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Nitrogen Injection Experience to Development Gas and Gas Condensate Fields in Rocky Mountains

机译:岩石山区开发气体和天然气凝析田的氮气注射体验

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Nitrogen injection into gas condensate or volatile oil fields has been practiced as a method of pressure maintenance as well as enhanced hydrocarbon recovery in Rocky Mountains for more than two decades. Reservoir management has experienced miscible displacement in the gas cap, reservoir pressure maintenance, and reservoir blow down in different fields. In the implementation of nitrogen injection, a tremendous amount of experiences on injection and reservoir performance had been accumulated without appropriate documentation. Furthermore, even though nitrogen injection has been widely used in the world to enhance recovery by miscible displacement or maintaining reservoir pressure, literature survey shows that the experience with nitrogen injection is sporadic. This paper reviews reservoir characteristics and summarizes the lessons learned from nitrogen injection all of the world; then focuses on Rocky Mountains reservoir management to further analyze its production and surveillance, reservoir development stages in the life of fields, and the relationship between the fields and processing facility. Compositional reservoir simulation was performed to study the enhanced hydrocarbon recovery by injecting nitrogen and use nitrogen breakthrough information across the field as a continuous tracer to study the well connectivity between the injector and producer pairs. The main contributions of the paper are that it highlights the accumulated experience associated with nitrogen injection, and provides information on amenable reservoir features which can be used to select nitrogen as a viable alternative for enhanced oil recovery purpose.
机译:氮气注入气体冷凝物或挥发性油田是一种压力维护方法,以及岩石山脉的碳氢化合物恢复超过二十年。水库管理在不同领域的气体帽,水库压力维护和油藏爆发中经历了可混溶的位移。在实施氮气注射中,累积了巨大的注射和储层性能的经验,而没有适当的文件。此外,即使氮注射在世界上广泛应用于通过可混溶的排量或维持储层压力的恢复,尚能显示氮气注射的经验是散发性的。本文评论水库特征,总结了从氮气注射中吸取的教训;然后专注于落矶山区水库管理,进一步分析其田地生命中的生产和监测,水库发展阶段,以及田地与加工设施之间的关系。进行组合物储存器模拟以通过注入氮气来研究增强的烃恢复,并在整个场上使用氮气突破性信息作为连续示踪剂,以研究喷射器和生产者对之间的井连接性。本文的主要贡献是它突出了与氮气注射相关的累积经验,并提供了可用于选择氮作为增强的油回收目的的可行替代品的可编程储层特征的信息。

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