首页> 外文期刊>Thermal science >MHD FLOW AND HEAT TRANSFER FOR MAXWELL FLUID OVER AN EXPONENTIALLY STRETCHING SHEET WITH VARIABLE THERMAL CONDUCTIVITY IN POROUS MEDIUM
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MHD FLOW AND HEAT TRANSFER FOR MAXWELL FLUID OVER AN EXPONENTIALLY STRETCHING SHEET WITH VARIABLE THERMAL CONDUCTIVITY IN POROUS MEDIUM

机译:多孔介质中具有可变导热率的指数拉伸板上麦克斯韦流体的MHD流动和传热

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摘要

An analysis is made to study MHD flow and heat transfer for Maxwell fluid over an exponentially stretching sheet through a porous medium in the presence of non-uniform heat source/sink with variable thermal conductivity. The thermal conductivity is assumed to vary as a linear function of temperature. The governing partial differential equations are transformed into ordinary differential equations using similarity transformations and then solved numerically using implicit finite difference scheme known as Keller-box method. The effect of the governing parameters on the flow field, skin friction coefficient, wall temperature gradient (in prescribed surface temperature case), wall temperature (in prescribed heat flux case) and Nusselt number are computed, analyzed and discussed through graphs and tables. The present results are found to be in excellent agreement with previously published work [1,2] on various special cases of the problem.
机译:进行了分析,以研究在具有可变热导率的不均匀热源/汇存在的情况下,麦克斯韦流体在指数拉伸片材上通过多孔介质的MHD流动和传热。假设热导率随温度线性变化。控制的偏微分方程通过相似变换转换为常微分方程,然后使用称为Keller-box方法的隐式有限差分方案进行数值求解。通过图形和表格计算,分析和讨论了控制参数对流场,蒙皮摩擦系数,壁温梯度(在规定的表面温度情况下),壁温(在规定的热通量情况下)和努塞尔数的影响。发现目前的结果与先前发表的关于该问题的各种特殊情况的著作[1,2]完全一致。

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