首页> 外文期刊>Journal of Petroleum Science & Engineering >Migration of oil/methane mixture in shale inorganic nano-pore throat: A molecular dynamics simulation study
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Migration of oil/methane mixture in shale inorganic nano-pore throat: A molecular dynamics simulation study

机译:油/甲烷混合物在页岩无机纳米孔喉部迁移:分子动力学模拟研究

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摘要

In shale reservoirs, crude oil always involves a varying percentage of methane gas that may greatly affect the properties and the migration behavior of crude oil. In this work, to evaluate the effect of methane gas and to clarify the molecular mechanisms, the migration of oil/gas mixture in shale channels was characterized using molecular dynamics (MD) simulations. Specifically, the transport of oil with different methane fractions in a shale inorganic nano-pore throat was simulated. With analyzing the force that the oil undergoes when going across the nano-pore, the oil dynamic transport feature for different methane fractions was clarified. Then, the interfacial tension, the diffusion coefficient, and the interaction energy were calculated to give insights into the methane effects on oil transport. In addition, other oil-associated gases (ethane and propane) and the effect of temperature were studied and discussed. This work expands our knowledge of the oil and gas transport in nanopore throat at the molecular level, and it is expected to facilitate future studies on the migration of fluids through space-confined channels.
机译:在页岩储层中,原油总是涉及不同百分比的甲烷气体,可能会影响原油的性质和迁移行为。在这项工作中,为了评估甲烷气体的效果并阐明分子机制,使用分子动力学(MD)模拟表征油/气体混合物在页岩通道中的迁移。具体地,模拟了在岩石无机纳米孔喉部中具有不同甲烷级分的油的运输。随着分析油在纳米孔穿过纳米孔时的力,澄清了不同甲烷级分的油动态输送特征。然后,计算界面张力,扩散系数和相互作用能量,以对油运输的甲烷作用进行见解。此外,研究并讨论了其他油相关气体(乙烷和丙烷)和温度的影响。这项工作扩展了我们在分子水平的纳米孔喉部中的石油和天然气运输知识,预计将促进通过空间限制通道迁移流体的未来研究。

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