变流体性质和磁场对非定常拉伸片上非牛顿流体膜在多孔介质中流动的影响

N. S. Elgazery, M. Hassan
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引用次数: 20

摘要

分析了变粘度、变热扩散率和磁场对非牛顿流体层流液膜在水平拉伸薄板上通过多孔介质的流动和传热的影响。利用相似变换,将随时间变化的边界层动量和热能控制方程简化为一组耦合的非线性常微分方程。利用切比雪夫伪谱法对参数的一些代表性值进行了数值求解。数值结果表明,变粘度、变热扩散系数、双粘度模型的视粘度上限、非定常参数、磁性参数和渗透率参数对速度和温度分布、剪切应力和努塞尔数有显著影响。结果表明,非定常参数S、变粘度参数β1、表观粘度上限β和磁性参数M的存在和增大导致液膜厚度η∞减小。当膜厚趋于零时,S接近临界值;那么,这个问题就没有可用的解决方案了。速度曲线支持这个结果,因为接近这个临界值时,流体的速度消失了。版权所有©2008 John Wiley & Sons, Ltd
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effects of variable fluid properties and magnetic field on the flow of non‐Newtonian fluid film on an unsteady stretching sheet through a porous medium
The effects of variable viscosity, variable thermal diffusivity and magnetic field on the flow and heat transfer in a laminar liquid film of non-Newtonian fluid on a horizontal stretching sheet through a porous medium are analyzed. Using a similarity transformation, the governing time-dependent boundary-layer equations for momentum and thermal energy are reduced to a set of coupled nonlinear ordinary differential equations. The resulting seven-parameter problem is solved numerically by using Chebyshev pseudospectral method for some representative value of the parameters. The numerical results show that variable viscosity, variable thermal diffusivity, the upper limit of apparent viscosity according to biviscosity model, the unsteadiness parameter, the magnetic parameter, and the permeability parameter have significant influences on the velocity and temperature profiles, shear stress, and Nusselt number. It is observed that the presence as well as the increase in the unsteadiness parameter S, variable viscosity parameter β1, the upper limit of apparent viscosity β, and the magnetic parameter M lead to decrease in the fluid film thickness η∞. Also, as film thickness approaches zero as S comes close to the critical value; then, there is no available solution for the problem. The velocity profiles supported this result, since close to this critical value the velocity of the fluid vanishes. Copyright © 2008 John Wiley & Sons, Ltd.
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