赵世宇, 李铱, 索瑞厅, 于青春. 一种用于确定饱和低渗透砂岩岩心中超临界CO2突破压力的数值方法[J]. 中国电机工程学报, 2021, 41(4): 1250-1257. DOI: 10.13334/j.0258-8013.pcsee.200943
引用本文: 赵世宇, 李铱, 索瑞厅, 于青春. 一种用于确定饱和低渗透砂岩岩心中超临界CO2突破压力的数值方法[J]. 中国电机工程学报, 2021, 41(4): 1250-1257. DOI: 10.13334/j.0258-8013.pcsee.200943
ZHAO Shiyu, LI Yi, SUO Ruiting, YU Qingchun. A Numerical Method for Determining Supercritical CO2 Breakthrough Pressure in Saturated Low-permeability Sandstone core[J]. Proceedings of the CSEE, 2021, 41(4): 1250-1257. DOI: 10.13334/j.0258-8013.pcsee.200943
Citation: ZHAO Shiyu, LI Yi, SUO Ruiting, YU Qingchun. A Numerical Method for Determining Supercritical CO2 Breakthrough Pressure in Saturated Low-permeability Sandstone core[J]. Proceedings of the CSEE, 2021, 41(4): 1250-1257. DOI: 10.13334/j.0258-8013.pcsee.200943

一种用于确定饱和低渗透砂岩岩心中超临界CO2突破压力的数值方法

A Numerical Method for Determining Supercritical CO2 Breakthrough Pressure in Saturated Low-permeability Sandstone core

  • 摘要: CO2突破压力在CO2地质储存能力、场地选择和盖层安全性评价中起着重要作用。为探究可用于预测CO2突破压力的数值模拟方法,研究通过使用COMSOL Multiphysics数值软件,提出了一种基于逐步法的数值方法,并对饱和低渗透岩心进行了CO2突破压力的数值模拟。结果表明:当岩心完全饱水时,CO2突破压力和突破时间分别5.4 MPa和70 h,通过与已有实验数据对比,证明了此模拟方法是合理的。同时,对CO2-H2O系统中的界面张力和VG模型中m/l值进行了敏感性分析,结果表明:在相同的界面张力条件下,m/l参数越大,CO2突破压力和突破时间越大。另外,随着CO2-H2O系统中界面张力的增大,突破压力和突破时间均呈减小趋势。研究可为深入研究岩心尺度上的CO2突破行为和盖层评价等提供数值信息。

     

    Abstract: CO2 breakthrough pressure plays an important role in CO2 geological storage capacity, selecting target storage sites and assessing the safety of caprock. In order to explore the numerical simulation method that can be used to predict the CO2 breakthrough pressure, a numerical method based on step-by-step method was proposed by using the numerical software of COMSOL Multiphysics, and the numerical simulation of CO2 breakthrough pressure in a saturated low-permeability rock core were carried out. The results show that when the rock core is completely saturated with water, the breakthrough pressure and breakthrough time of CO2 were 5.4 MPa and 70 h, respectively. Compared with the experimental results, it is proved that the numerical simulation is reasonable. Meanwhile, sensitivity studies on the interfacial tension in CO2-H2O systems and the key parameters of m/l values in van Genuchten (VG) model are carried out. The results show that, under the same interfacial tension, the greater the m/l parameters, the greater the CO2 breakthrough pressure and time. In addition, with the increase of interfacial tension in CO2-H2O systems, the breakthrough pressure and time both tend to decrease. This study provides numerical information for further studies on CO2 breakthrough in rock core and the evaluation of caprock.

     

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