogeneity, specifically in the form of continuous low permeability layers has an important effect on storage capacity in dome-like structures, because it increases the tendency for CO2 to migrate laterally from the storage complex via structural spill points.
机译:如果二氧化碳捕获和储存成为减轻温室气体排放的广泛选择,那么英国南北海的邦特砂岩地层有可能成为重要的CO 2 储存单元。利用现有的地震,测井和岩心数据,建立了一个由四个圆顶结构封闭带组成的邦特砂岩地区的详细地质模型。进行了CO 2 注入的组成模拟,以估计穹顶在系统中的存储容量。注入受压力和CO 2 迁移标准的约束,圆顶的储存效率(储存的CO 2 的体积除以圆顶的孔体积)为在停止注射时计算。一项敏感性研究评估了改变总含水层体积,储层非均质性和注入井位置的影响。在不同的模拟情况下,获得了广泛的存储效率值,范围从4%(封闭球顶)到33%(均质模型)。储层内部非均质性,特别是连续低渗透层形式的非均质性,对穹顶状结构的储藏能力具有重要影响,因为它增加了CO 2 从储库中通过储集层横向迁移的趋势。结构性泄漏点。

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