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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Molecular dynamics simulation of Couette and Poiseuille Water-Copper nanofluid flows in rough and smooth nanochannels with different roughness configurations
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Molecular dynamics simulation of Couette and Poiseuille Water-Copper nanofluid flows in rough and smooth nanochannels with different roughness configurations

机译:Courete和Poiseuille水铜纳米流体的分子动力学模拟粗粗糙化粗纳米槽流动

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摘要

In this study, molecular dynamics simulation of Couette and Poiseuille Water-Copper nanofluid flows in rough and smooth nanochannels was performed. The Lennard-Jones equation is considered as Water-Water intermolecular interaction, while Hamaker's equation is considered to be the interaction between Water-Copper and Copper-Copper particles. PPPM algorithm is used to calculate the electric potential. It is concluded that increasing the channel height reduces the effect of the surface on the fluid and reduces the flow rate of the nanofluid. Also, the slip velocities on the bottom and top walls remain almost the same. Furthermore, nanoparticles have caused fluctuations in the middle area, which are due to the effects of the surface of the nanoparticles relative to the base fluid of the Water. As expected, the presence of nanoparticles in the middle area and the interaction between the surface and the fluid in this area has caused abnormal fluctuations.
机译:在这项研究中,进行了奶油和Poiseuille水 - 铜纳米流体的分子动力学模拟粗糙和光滑纳米烷基。 Lennard-Jones方程被认为是水 - 水分子间相互作用,而哈姆拉的方程被认为是水 - 铜和铜 - 铜颗粒之间的相互作用。 PPPM算法用于计算电位。 结论是,增加通道高度降低了表面对流体上的影响,并降低了纳米流体的流速。 而且,底部和顶壁上的滑动速度仍然是几乎相同的。 此外,纳米颗粒引起中间区域的波动,这是由于纳米颗粒表面相对于水的基础流体的影响。 如预期的那样,中间区域中的纳米颗粒的存在和该区域中的表面和流体之间的相互作用导致异常波动。

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