Boundary Layer Flow of Casson Fluid on Exponentially Stretching Porous Surface with Radiative Heat Transfer

I. Y. Seini, Golbert Aloliga, B. Ziblim, O. Makinde
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引用次数: 3

Abstract

An analysis of aCasson fluid flowing over a porous exponentially stretching surface with radiation has been studied. A non-Newtonian fluid model was developed for the flow and similarity analysis used in the transformation process. The model of partial differential equations was transformed into ordinary differential equations and reduced into a system of first order differential equations which was then solved using the Fourth-order Runge-Kutta algorithm alongside the Newton Raphson shooting method. The results have been presented graphically and in tabular form for various controlling parameters of the problem. It is observed that general control can be achieved by the permeability of the surface and the value of the Casson parameter.
卡森流体在指数拉伸多孔表面的边界层流动及辐射传热
研究了带辐射的aCasson流体在多孔指数拉伸表面上的流动。建立了一个非牛顿流体模型,用于转换过程的流动和相似分析。将偏微分方程模型转化为常微分方程,并化简为一阶微分方程组,利用四阶龙格-库塔算法和牛顿-拉夫森射击法求解。对问题的各种控制参数,用图形和表格的形式给出了结果。观察到,表面渗透率和卡森参数值可以实现一般控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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