Chemical-assisted MMP reduction on methane-oil systems:Implications for natural gas injection to enhanced oil recovery  

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作  者:Mohamed Almobarak Matthew B.Myers Colin D.Wood Yongbing Liu Ali Saeedi Quan Xie 

机构地区:[1]Discipline of Petroleum Engineering,WA School of Mines:Minerals,Energy and Chemical Engineering,Curtin University,Western Australia,Australia [2]Commonwealth Scientific and Industrial Research Organization,Kensington,6151,Australia [3]Curtin University Oil and Gas Innovation Centre Management,Kensington,6151,Australia [4]State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation,No.8 Xindu Avenue,Xindu District,Chengdu 610500,PR China

出  处:《Petroleum》2024年第1期101-108,共8页油气(英文)

基  金:supported by a joint project with Southwest Petroleum University (China)funded by Tarim Oilfield Company (PetroChina).

摘  要:technique.However,the main challenge in this process is the high minimum miscibility pressure(MMP)between natural gas and crude oil,which limits its application and recovery factor,especially in hightemperature reservoirs.Therefore,we present a novel investigation to quantify the effect of chemicalassisted MMP reduction on the oil recovery factor.Firstly,we measured the interfacial tension(IFT)of the methane-oil system in the presence of chemical or CO_(2) to calculate the MMP reduction at a constant temperature(373K)using the vanishing interfacial tension(VIT)method.Afterwards,we performed three coreflooding experiments to quantify the effect of MMP reduction on the oil recovery factor under different injection scenarios.The interfacial tension measurements show that adding a small fraction(1.5 wt%)of the tested surfactant(SOLOTERRA ME-6)achieved 9%of MMP reduction,while adding 20 wt%of CO_(2) to the methane yields 13%of MMP reduction.Then,the coreflooding results highlight the significance of achieving miscibility during gas injection,as the ultimate recovery factor increased from 65.5%under immiscible conditions to 77.2%using chemical-assisted methane,and to 79%using gas mixture after achieving near miscible condition.The results demonstrate the promising potential of the MMP reduction to signifi-cantly increase the oil recovery factor during gas injection.Furthermore,these results will likely expand the application envelop of the miscible gas injection,in addition to the environmental benefits of utilizing the produced gas by re-injection/recycling instead of flaring which contributes to reducing the greenhouse gas emissions.

关 键 词:Gas injection Enhanced oil recovery MISCIBILITY Coreflooding 

分 类 号:TE357.7[石油与天然气工程—油气田开发工程]

 

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