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Robust simulation of sharp-interface models for fast estimation of CO2 trapping capacity in large-scale aquifer systems

机译:锐界模型的鲁棒仿真,用于快速估算大型含水层系统中的二氧化碳捕集能力

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Modeling geological carbon storage represents a new and substantial challenge for the subsurface geosciences. To increase understanding and make good engineering decisions, containment processes and large-scale storage operations must be simulated in a thousand-year perspective. Large differences in spatial and temporal scales make it prohibitively expensive to compute the fate of injected CO2 using traditional 3D simulators. Instead, accurate forecast can be computed using simplified models that are adapted to the specific setting of the bouyancy-driven migration of the light fluid phase. This paper presents a family of vertically integrated models for studying the combined large-scale and long-term effects of structural, residual, and solubility trapping of CO2. The models are based on an assumption of a sharp interface separating CO2 and brine and can provide a detailed inventory of the injected CO2 volumes over periods of thousands of years within reasonable computational time. To be compatible with simulation tools used in industry, the models are formulated in a black-oil framework. The models are implemented in MRST-co2lab, which is an open community software developed especially to study and optimize large-scale, long-term geological storage of CO2. The resulting simulators are fully implicit and handle input from standard geomodeling tools.
机译:地质碳储量建模对地下地球科学提出了新的重大挑战。为了加深了解并做出良好的工程决策,必须从一千年的角度模拟围堵过程和大规模存储操作。时空尺度的巨大差异使得使用传统的3D模拟器计算注入的二氧化碳的命运极为昂贵。取而代之的是,可以使用简化模型来计算准确的预测,该简化模型适用于轻质流体相的浮力驱动的迁移的特定设置。本文介绍了一系列垂直整合模型,用于研究CO2的结构,残留和溶解性捕集的长期和长期综合影响。这些模型基于将二氧化碳和盐水分离的尖锐界面的假设,并且可以在合理的计算时间内提供数千年期间注入的二氧化碳量的详细清单。为了与行业中使用的仿真工具兼容,模型在黑油框架中制定。这些模型在MRST-co2lab中实现,MRST-co2lab是一个开放社区软件,专门开发用于研究和优化大规模的CO2长期地质封存。生成的模拟器是完全隐式的,可以处理来自标准地理建模工具的输入。

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