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Influence of confinement effect on recovery mechanisms of CO_2-enhanced tight-oil recovery process considering critical properties shift, capillarity and adsorption

机译:监禁对考虑关键特性换档,毛细血管性和吸附性的CO_2增强紧质储质过程恢复机制的影响

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The primary focus of this study is to develop an understanding of the role of confinement effect during CO2 injection by proposing a new phase equilibrium calculation model, which also accounts for critical properties shift, capillarity and adsorption behavior. An iterative algorithm based on updating of the compositions of components in the bulk phases has been developed to calculate phase equilibrium properties. This new and improved model has been validated by experiment results. Results show that the adsorption behavior would increase the interfacial tension and capillary pressure, and the state of phase equilibrium is greatly affected by pore size. Using findings from our model, relationships between the confinement effect and important recovery mechanisms in CO2 injection, such as, extraction of light hydrocarbons, minimum miscible pressure with oil, diffusivity and mass transfer, oil solubility and viscosity reduction have been investigated. We note that the confinement effect contributes to a decrease in CO2 extraction capability of lighter hydrocarbons, and, to a lower minimum miscible pressure with the oil. On the other hand, the confinement effect could cause an increase in the CO2 diffusion coefficient in the liquid phase with a reduction in the pore size. The mass transfer seems to be enhanced with confinement effect. The CO2 solubility in tigth oil increases and the viscosity of dissolved oil phase could be higher. In general, the confinement effect appears to have a positive impact on the recovery mechanisms of CO2 injection in tight reservoirs.
机译:本研究的主要焦点是通过提出新的相平衡计算模型,制定对CO2注射期间限制效应的作用的理解,这也考虑了关键特性换档,毛细血管性和吸附行为。已经开发了一种基于批量阶段组分组合物的迭代算法,以计算相平衡性能。通过实验结果验证了这种新的和改进的模型。结果表明,吸附行为会增加界面张力和毛细血管压力,并且相平衡的状态受孔径的大大影响。研究了我们的模型中的结果,研究了CO2注射中的禁闭效果和重要回收机制之间的关系,例如,提取光烃,具有油的最小混溶性压力,扩散和传质,油溶性和粘度减少。我们注意到,限制效果有助于降低较轻烃的二氧化碳提取能力,以及与油的最小混溶性压力较低。另一方面,限制效果可能导致液相中的CO2扩散系数增加,以减少孔径。传质似乎通过限制效果来增强。 T节的CO 2溶解度增加,溶解的油相的粘度可能更高。通常,监禁效果似乎对紧密水库中的CO2注射的恢复机制具有积极影响。

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