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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Confinement effects on liquid oxygen flows in carbon nanotubes: A MD simulation study
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Confinement effects on liquid oxygen flows in carbon nanotubes: A MD simulation study

机译:APS-APS流体动力学分部第70届年会-事件-限制对碳纳米管中液氧流动的影响:MD模拟研究

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Molecular dynamics simulations are performed to investigate the liquid flow mechanism of diatomic molecules in armchair carbon nanotubes (CNTs). Oxygen molecules are considered as the fluid inside armchair (n,n) (n=6-20) CNTs at a temperature of 133[K] and a bulk density of 1680[kg$/$m$^3$] for the liquid state. The velocity profiles and slip lengths are discussed considering the radial distributions of the fluid density by the finite difference-based velocity fitting method. It is shown that as the diameter of the CNT increases, the slip length and the flow rate enhancement generally become smaller while irregular tendencies (discontinuity points) are observed in the distribution profiles. Between the (7,7) and (8,8) CNTs, a steep drop can be seen in the profiles. Between the (9,9) and (11,11) CNTs, and between the (12,12) and (14,14) CNTs transitional profiles are observed. It is confirmed that those phenomena are caused by an instability of the fluid molecule cluster due to the discontinuous confinement of the CNTs.
机译:进行分子动力学模拟以研究扶手椅碳纳米管(CNTs)中双原子分子的液体流动机理。氧分子被认为是扶手椅(n,n)(n = 6-20)CNT内部的流体,温度为133 [K],堆积密度为1680 [kg $ / $ m $ ^ 3 $]州。通过基于有限差分的速度拟合方法,考虑了流体密度的径向分布,讨论了速度分布和滑移长度。结果表明,随着CNT直径的增加,滑移长度和流速的增加通常会变小,而在分布曲线中会观察到不规则的趋势(不连续点)。在(7,7)和(8,8)CNT之间,可以看到轮廓急剧下降。在(9,9)和(11,11)CNT之间以及在(12,12)和(14,14)CNT之间观察到过渡曲线。可以确认,这些现象是由于CNT的不连续封闭引起的流体分子簇的不稳定性引起的。

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