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首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >Transient analysis of radiative hydromagnetic poiseuille fluid flow of two-step exothermic chemical reaction through a porous channel with convective cooling
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Transient analysis of radiative hydromagnetic poiseuille fluid flow of two-step exothermic chemical reaction through a porous channel with convective cooling

机译:具有对流冷却的多孔通道通过多孔通道辐射氢细胞流体流体流体流动的瞬态分析

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摘要

In this research, the transient analysis of radiative combustible viscous chemical reactive two-step exothermic fluid flow past a permeable medium with various kinetics i.e Bimolecular, Arrhenius and Sensitized are investigated. The hydromagnetic liquid is influenced by a periodic vicissitudes in the axial pressure gradient and time along the channel axis in the occurrence of walls asymmetric convective cooling. The convectional heat transport at the wall surfaces with the neighboring space takes after the cooling law. The non-dimensional principal flow equations are computationally solved by applying convergent and absolutely stable semi-implicit finite difference techniques. The influences of the fluid terms associated with the momentum and energy equations are graphically presented and discussed quantitatively. The results show that the reaction parameter ( ) is very sensitive and it is therefore needs to be carefully monitor to avoid systems blow up. Also, a rise in the values of the second step term enhances the combustion rate and thereby reduces the release of unburned hydrocarbon that polluted the environment.
机译:在该研究中,研究了辐射可燃粘性化学反应性两步放热流体流过渗透性介质的瞬态分析,具有各种动力学的渗透性介质。对散氏,Arhenius和致敏进行了渗透性介质。液体甘油液受到轴向压力梯度和沿沟道轴的时间的周期性偏析,在壁不对继冷却的发生中。在冷却法之后,壁表面的壁表面处的对流热传输。通过应用会聚和绝对稳定的半隐性有限差差技术来计算非维主流量方程。与动量和能量方程相关联的流体术语的影响是图形地呈现和讨论的。结果表明,反应参数()非常敏感,因此需要仔细监测以避免系统爆炸。而且,第二步术语的值的上升增强了燃烧速率,从而减少了污染环境的未燃烧的烃的释放。

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