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首页> 外文期刊>Petroleum Science and Technology >Integrated Investigation of Enhanced Oil Recovery in South Slattery Minnelusa Reservoir, Part 2:CO_2 Miscible Injection
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Integrated Investigation of Enhanced Oil Recovery in South Slattery Minnelusa Reservoir, Part 2:CO_2 Miscible Injection

机译:南部泥质Minnelusa水库提高采收率的综合研究,第2部分:CO_2混溶注入

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摘要

The authors used experiment and full-field reservoir modeling to investigate and optimize the design of a CO_2 miscible flooding project for the Minnelusa reservoir of the South Slattery field. Minimum miscibility pressure and core flooding tests were conducted to estimate the CO2 injection feasibility at Slattery conditions. A full-field CO2 model with finely gridded patterns was built using oil saturations and pressures at the end of history in the waterflood model. The CO2 model identified the best patterns for CO_2 flooding and was instrumental in selecting a strategy for sizing the initial flood area and in determining the size, location, and timing of future expansions of the CO_2 flood. Continuous CO_2 miscible injection (CMI) and alternating (WAG) were simulated. WAG injections were simulated mainly to observe the improvement of low sweep efficiency caused by override and unfavorable mobility ratio. The integrated recovery efficiency comparison of CMI and WAG was used to demonstrate the mobility control of the WAG process.
机译:作者使用实验和全场油藏建模研究和优化了南部Slattery油田的Minnelusa油藏的CO_2混相驱项目的设计。进行了最小混溶压力和岩心驱油测试,以评估在Slattery条件下注入二氧化碳的可行性。在注水模型的历史结束时,使用油饱和度和压力建立了具有精细网格图案的全场CO2模型。 CO2模型确定了CO_2洪水的最佳模式,并且有助于选择确定初始洪水区域的大小以及确定CO_2洪水未来扩展的大小,位置和时间的策略。模拟了连续CO_2混溶注入(CMI)和交替注入(WAG)。模拟WAG注射主要是为了观察由于超载和不利的迁移率而导致的低扫掠效率的提高。使用CMI和WAG的综合回收效率比较来演示WAG过程的流动性控制。

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