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首页> 外文期刊>Journal of porous media >NUMERICAL SIMULATION OF COUNTERCURRENT SPONTANEOUS IMBIBITION OF CARBONATED WATER IN POROUS MEDIA
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NUMERICAL SIMULATION OF COUNTERCURRENT SPONTANEOUS IMBIBITION OF CARBONATED WATER IN POROUS MEDIA

机译:多孔介质中碳水逆流自发吸收的数值模拟

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摘要

Spontaneous imbibition is known as one of the main recovery driving forces in naturally fractured reservoirs. In this study, a numerical model to investigate the impact of carbonated water on oil recovery during spontaneous countercurrent imbibition is presented. This model includes the dynamic modification of oil viscosity, oil swelling, wettability, and interfacial tension. The results show that the injection of carbonated (CO2-enriched) water can improve water spontaneous imbibition rates as the system goes toward a more water-wet condition. The tertiary process also becomes more efficient as the remaining oil viscosity decreases. The results show that using the same relative permeability and capillary pressure data for simulation of both water and carbonated water displacements yields the system more quickly reaching the residual oil saturation in the carbonated water case, however, with the same ultimate oil recovery compared to that of the water case.
机译:自发吸收是自然裂缝储层中的主要恢复驱动力之一。在这项研究中,提出了一个数值模型,用于研究碳酸水对自发逆流吸收过程中油采收率的影响。该模型包括油粘度,油溶胀,润湿性和界面张力的动态修改。结果表明,随着系统趋向于更湿润的状态,注入碳酸水(富含CO2)可以提高水的自发吸收率。随着剩余油粘度的降低,第三过程也变得更加有效。结果表明,使用相同的相对渗透率和毛细压力数据模拟水和碳酸水的驱替量,可以使系统在碳酸水情况下更快地达到剩余油饱和度,但是与水箱。

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