Phase equilibrium law of CO2 storage in depleted gas reservoirs

In the process of CO2 injection and storage of a single well in depleted gas reservoirs, the injected CO2 causes the rebalance among gas, water and solid, and the accompanying CO2 dissolution, water evaporation and salting out affect the physical properties of the formation near this well. Therefore...

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Main Author: YANG Yu,XU Qilin,LIU Ronghe,HUANG Dongjie,YAN Ping,WANG Jianmeng
Format: Article
Language:zho
Published: Editorial Department of Petroleum Reservoir Evaluation and Development 2023-06-01
Series:Youqicang pingjia yu kaifa
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Online Access:https://red.magtech.org.cn/fileup/2095-1426/PDF/1687763513315-1765805370.pdf
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author YANG Yu,XU Qilin,LIU Ronghe,HUANG Dongjie,YAN Ping,WANG Jianmeng
author_facet YANG Yu,XU Qilin,LIU Ronghe,HUANG Dongjie,YAN Ping,WANG Jianmeng
author_sort YANG Yu,XU Qilin,LIU Ronghe,HUANG Dongjie,YAN Ping,WANG Jianmeng
collection DOAJ
description In the process of CO2 injection and storage of a single well in depleted gas reservoirs, the injected CO2 causes the rebalance among gas, water and solid, and the accompanying CO2 dissolution, water evaporation and salting out affect the physical properties of the formation near this well. Therefore, taking depleted gas reservoir in western Sichuan as an example, the SRK-HV equation and salting out model are used to analyze the three-phase change rule during the CO2 injection process of the depleted gas reservoir. The researches show that during the CO2 injection process in the constant volume system, with the increase of the number of mole of CO2, the gas phase pressure increases, the CO2 solubility gradually increases, and the mole fraction of H2O in the gas phase gradually decreases, but the total number of mole of H2O in the gas phase continuously increases, indicating that the total evaporation of water increases. In addition, the water phase volume reduction caused by water evaporation is smaller than the initial water phase volume, so the increase of formation water salinity is small. The dissolution of CO2 accelerates the precipitation of CaCO3, while inhibiting the precipitation of CaSO4 and CaSO4·2H2O. In calcium chloride type formation water, CaCO3 and CaSO4 will be separated with the increase of salinity. The research results has certain reference significance for the study of water evaporation and salting out during CO2 injection in depleted gas reservoirs.
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publisher Editorial Department of Petroleum Reservoir Evaluation and Development
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spelling doaj-art-ca710086e61c45c88ac8f711a5a596bd2025-08-20T03:07:38ZzhoEditorial Department of Petroleum Reservoir Evaluation and DevelopmentYouqicang pingjia yu kaifa2095-14262023-06-0113328028710.13809/j.cnki.cn32-1825/te.2023.03.002Phase equilibrium law of CO2 storage in depleted gas reservoirsYANG Yu,XU Qilin,LIU Ronghe,HUANG Dongjie,YAN Ping,WANG Jianmeng01. College of Energy, Chengdu University of Technology, Chengdu, Sichuan 610059, China;2. CNPC Chuanqing Drilling Engineering Co., Ltd., Chengdu, Sichuan 610051, China;3. Sichuan Institute of Nonmetallic (Salt Industry) Geological Survey, Zigong, Sichuan 643021, ChinaIn the process of CO2 injection and storage of a single well in depleted gas reservoirs, the injected CO2 causes the rebalance among gas, water and solid, and the accompanying CO2 dissolution, water evaporation and salting out affect the physical properties of the formation near this well. Therefore, taking depleted gas reservoir in western Sichuan as an example, the SRK-HV equation and salting out model are used to analyze the three-phase change rule during the CO2 injection process of the depleted gas reservoir. The researches show that during the CO2 injection process in the constant volume system, with the increase of the number of mole of CO2, the gas phase pressure increases, the CO2 solubility gradually increases, and the mole fraction of H2O in the gas phase gradually decreases, but the total number of mole of H2O in the gas phase continuously increases, indicating that the total evaporation of water increases. In addition, the water phase volume reduction caused by water evaporation is smaller than the initial water phase volume, so the increase of formation water salinity is small. The dissolution of CO2 accelerates the precipitation of CaCO3, while inhibiting the precipitation of CaSO4 and CaSO4·2H2O. In calcium chloride type formation water, CaCO3 and CaSO4 will be separated with the increase of salinity. The research results has certain reference significance for the study of water evaporation and salting out during CO2 injection in depleted gas reservoirs.https://red.magtech.org.cn/fileup/2095-1426/PDF/1687763513315-1765805370.pdf|depleted gas reservoir|co2 storage|phase equilibrium|formation water evaporation|salting out
spellingShingle YANG Yu,XU Qilin,LIU Ronghe,HUANG Dongjie,YAN Ping,WANG Jianmeng
Phase equilibrium law of CO2 storage in depleted gas reservoirs
Youqicang pingjia yu kaifa
|depleted gas reservoir|co2 storage|phase equilibrium|formation water evaporation|salting out
title Phase equilibrium law of CO2 storage in depleted gas reservoirs
title_full Phase equilibrium law of CO2 storage in depleted gas reservoirs
title_fullStr Phase equilibrium law of CO2 storage in depleted gas reservoirs
title_full_unstemmed Phase equilibrium law of CO2 storage in depleted gas reservoirs
title_short Phase equilibrium law of CO2 storage in depleted gas reservoirs
title_sort phase equilibrium law of co2 storage in depleted gas reservoirs
topic |depleted gas reservoir|co2 storage|phase equilibrium|formation water evaporation|salting out
url https://red.magtech.org.cn/fileup/2095-1426/PDF/1687763513315-1765805370.pdf
work_keys_str_mv AT yangyuxuqilinliuronghehuangdongjieyanpingwangjianmeng phaseequilibriumlawofco2storageindepletedgasreservoirs