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在压力驱动流作用下,碳纳米管束的位移。

Dislodgement of carbon nanotube bundles under pressure driven flow.

机构信息

Department of Mathematics, Faculty of Science, Mahidol University, Rama 6 Road, Bangkok 10400, Thailand.

出版信息

Nanotechnology. 2010 Apr 16;21(15):155305. doi: 10.1088/0957-4484/21/15/155305. Epub 2010 Mar 23.

Abstract

Experimental and predicted flow rates through carbon nanotubes vary considerably but generally are reported to be well in excess of that predicted by the conventional Poiseuille flow, and therefore nanotubes embedded in a matrix might provide membranes with exceptional mass transport properties. In this paper, applied mathematical modelling is undertaken to estimate the three forces acting on a nanotube bundle, namely the molecular interaction force, the viscous force, and the static pressure force. In deducing estimates of these forces we introduce a modification of the notion of the effective dead area for a carbon nanotube membrane, and we calculate the total forces necessary to push one or more of the nanotubes out of the bundle, thus creating a channel through which further enhancement of flow may take place. However, careful analysis shows that the nett dislodgement force is entirely independent on the useable flow area, but rather depends only on the total cross-sectional area perpendicular to the flow. This rather surprising result is a consequence of the flow being steady and a balance of the viscous and pressure forces.

摘要

实验和预测的碳纳米管流量差异很大,但通常报告的流量远远超过传统泊肃叶流动预测的流量,因此嵌入基质中的纳米管可能为膜提供特殊的传质性能。在本文中,进行了应用数学建模,以估计作用在纳米管束上的三个力,即分子相互作用力、粘性力和静压力。在推导出这些力的估计值时,我们引入了对碳纳米管膜有效死区概念的修改,并计算了将一个或多个纳米管推出管束所需的总力,从而形成一个通道,进一步增强流动可能发生。然而,仔细分析表明,净排出力完全不依赖于可用的流动面积,而只取决于垂直于流动的总横截面积。这一相当出人意料的结果是由于流动是稳定的,以及粘性力和压力力的平衡。

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