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Unsteady Squeezing Flow of Carbon Nanotubes with Convective Boundary Conditions

机译:具有对流边界条件的碳纳米管的非稳态挤压流动

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摘要

Unsteady flow of nanofluids squeezed between two parallel plates is discussed in the presence of viscous dissipation. Heat transfer phenomenon is disclosed via convective boundary conditions. Carbon nanotubes (single-wall and multi-wall) are used as nanoparticles which are homogeneously distributed in the base fluid (water). A system of non-linear differential equations for the flow is obtained by utilizing similarity transformations through the conservation laws. Influence of various emerging parameters on the velocity and temperature profiles are sketched graphically and discussed comprehensively. Analyses of skin fraction coefficient and Nusselt number are also elaborated numerically. It is found out that velocity is smaller for squeezing parameter in the case of multi-wall carbon nanotubes when compared with single-wall carbon nanotubes.
机译:在存在粘性耗散的情况下,讨论了在两个平行板之间挤压的纳米流体的不稳定流动。通过对流边界条件揭示了传热现象。碳纳米管(单壁和多壁)被用作均匀分布在基础流体(水)中的纳米颗粒。通过守恒律利用相似性变换获得了非线性的流动微分方程系统。图形化地描绘了各种新兴参数对速度和温度分布的影响,并进行了全面讨论。还详细阐述了皮肤分数系数和努塞尔数的分析。已经发现,与单壁碳纳米管相比,在多壁碳纳米管的情况下,挤压参数的速度较小。

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