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The Influence of O2 Contamination on MMP and Core Flood Performance in Miscible and Immiscible CO2 WAG

机译:O2污染对混溶和不混溶CO2摇摆中MMP和核心洪水性能的影响

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For a given oil and reservoir temperature, the CO2 Minimum Miscibility Pressure (MMP) is largely affected by the CO2 purity. A commonly found contamination gas in CO2 EOR is O2, the existence of which will influence the MMP and thus influence the CO2 Water Alternating Gas (WAG) performance. Slim tube tests and core flood experiments are conducted in order to study the influence of O2 on the MMP and CO2 WAG performance. Both experiments utilize crude oil from South Slattery Field in Wyoming. The mole concentration of O2 in CO2 gas varies from 0 mol% to 5 and 10 mol% and the experimental temperature is set at 57 ?C to mimic the reservoir condition. In the slim tube tests, the oil recoveries at gas breakthrough are used to interpret the MMP. All core flood experiments utilize Berea sandstone cores and synthetic brines. A pressure of 20% higher than the pure CO2 MMP is used to ensure miscible condition and a pressure of 50% of the pure CO2 MMP is used for the immiscible study. WAG is injected in the tertiary recovery mode and its parameters include a WAG ratio of 1:1, a half cycle slug size of 0.1 PV, and a total slug size of 2.0 PV. WAG performance, i.e., percent oil recovery, tertiary recovery factor, and CO2 utilization factor are determined. Slim tube results show that the existence of O2 increases the CO2 MMP significantly. Five mol percent of O2 in CO2 gas increases its MMP by 20.88%, while 10 mol% of O2 increases it by 61.92%. Core flood results show that the existence of O2 in CO2 gas adversely influence the WAG performance. For miscible CO2 WAG flooding, the higher the O2 content, the lower the incremental recovery and tertiary recovery factor (TRF). The same results are also found in immiscible CO2 WAG with less significant effects. Similar studies have been mainly focused on N2 and CH4, while the influence of O2 has never been experimentally investigated. This study is essential for better understanding the influence of CO2 contamination on WAG performance, which is a major concern in CO2 EOR utilizing unpurified CO2 gas sources.
机译:对于给定的油和储层温度,CO 2最小混溶性压力(MMP)在很大程度上受到CO2纯度的影响。 CO 2 EOR中的常见污染气体是O2,其存在会影响MMP,从而影响CO2水交交配气(WAG)性能。进行修身管试验和核心洪水实验,以研究O2对MMP和CO2摇摆性能的影响。这两个实验都利用来自怀俄明州的南部荡迷领域的原油。 CO 2气体中O 2的摩尔浓度从0摩尔%至5和10mol%变化,实验温度设定为57Ω,以模仿储层状况。在纤薄管测试中,气体突破的油回收用于解释MMP。所有核心洪水实验都使用Berea Sandstone Cores和合成盐水。使用比纯CO 2 MMP高出20%的压力,以确保可混溶条件,并且50%的纯CO 2 MMP的压力用于不混溶的研究。在第三次回收模式下注射摇摆,其参数包括1:1的摇摆比为0.1pv的半循环块,总块尺寸为2.0 pv。确定摇摆性能,即石油回收率百分比,第三级回收因子和二氧化碳利用因子。 SLIM管结果表明,O2的存在显着增加了CO2MMP。 CO 2气体中的5摩尔%的O 2将其MMP增加了20.88%,而10mol%的O2将其增加61.92%。核心洪水结果表明,二氧化碳气体中的O2的存在对摇摆性能产生不利影响。对于可混溶的二氧化碳洪水,O2内容越高,增量恢复和三级回收因子(TRF)越低。同样的结果也发现在不混溶的二氧化碳效果中,效果较差。类似的研究主要集中在N2和CH4上,而O2的影响从未进行过实验研究。本研究对于更好地了解CO2污染对摇摆性能的影响至关重要,这是CO2 EOR利用未纯化的CO2气体来源的主要问题。

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