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首页> 外文期刊>International journal of materials and structural integrity >Flow behaviours and boundary slip of nitrogen-oxygen mixture confined in nanochannel
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Flow behaviours and boundary slip of nitrogen-oxygen mixture confined in nanochannel

机译:限制在纳米通道中的氮氧混合物的流动行为和边界滑移

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摘要

Molecular dynamics simulations have been carried out to study the Couette flow of nitrogen-oxygen mixture confined in parallel-plate nanochannels. The simulation results show that the shear stress linearly increases with the increase of the shear rate when the channel width is a constant, implying that the shear viscosity of the gas flow is constant in our simulations, which increases with the channel width. However, as the channel width reaches a threshold, the effect of channel width on fluid viscosity decreases gradually. The slip velocity decreases with increasing the solid-gas coupling strength and the number density of the gas molecules. Interestingly, the shear viscosity of fluid confined in the nanochannels increases with enlarging the component ratio of nitrogen. The particular issue at nanoscale is that the solid-like structure is extremely easy to form at the gas flow boundaries for the nitrogen molecules confined in the parallel-plate nanochannels.
机译:已经进行了分子动力学模拟以研究限制在平行板纳米通道中的氮气-氧气混合物的库埃特流。仿真结果表明,当通道宽度为常数时,剪切应力随着剪切速率的增加而线性增加,这表明气流的剪切粘度在我们的模拟中是恒定的,并且随着通道宽度的增加而增加。然而,随着通道宽度达到阈值,通道宽度对流体粘度的影响逐渐减小。滑移速度随着固-气耦合强度和气体分子数目密度的增加而降低。有趣的是,限制在纳米通道中的流体的剪切粘度随着氮的组分比的增加而增加。纳米级的特殊问题是,对于限制在平行板纳米通道中的氮分子,在气体流动边界处非常容易形成固态结构。

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