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Cold CO2 Injection for Balancing Interfacial Tension Decrease and Viscosity Increase

机译:冷二氧化碳注射用于平衡界面张力降低和粘度增加

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CO2 injection has been used for decades in the petroleum industry as a successful tertiary recovery method. The main impact of CO2 on the reservoir is interfacial tension (IFT) reduction between the crude oil and CO2 which leads to better sweep. Decrease in the temperature can cause lower IFT between CO2 and hydrocarbons. Yet, lowering the temperature will cause an increase in oil viscosity which negatively affects the oil recovery. In this study, we have calculated the change in IFT and viscosities of crude oil and CO2 to examine if a low IFT optimum point does exist where a low viscosity ratio between the two fluids is observed. To obtain IFT between CO2 and crude oil, the Parachor model is used. Viscosities of the fluids are calculated using a commercial simulator. Then, simulations of CO2 injection is conducted as a tertiary recovery method to calculate the overall recovery as well as investigating the existence of the optimum point. The results show that based on the composition of the crude oil, there is an optimum temperature beyond which the IFT would not decrease as well as the viscosities are at the optimum point suitable for recovery. Therefore, it is concluded that IFT has a more important role in the ultimate recovery than the viscosity of the fluids.
机译:二氧化碳注射用来几十年来石油工业作为成功的三级回收方法。二氧化碳对储层的主要影响是原油和二氧化碳之间的界面张力(IFT),导致更好的扫描。降低温度会导致二氧化碳和烃之间的IFT较低。然而,降低温度将导致油粘度的增加,这对油回收产生负面影响。在这项研究中,我们已经计算了原油和CO2的IFT和粘度的变化,以检查是否存在低IFT最佳点,其中观察到两个流体之间的低粘度比。为了在二氧化碳和原油之间获得IFT,使用了Parachor模型。使用商业模拟器计算流体的粘度。然后,将CO 2注射的模拟作为三级回收方法进行,以计算整体恢复以及研究最佳的存在。结果表明,基于原油的组成,存在最佳温度,超过该温度超过该温度,而IFT不会降低,并且粘度是适合于恢复的最佳点。因此,它得出结论,IFT在最终恢复方面具有比流体的粘度更重要的作用。

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