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首页> 外文期刊>International Journal of Heat and Mass Transfer >Viscoelastic fluid flow over a moving vertical cone and flat plate with variable electric conductivity
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Viscoelastic fluid flow over a moving vertical cone and flat plate with variable electric conductivity

机译:粘弹性流体在具有可变电导率的移动垂直锥体和平板上流动

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摘要

A study has been carried out to analyze the effects of variable electric conductivity, non-uniform heat source/sink and higher order chemical reaction on unsteady, free convective viscoelastic (Walters liquid model-B) fluid flow over a moving vertical cone and a flat plate saturated with porous medium. The constitutive equations for the boundary layer regime are solved by an efficient finite difference scheme of the Crank-Nicolson type. The features of the fluid flow, heat and mass transfer characteristics are analyzed by plotting graphs and the physical aspects are discussed in detail to interpret the effect of various significant parameters of the problem. It is observed that the impact of variable electric conductivity with magnetic field has significant effect on the viscoelastic fluid flow through porous medium. The effect of temperature dependent heat generation is much stronger than the effect of surface dependent heat generation. The mass transfer of the reactive species strongly depends on the chemical reaction parameter as well as the order of chemical reaction. It is stronger for the first-order reaction than that for the higher order reaction.
机译:已经进行了一项研究,以分析可变电导率,不均匀的热源/吸收器和高阶化学反应对在垂直运动的垂直圆锥体和平面上的不稳定,自由对流粘弹性(Walters液体B型)流体的影响。板充满多孔介质。边界层状态的本构方程通过有效的Crank-Nicolson型有限差分方案求解。通过绘制图表来分析流体的流动,传热和传质特性,并详细讨论了物理方面,以解释问题的各个重要参数的影响。可以看出,电导率随磁场的变化对流经多孔介质的粘弹性流体的流动具有显着影响。与温度有关的热量产生的影响要比与表面有关的热量产生的影响强得多。反应性物质的传质很大程度上取决于化学反应参数以及化学反应的顺序。一阶反应比高阶反应更强。

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