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Simulation of Residual oil Saturation in Near-miscible gas Flooding Through Saturation-dependent Tuning of the Equilibrium Constants

机译:通过饱和依赖性调谐静脉依赖性调整近易氧气体泛滥近可混溶性气体饱和度的模拟

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Conventional miscible or near-miscible gas flooding simulation often overestimates oil recovery,mostly because it does not capture a series of physical effects tending to limit interphase compositional exchanges.Those can be for instance microscopic bypassing of oil situated in dead-end pores or blocked by water films,as well as macroscopic bypassing due to sub-grid size heterogeneities or fingering. We here present a new engineering solution to this problem in the near-miscible case,relying on our in-house research reservoir simulator(IHRRS).The principle is,while using a black-oil or an equation of state description,to dynamically decrease the K-value of heavy components and possibly increase the K-value of light components as the oil saturation reaches the desired residual limit;this enables changing the phase boundaries when needed while preserving the original fluid behavior during the initial production stages. The benefits of the proposed method are demonstrated on a reservoir conditions tertiary gas injection experiment,performed in our laboratories,for which residual saturations as well as oil phase and individual components production rate have easily and successfully been history matched.Results are then compared to matches obtained using saturation exclusion and-factors methods.As a proof of concept, suitability of the method to simulate incomplete revaporization of condensate during gas cycling is also illustrated,on the third SPE comparative solution project case.
机译:传统的混或接近混溶的气驱模拟往往高估采油,主要是因为它没有攻克了一系列的趋于极限相间组成exchanges.Those物理效应可以是位于死胡同油实例微观旁路孔或阻断水薄膜,以及宏观旁路由于分格大小异质性或指法。在这里,我们提出了一种新的工程解决了这个问题,在不久的混溶的情况下,依靠我们的内部研究油藏模拟器(IHRRS)。该原则是,在使用黑油或状态描述的方程,动态下降需要时这使得改变相边界而在初始生产阶段保留原始流体行为;重质组分的K值,并可能增加轻组分的K值作为油饱和度达到所希望的残余限制。所提出的方法的好处是表明在油藏条件第三气体注入实验中,在我们的实验室进行,其残余饱和度以及油相和各个部件的生产速度很容易地并成功地得到历史matched.Results进行比较,以匹配使用饱和排斥获得和因子methods.As概念证明,以模拟气体循环期间冷凝的不完全再蒸发的方法的适宜性也所示,在所述第三比较SPE溶液项目的情况。

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