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首页> 外文期刊>Results in Physics >Computational analysis of magnetohydrodynamic Sisko fluid flow over a stretching cylinder in the presence of viscous dissipation and temperature dependent thermal conductivity
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Computational analysis of magnetohydrodynamic Sisko fluid flow over a stretching cylinder in the presence of viscous dissipation and temperature dependent thermal conductivity

机译:存在粘性耗散和温度相关导热系数的情况下,磁流体动力学Sisko流体在拉伸缸上的流动分析

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Present communication presents numerical investigation of magnetohydrodynamic Sisko fluid flow over linearly stretching cylinder along with combined effects of temperature depending thermal conductivity and viscous dissipation. The arising set of flow govern equations are simplified under usual boundary layer assumptions. A set of variable similarity transforms are employed to shift the governing partial differential equations into ordinary differential equations. The solution of attained highly nonlinear simultaneous equations is computed by an efficient technique (shooting method). Numerical computations are accomplished and interesting aspects of flow velocity and temperature are visualized via graphs for different parametric conditions. A comprehensive discussion is presented to reveal the influence of flow parameters on wall shear stress and local Nusselt number via figures and tables.Furthermore, it is observed that magnetic field provides noticeable resistance to the fluid motion while both material parameter and curvature accelerates it. The progressing values of both Eckert number and thermal conductivity parameter have qualitively same effects i.e. they rise the temperature. Additionally, material parameter and curvature parameter increase the coefficient of skin friction absolutely and qualitively similar effects are noticed for Nusselt number against variations in Prandtl number and curvature parameter. On the other hand local Nusselt diminishes for larger values of Eckert number and power law index. The present results are compared with existing literature via tables, they have good covenant with previous results.
机译:本通讯介绍了线性拉伸圆柱体上的磁流体动力学Sisko流体流动的数值研究,以及取决于温度的热导率和粘性耗散的综合影响。在通常的边界层假设下,简化了流量控制方程组。一组变量相似度变换用于将控制性偏微分方程转换为常微分方程。通过一种有效的技术(射击方法)来计算获得的高度非线性联立方程的解。数值计算得以完成,并且流速和温度的有趣方面通过图表针对不同的参数条件可视化。通过图形和表格进行了全面的讨论,以揭示流动参数对壁面剪应力和局部Nusselt数的影响。此外,还观察到磁场对流体运动提供了显着的阻力,而材料参数和曲率都加速了流体运动。 Eckert数和热导率参数的递增值在质量上具有相同的效果,即它们会升高温度。另外,材料参数和曲率参数绝对增加了皮肤摩擦系数,并且对于普氏值和曲率参数的变化,对于努塞尔特数,注意到了质量上类似的效果。另一方面,对于较大的Eckert数和幂律指数,本地Nusselt会减少。通过表将当前结果与现有文献进行比较,它们与先前的结果有很好的契合。

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