模拟液体流过碳纳米管

Faig Bakhman Ogli Naghiyev
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引用次数: 3

摘要

本文研究了一种液体的结构及其在碳纳米管中的流动特性。文献综述和实验结果表明,纳米尺度系统的流体流动模拟应基于连续介质假设,并考虑液体在分子间距离长度尺度上的量子化特性。考虑到流动特性,可以将纳米管中液体的行为与粘塑性宾厄姆流体的流动进行类比。提出了一种基于流动流体颗粒与纳米管壁颗粒之间形成空夹层的可能性的纳米管内液体传质模型。
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Modelling Liquid Flow Through Carbon Nanotubes
In this paper, the structure of a liquid and character of its flow in carbon nanotube is investigated. A review of the literature and the results of experiments show that the simulation of fluid flow for nanoscale systems should be based on the continuum hypothesis taking into account the quantized character of the liquid in the length scale of intermolecular distances. Consideration of the flow characteristics allowed construction of the analogy of behavior of the liquid in a nanotube with a flow of a viscoplastic Bingham fluid. A model of mass transfer of liquid in a nanotube, based on the possibility of forming an empty interlayer between the moving fluid particles and the particles of the wall of the nanotube, is presented.
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