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Study of CO2 Effect on Asphaltene Precipitation and Compositional Simulation of Asphaltenic Oil Reservoir

机译:二氧化碳对沥青质沉淀及沥青质储层组成模拟研究的研究

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At pressures greater than the minimum miscibility pressure (MMP), oil and CO2 are mutually soluble. The dissolved CO2 reduces the viscosity of the oil and causes swelling of the oil phase, hence improving its ability to flow through the reservoir rock. As a mean of reducing emission CO2 is injected into mature reservoir for both sequestration and EOR. In cases where asphaltene is present both processes are affected. The study here addresses asphaltene precipitation due to pressure, temperature and composition changes during CO2 injection into of asphaltenic oil reservoirs. It is, therefore imperative to identify stability conditions of the asphaltene. A simple model approach has been developed in this work to determine the asphaltene stability envelope associated with CO2 injection. The model approach is based on Flory-Huggins polymer-solution theory and Hildebrand solubility concept. The model approach is verified by literature data from different crude oil compositions. In addition a simulation work, by compositional simulator, is done to map the asphaltene deposition within a reservoir, which that confirmed our previous study where it is demonstrated the dependence of asphaltene precipitation on the magnitude of the pressure drop within the production area of the reservoir.
机译:在大于最小混溶性压力(MMP)的压力下,油和CO2相互溶解。溶解的二氧化碳降低了油的粘度并导致油相的肿胀,从而提高其流过水库岩石的能力。作为减少发射CO2的平均值被注入成熟储存器以进行螯合和EOR。在存在沥青质的情况下,这两个过程都受到影响。这里的研究通过CO 2注入沥青质油藏的压力,温度和组成变化来解决沥青质沉淀。因此,必须识别沥青质的稳定性条件。在这项工作中开发了一种简单的模型方法,以确定与CO2注射相关的沥青甾烯稳定性包络。模型方法基于麦子 - Huggins聚合物 - 解决方案理论和希尔德里德溶解度概念。通过来自不同原油组合物的文献数据验证模型方法。此外,通过组合模拟器的模拟工作是为了将储层内的沥青质沉积映射,这证实了我们以前的研究,其中证明了沥青质沉淀的依赖性对水库生产面积内的压降大小的依赖性。

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