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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Numerical treatment for flow and heat transfer of Powell-Eyring fluid over an exponential stretching sheet with variable thermal conductivity
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Numerical treatment for flow and heat transfer of Powell-Eyring fluid over an exponential stretching sheet with variable thermal conductivity

机译:导热系数可变的指数拉伸片上鲍威尔环流体流动和传热的数值处理

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摘要

This article is devoted to describe the boundary layer flow and heat transfer for non-Newtonian Powell-Eyring fluid over an exponentially stretching continuous impermeable surface with an exponential temperature distribution taking into account variable thermal conductivity. The fluid thermal conductivity is assumed to vary as a linear function of temperature. The governing partial differential equations are transformed into a set of coupled non-linear ordinary differential equations and then solved with numerical technique using appropriate boundary conditions for various physical parameters. The numerical solution for the governing non-linear boundary value problem is based on applying Chebyshev spectral method over the entire range of physical parameters. The effects of governing parameters like the thermal conductivity parameter and the Prandtl number on the flow and temperature profiles as well as on the local skin-friction coefficient and the local Nusselt number are computed and discussed through graphs and tables. In this work, a special attention is given to investigate the effect of the variable thermal conductivity parameter on the temperature field above the stretching sheet.
机译:本文专门介绍非牛顿Powell-Eyring流体在指数伸展的连续不透水表面上的边界层流动和传热,并考虑了可变的导热系数,并具有指数温度分布。假定流体的热导率随温度的线性函数而变化。支配的偏微分方程被转换为一组耦合的非线性常微分方程,然后使用数值技术对各种物理参数使用适当的边界条件进行求解。控制非线性边界值问题的数值解法是基于在整个物理参数范围内应用切比雪夫谱方法。通过图形和表格计算并讨论了控制参数(如热导率参数和Prandtl数)对流量和温度曲线以及对局部皮肤摩擦系数和局部Nusselt数的影响。在这项工作中,要特别注意研究可变导热系数参数对拉伸片上方温度场的影响。

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