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首页> 外文期刊>Applied Surface Science >Oil extraction mechanism in CO_2 flooding from rough surface: Molecular dynamics simulation
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Oil extraction mechanism in CO_2 flooding from rough surface: Molecular dynamics simulation

机译:粗糙面CO_2驱油机理:分子动力学模拟

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摘要

Through molecular dynamic simulations, the mechanism of CO2 extracting hydrocarbon in rough surface was investigated. In the present study, the entrance effect of CO2 molecules and the destruction of the miscible zone were considered as the critical factors in the extraction process. Subsequently, seven assistants were added to explore the main factors of the stability of miscible zone. The parameters of viscosity and solubility were chosen to characterize the properties of displacement agents and the dissolving capacity of CO2 was proved to be the key to improving tight oil recovery in nanopores. In addition, when the roughness of the surface was adjusted from 2.2 to 3.9, the effects of the injection pressure on residual oil were different, laying emphasis on the significance of reservoir structure for CO2 to enhance oil recovery. Moreover, our work also provided a molecular-level understanding of the CO2 extraction of hydrocarbon in rough surface, and the results had some promise for the enhancement of oil recovery in CO2 displacing engineering.
机译:通过分子动力学模拟,研究了CO2萃取粗糙表面烃的机理。在本研究中,CO2分子的进入效应和可混溶区的破坏被认为是萃取过程中的关键因素。随后,增加了七名助手来探讨混溶区稳定性的主要因素。选择粘度和溶解度参数来表征驱替剂的性能,并证明了二氧化碳的溶解能力是提高纳米孔致密油采收率的关键。此外,当将表面粗糙度从2.2调整为3.9时,注入压力对残余油的影响也有所不同,从而强调了储层结构对CO2增强采油率的重要性。此外,我们的工作还提供了在粗糙表面上从CO2提取碳氢化合物的分子水平的理解,其结果对提高CO2驱替工程的采油率具有一定的希望。

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