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Core scale modelling of CO2 flowing: identifying key parameters and experiment fitting

机译:CO2流动的核心尺度建模:识别关键参数和实验拟合

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In this study, we propose to evaluate CO2-brine characteristics using core flooding experiment results with magnetic resonance (MR) imaging and a ID numerical modelling approach along with a perspective on the role of CO2-brine characteristics on storage efficiency at the reservoir scale. MRI can be used to understand the pore structure and the flow characteristic of the drainage process more directly. The relative permeability curve which is the key parameter to field scale simulation can be obtained by the experiments. ID numerical modelling is conducted to understand the results observed experimentally and the associated processes by using the parameters measured during the experiments. The modelling can explain the observed differences with the experiment through a sensitivity analysis and propose several set of parameters allowing a good match between experiments and models (history matching). It is shown that the combination method between the experiments and the modelling is a suitable method to understand the mechanism of CO2 geological storage. Moreover, the experiments can provide the validation to the modelling which is the important tool to predict the CO2 migration underground.
机译:在本研究中,我们建议使用核心泛滥实验结果评估CO2-盐水特性,通过磁共振(MR)成像和ID数模建模方法以及CO2-盐水特性在储层规模上的储存效率的角度来看。 MRI可用于了解孔结构和排水过程的流动特性。实验可以获得作为场比仿真的关键参数的相对磁导曲线。通过使用在实验期间测量的参数来了解实验观察到的数字建模以了解实验观察到的结果。建模可以通过灵敏度分析解释观察到的差异,并提出几组参数,允许实验和模型之间的良好匹配(历史匹配)。结果表明,实验与建模之间的组合方法是了解CO2地质储存机制的合适方法。此外,实验可以向建模提供验证,这是预测地下CO2迁移的重要工具。

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