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首页> 外文期刊>International Journal of Greenhouse Gas Control >Laboratory study of geological carbon sequestration using surrogate fluids: Dielectric measurement and scaling of capillary pressure-saturation relationships
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Laboratory study of geological carbon sequestration using surrogate fluids: Dielectric measurement and scaling of capillary pressure-saturation relationships

机译:替代流体地质固碳的实验室研究:介电测量和毛细管压力-饱和度关系的定标

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Multiphase flow models are powerful tools to understand and predict the flow and trapping of supercritical-CO2 (scCO(2)) in deep saline geologic formations. The constitutive relationship between capillary pressure (Pc) and saturation (S-w) is the essential input parameter into these multiphase models. By selecting surrogate fluids that match the density and viscosity ratios between scCO(2) and brine, the behavior of scCO(2) and brine may be reproduced under ambient conditions, making it possible to overcome the difficulty of conducting laboratory-scale experiments with scCO(2). This paper presents the P-c-S-w relationship for the surrogate fluids of scCO(2) and brine measured using the dielectric sensor method. To explore the necessity and applicability of measuring the entire P-c-S-w relationship, we compared the dielectric sensor results with those from two scaling methods: classical Leverett scaling and a novel entry pressure scaling method. Additionally, the obtained surrogate fluid P-c-S-w values were compared with experimental data of scCO(2) and brine under high pressure. The dielectric sensor method successfully obtained the P-c-S-w relationship and produced more accurate measurements of residual and irreducible saturations compared to scaling methods. (C) 2015 Elsevier Ltd. All rights reserved.
机译:多相流模型是了解和预测深盐地质构造中超临界CO2(scCO(2))的流量和捕集的强大工具。毛细压力(Pc)与饱和度(S-w)之间的本构关系是这些多相模型的基本输入参数。通过选择与scCO(2)和盐水之间的密度和粘度比匹配的替代流体,可以在环境条件下重现scCO(2)和盐水的行为,从而有可能克服用scCO进行实验室规模实验的困难(2)。本文介绍了使用电介质传感器方法测量的scCO(2)和盐水的替代流体的P-c-S-w关系。为了探索测量整个P-c-S-w关系的必要性和适用性,我们将介电传感器的结果与两种缩放方法的结果进行了比较:经典的Leverett缩放方法和新颖的入口压力缩放方法。此外,将获得的替代液P-c-S-w值与scCO(2)和盐水在高压下的实验数据进行比较。与缩放方法相比,介电传感器方法成功获得了P-c-S-w关系,并产生了更精确的残留和不可减少的饱和度测量值。 (C)2015 Elsevier Ltd.保留所有权利。

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