首页> 外文期刊>Arabian Journal for Science and Engineering >Framing the Cattaneo–Christov Heat Flux Phenomena on CNT- Based Maxwell Nanofluid Along Stretching Sheet with Multiple Slips
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Framing the Cattaneo–Christov Heat Flux Phenomena on CNT- Based Maxwell Nanofluid Along Stretching Sheet with Multiple Slips

机译:基于CNT的Maxwell纳米流体沿着多张拉伸片拉伸Cattaneo–Christov热通量现象

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摘要

A theoretical model on carbon nanotube-based upper convective Maxwell nanofluid flow with thermal and velocity slip boundary conditions is thoroughly presented here. To formulate the viscoelastic relaxation framework on boundary layer flow uniquely, Cattaneo-Christov heat flux model is employed in the momentum equation. The dominating equations and boundary conditions are turned into system of ordinary boundary value problem by using proper transformations, and hence, the similarity solutions are gained numerically by applying Runge-Kutta fourth-order method with shooting practice. The impacts of the governing parameters upon the flow and temperature are represented in tabular as well as in graphical form and discussed in detail. The findings elucidate that both the velocity and temperature are inverse functions of thermal relaxation time for single-walled and multi-walled carbon nanotube-based nanofluids. Fluid relaxation parameter is positively correlated with skin friction and rate of heat transport for both types of nanofluids, but the temperature slip makes a contrary with the same.
机译:在此详尽地提出了基于碳纳米管的基于对流麦克斯韦纳米流体的热和速度滑移边界条件的理论模型。为了在边界层流上唯一地建立粘弹性松弛框架,动量方程采用了Cattaneo-Christov热通量模型。通过适当的变换将支配方程和边界条件转化为普通边值问题的系统,因此,通过在射击实践中应用Runge-Kutta四阶方法在数值上获得了相似解。表格和图形形式表示控制参数对流量和温度的影响,并进行了详细讨论。该发现阐明了对于单壁和多壁碳纳米管基纳米流体,速度和温度都是热弛豫时间的反函数。对于两种类型的纳米流体,流体弛豫参数与皮肤摩擦力和热传递速率成正相关,但是温度滑移与此相反。

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