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Low-salinity Water-alternating-CO2 Flooding Enhanced Oil Recovery: Theory and Experiments

机译:低盐度水交交流二氧化碳洪水增强型储存:理论与实验

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Carbon dioxide flooding is currently the most technically and economically viable enhanced oil recovery (EOR)process in carbonate and sandstone reservoirs.Low-salinity waterflood is a relatively new EOR process;and our experiments in carbonate cores show significant oil recovery improvements.We propose a new EOR process to improve economics,which involves low-salinity water-alternating-CO2(LS-WAG) injection. To evaluate the proposed idea,three core floods and several contact angle and IFT measurements were performed.The core floods include:seawater flood,followed by low-salinity waterflood,followed by CO2 injection,which yielded fourteen,twenty-five,and thirty-eight percent additional oil recovery by CO2 from two carbonate and one sandstone experiments. We performed contact angle measurements on several low-permeability carbonate,medium- permeability Berea sandstone,and ultra-low permeability Three Forks mudstone core discs using different salinities.The contact angle measurements confirmed that favorable wettability alteration is achievable with the proposed EOR process.In addition,visual observations suggested that the proposed EOR process could be effective for cleaning the matrix-fracture interface in conventional and unconventional reser- voirs.IFT measurments and modeling relevant to the EOR process is also included in this study.
机译:二氧化碳驱是目前最技术上和经济上可行的提高采收率碳酸盐(EOR)工艺和砂岩reservoirs.Low盐度注水是一种相对较新的EOR过程;而我们在碳酸盐核实验表明显著采油improvements.We提出新EOR工艺提高经济性,其涉及低盐度水交替-CO2(LS-WAG)注射。为评价所提出的想法,三个核心洪水和几个接触角和IFT测量是performed.The核心洪水包括:海水泛滥,其次是低矿化度水驱,其次是二氧化碳注入,取得了十四岁,25,和三十百分之八附加油采收通过CO 2从两个碳酸酯和一种砂岩实验。我们上进行接触角测量几个低渗透性碳酸盐,中期渗透性Berea砂岩,并使用不同的salinities.The接触角测量超低渗透三叉泥岩芯盘确认良好润湿性的改变是与所提出的EOR process.In实现此外,视觉观察表明,所提出的过程EOR可以有效用于清洁基质断裂界面在常规和非常规reser- voirs.IFT观测值和相关的EOR处理也包括在本研究中建模。

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