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首页> 外文期刊>Neural computing & applications >Heat transfer effects on carbon nanotubes suspended nanofluid flow in a channel with non-parallel walls under the effect of velocity slip boundary condition: a numerical study
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Heat transfer effects on carbon nanotubes suspended nanofluid flow in a channel with non-parallel walls under the effect of velocity slip boundary condition: a numerical study

机译:在速度滑动边界条件的效果下,碳纳米管对碳纳米管的传热效应悬浮在具有非平行壁的通道中的纳米流体流动:数值研究

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摘要

The present article is dedicated to analyze the flow and heat transfer of carbon nanotube (CNT)-based nanofluids under the effects of velocity slip in a channel with non-parallel walls. Water is taken as a base fluid, and two forms of CNTs are used to perform the analysis, namely the single- and multi-walled carbon nanotubes (SWCNTs and MWCNTs, respectively). Both the cases of narrowing and widening channel are discussed. The equations governing the flow are obtained by using an appropriate similarity transform. Numerical solution is obtained by using a well-known algorithm called Runge-Kutta-Fehlberg method. The influence of involved parameters on dimensionless velocity and temperature profiles is displayed graphically coupled with comprehensive discussions. Also, to verify the numerical results, a comparative analysis is carried out that ensures the authenticity of the results. Variation of skin friction coefficient and the rate of heat transfer at the walls are also performed. Some already existing solutions of the particular cases of the same problem are also verified as the special cases of the solutions obtained here.
机译:本文专用于分析碳纳米管(CNT)的流动和热传递,基于速度滑移在具有非平行壁的通道中的速度滑移下的纳米流体。将水作为基础流体,并且两种形式的CNT用于进行分析,即单壁和多壁碳纳米管(SWCNTS和MWCNT)。讨论了缩小和扩大渠道的情况。通过使用适当的相似性转换获得控制流程的方程。通过使用称为Runge-Kutta-Fehlberg方法的众所周知的算法获得数值解决方案。涉及参数对无量纲速度和温度剖面的影响是用综合讨论进行图形相结合的。此外,为了验证数值结果,进行比较分析,以确保结果的真实性。还进行了皮肤摩擦系数的变化和壁的热传递速率。一些已经存在相同问题的特定情况的现有解决方案也被验证为这里获得的解决方案的特殊情况。

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