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首页> 外文期刊>Petroleum Science and Technology >Investigation of immiscible CO2 and C-1 injection and comparison with water injection for enhanced oil recovery in naturally fractured reservoirs
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Investigation of immiscible CO2 and C-1 injection and comparison with water injection for enhanced oil recovery in naturally fractured reservoirs

机译:天然裂缝油藏中不混溶CO 2和C-1注入的研究及与注水的对比以提高采油率

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摘要

Reservoir oil and gas content tends to rise up to the surface as long as their potential energy levels are sufficient. In order to amplify this energy, either during the time when oil is uprising on its inherent energy or since after, so as to facilitate the traveling of oil to the surface, enhanced oil recovery (EOR) methods come into play. Furthermore, the increasing demand for oil from one hand, and the shrinkage of producible reserves on the other hand, have made it unavoidable to undertake EOR techniques. Built in this research was a 10-element model of reservoir fluid to simulate its behavior. Furthermore, slim tube simulation was undertaken to determine minimum miscibility pressure for various gases. Then, different scenarios of natural depletion, CO2 injection, methane injection, and water injection were simulated by ECLIPSE 300 software package with the results of different scenarios compared. The results indicated water injection to be associated with higher recovery factor.
机译:只要它们的势能水平足够,储层中的油气含量往往会上升到地表。为了放大这种能量,无论是在石油对其固有能量起义期间还是之后,为了促进石油向地表移动,增强的石油采收率(EOR)方法都开始发挥作用。此外,一方面对石油的需求增加,另一方面对可生产储量的减少,使得不可避免地要进行EOR技术。本研究建立了一个由10个元素组成的储层流体模型来模拟其行为。此外,还进行了细管模拟,以确定各种气体的最小混溶压力。然后,使用ECLIPSE 300软件包模拟了自然消耗,CO2注入,甲烷注入和注水的不同情景,并比较了不同情景的结果。结果表明注水与较高的采收率有关。

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