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Combustion in miscible displacement for high-pressure air injection

机译:高压空气喷射中混溶性位移中的燃烧

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This paper describes miscible displacement upon air injection in a porous medium saturated with oil corresponding to conditions of high-pressure air injection (HPAI). We assume that injection fluids and produced fluids are fully miscible with the oil at the prevailing high pressure. We use three pseudo-components, viz., oxygen, oil, and an inert component, which includes nitrogen, carbon dioxide, etc. To model the fingering instabilities, we follow a similar procedure as proposed by Koval (SPE J. 3(02): 145-154, 1963) and include the reaction between oxygen and oil in the Koval model. The equations are solved numerically, using a finite element software package (COMSOL). The results show that a combustion wave is formed. We study the performance at low and high viscosities and show that the reaction improves the speed and degree of recovery at later times.
机译:本文描述了在多孔介质中喷射的混溶性位移,饱和与高压空气喷射(HPAI)的条件相对应的油。我们假设注射流体和产生的流体在普遍的高压下与油完全混溶。我们使用三种伪组分,氧气,油和惰性组分,包括氮气,二氧化碳等来模拟指法不稳定性,我们遵循类似于Koval提出的类似程序(SPE J. 3(02 ):145-154,1963),包括氧气和油之间的反应。使用有限元软件包(COMSOL)来数值解决方程。结果表明形成燃烧波。我们研究低粘度和高粘度的性能,并表明反应提高了后期恢复的速度和程度。

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