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首页> 外文期刊>International Journal of Heat and Mass Transfer >Size effect on nanochannel flow explored by the flow factor approach model
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Size effect on nanochannel flow explored by the flow factor approach model

机译:流量因子方法模型探讨了纳米通道流量的尺寸效应

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摘要

The flow factor approach model (FFAM) was newly compared with molecular dynamics simulation (MDS) when simulating the Poiseuille flow in a nano slit pore where the effect of the solidified layer on the confining wall may be considerable. For direct comparisons, the MDS results were for no fluid-wall interfacial slippage under a relatively strong fluid-wall interaction; In this case, certain solidified layers may occur on both the confining walls. The comparisons show that these two approaches match well not only in the flow velocity profiles across the channel height but also in the volume flow rates through the channel. The study shows that when the total thickness of the solidified layers on the walls is comparable to the channel height, the effective channel height which is the nominal channel height minus the total thickness of the solidified layers on the walls, may need to be incorporated by FFAM for simulating a nanochannel flow; Otherwise, the effect of the solidified layer on the wall is negligible.
机译:在模拟纳米缝隙孔中的Poiseuille流动时,将流动因子方法模型(FFAM)与分子动力学模拟(MDS)进行了新的比较,其中凝固层对约束壁的影响可能很大。为了直接比较,MDS结果是在相对强的流体-壁相互作用下没有流体-壁界面滑移。在这种情况下,某些固化层可能会出现在两个限制壁上。比较结果表明,这两种方法不仅在通道高度上的流速曲线上很匹配,而且在通过通道的体积流量上也很匹配。研究表明,当壁上凝固层的总厚度与通道高度相当时,有效通道高度(即名义通道高度减去壁上凝固层的总厚度)可能需要通过合并FFAM用于模拟纳米通道流动;否则,固化层在壁上的影响可以忽略不计。

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