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首页> 外文期刊>Journal of natural gas science and engineering >Investigation of relative flow characteristics of brine-saturated reservoir formation: A numerical study of the Hawkesbury formation
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Investigation of relative flow characteristics of brine-saturated reservoir formation: A numerical study of the Hawkesbury formation

机译:盐水饱和储层形成的相对流动特性研究:鹰斯伯里形成的数值研究

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摘要

Precise knowledge of the relative flow behaviour of CO2 and brine during CO2 sequestration in deep saline aquifers and its impact on the sequestration process is required to ensure the safety and efficiency of sequestration projects. This numerical study therefore aims to identify the interaction-induced relative flow behaviour of reservoir rock and its influence on the hydro-mechanical and geochemical phenomena in deep saline aquifers. COMSOL Multiphysics numerical simulator was used to develop a laboratory scale relative flow model to simulate the CO2 movement and brine drainage processes in brine saturated Hawkesbury sandstone samples and finally, was extended it into a field-scale numerical model which can simulate the hydro-mechanical, mineralogical and geochemical behaviours of deep saline aquifers under CO2 sequestration conditions. A 2-D axisymmetric pore-elastic model was developed using the pore-elastic module available in COMSOL and Buckely-Leverett flow theory was applied to the model using pre-defined partial differential equations. The proposed laboratory-scale model was first validated using experimental permeability data conducted under triaxial drained conditions and the model was then extended to predict relative flow characteristics, such as brine and CO2 saturation and CO2 pressure distribution along the sample length under different injection pressures, including both sub- and super-critical conditions and finally, real CO2 sequestration processes.
机译:确切知识CO2和盐水在深盐含水层中的CO2和盐水中的相对流动行为及其对封存过程的影响,以确保封存项目的安全性和效率。因此,该数值研究旨在识别储层岩石的相互作用相对流动行为及其对深盐含水层中水力和地球化学现象的影响。 COMSOL MultiphySics数值模拟器用于开发实验室相对流动模型,以模拟盐水饱和鹰克斯伯里砂岩样品中的CO2运动和盐水排水过程,最后将其扩展为可以模拟水力机械的场级数值模型, CO2封存条件下深盐含水层的矿物学和地球化学行为。使用COMSOL中可用的孔弹性模块开发了2-D轴对称孔弹性模型,并使用预定偏差方程应用于模型的芯片弹性模块。首先使用在三轴排水条件下进行的实验渗透性数据进行验证,然后将模型延伸以预测相对流动特性,例如沿着不同喷射压力下的样品长度的相对流动特性,例如盐水和CO2饱和度和CO2压力分布,包括既和超临界条件都最终,真正的CO2封存过程。

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