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首页> 外文期刊>Journal of natural gas science and engineering >Mobility ratio, relative permeability and sweep efficiency of supercritical CO2 and methane injection to enhance natural gas and condensate recovery: Coreflooding experimentation
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Mobility ratio, relative permeability and sweep efficiency of supercritical CO2 and methane injection to enhance natural gas and condensate recovery: Coreflooding experimentation

机译:超临界注入二氧化碳和甲烷以提高天然气和凝析油回收率的渗透率,相对渗透率和吹扫效率:岩心驱替实验

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摘要

Enhanced natural gas and condensate recovery has more recently stimulated an immense popular interest in oil exploration and production. While numerous laboratory and computational studies of carbon dioxide (CO2) injection into conventional oil reservoirs have been reported in the open literature, scarce work is being disclosed on CO2 displacement characteristics with both natural gas and liquid condensate where the displacement mechanisms are well-known to be significantly different to those in conventional gas/oil systems. This paper quantitatively investigates the recovery efficiency, pattern behavior and relative permeability of: (1) condensate following supercritical carbon dioxide (SCCO2) injection, methane injection and the injection of their mixtures; and (2) natural gas of various compositions following pure SCCO2 injection. This investigation includes two sets of coreflooding experiments: the first is to observe the microscale displacement efficiency and stability of natural gas following pure SCCO2 injection while the second was conducted to study the percentage of condensate recovery following the injection of different SCCCh-methane concentrations. This work is part of an integrated enhanced natural gas and condensate recovery project conducted for a local reservoir in Western Australia. This data will help the operators develop operational and design strategies for their current and future EOR projects, as well as provide parameters for full-field simulation practices.
机译:最近,天然气和凝析油回收的提高激发了人们对石油勘探和生产的巨大兴趣。尽管公开文献中已经报道了许多向常规油藏注入二氧化碳(CO2)的实验室和计算研究,但有关天然气和液态凝析油的CO2驱替特性的稀少工作被公开,而驱替机理是众所周知的。与传统的天然气/石油系统大不相同。本文定量研究了以下物质的回收效率,模式行为和相对渗透率:(1)超临界二氧化碳(SCCO2)注入,甲烷注入及其混合物注入后的凝析油; (2)纯SCCO 2注入后各种组成的天然气。这项研究包括两套岩心驱替实验:第一套是观察纯SCCO2注入后天然气的微观位移效率和稳定性,第二套是研究注入不同SCCCh-甲烷浓度后的凝析油回收率。这项工作是针对西澳大利亚当地储层进行的综合天然气和凝析油回收综合项目的一部分。这些数据将帮助运营商为其当前和未来的EOR项目制定运营和设计策略,并为全场模拟实践提供参数。

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