首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >MHD Slip Flow of CNT-Ethylene Glycol Nanofluid due to a Stretchable Rotating Disk with Cattaneo-Christov Heat Flux Model
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MHD Slip Flow of CNT-Ethylene Glycol Nanofluid due to a Stretchable Rotating Disk with Cattaneo-Christov Heat Flux Model

机译:基于Cattaneo-Christov热通量模型的可拉伸旋转盘对CNT-乙二醇纳米流体的MHD滑移流

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摘要

This article deals with carbon nanoliquid flow due to stretchable rotating disk with the effect of Cattaneo-Christov heat flux model. Both SWCNTs and MWCNTs are considered with ethylene glycol as the base fluid. The effects of nanoparticle volume friction, normally applied magnetic field, stretching factor, velocity, and thermal slip factors are examined. The fundamental flow governing equations are transformed into dimensionless system of coupled nonlinear ordinary differential equations, and they are solved numerically using spectral quasi-linearization method (SQLM). Employing graphs and tables, the results of velocity and temperature fields as well as skin friction coefficient and local heat transfer rate are analyzed and presented via embedded parameters. The results reveal that higher velocity fields and lower temperature fields are noticed in the MWCNT nanofluids than SWCNT nanofluids. The higher incidence of magnetic field improves the thermal boundary layer thickness. A growth in velocity slip factor reduces the momentum boundary layer thickness of the nanoliquid flow. Generally, radial stretching of the disk is helpful in improving the cooling process of the rotating disk in practical applications.
机译:本文利用Cattaneo-Christov热通量模型研究了可拉伸转盘引起的碳纳米液体流动问题.单壁碳纳米管和多壁碳纳米管都以乙二醇为基础流体。研究了纳米颗粒体积摩擦、正常施加的磁场、拉伸因子、速度和热滑移因子的影响。将控制方程的基本流转化为耦合非线性常微分方程的无量纲组,并采用谱准线性化方法(SQLM)进行数值求解。采用图形和表格,通过嵌入参数分析并呈现速度场和温度场以及皮肤摩擦系数和局部传热速率的结果。结果表明,与单壁碳纳米管纳米流体相比,MWCNT纳米流体中观察到更高的速度场和更低的温度场。磁场的入射越高,热边界层的厚度就越大。速度滑移因子的增加会减小纳米液体流动的动量边界层厚度。一般来说,在实际应用中,圆盘的径向拉伸有助于改善旋转圆盘的冷却过程。

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