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Heat transfer in a second grade fluid through a porous medium from a permeable stretching sheet with non-uniform heat source/sink

机译:二级流体通过多孔介质从具有不均匀热源/散热器的可渗透拉伸片通过多孔介质传热

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摘要

In the present article an analysis is carried out to study the boundary layer flow and heat transfer characteristics of a second grade, non-Newtonian fluid through a porous medium. The stretching sheet is assumed to be permeable so that suction effects come into play. The effects of viscous dissipation, non-uniform heat source/sink on heat transfer are addressed. The basic boundary layer equations for momentum and heat transfer, which are non-linear partial differential equations, are converted into non-linear ordinary differential equations by means of similarity transformation. Analytical solutions are obtained for the resulting boundary value problems. The effects of viscous dissipation and non-uniform heat source/sink, Prandtl number, Eckert number and suction/injection on heat transfer are shown in several plots for two different heating processes (CST and PST cases). Dimensionless surface temperature gradient is tabulated for various values of the governing the parameters.
机译:在本文中进行了分析,以研究第二级非牛顿流体通过多孔介质的边界层流动和传热特性。假定拉伸片是可渗透的,从而发挥吸力作用。解决了粘性耗散,热源/散热不均匀对传热的影响。动量和传热的基本边界层方程是非线性偏微分方程,通过相似变换转换为非线性常微分方程。对于所得的边值问题获得了解析解。对于两种不同的加热过程(CST和PST情况),在几张图中显示了粘性耗散和不均匀的热源/散热片,普兰特数,埃克特数和吸力/喷射量对传热的影响。表中列出了控制参数的各种值的无因次表面温度梯度。

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