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Unsteady Heat and Mass Transfer of Chemically Reacting Micropolar Fluid in a Porous Channel with Hall and Ion Slip Currents

机译:具有霍尔和离子滑移电流的多孔通道中化学反应微极性流体的非稳态传热和传质

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摘要

This paper presents an incompressible two-dimensional heat and mass transfer of an electrically conducting micropolar fluid flow in a porous medium between two parallel plates with chemical reaction, Hall and ion slip effects. Let there be periodic injection or suction at the lower and upper plates and the nonuniform temperature and concentration at the plates are varying periodically with time. The flow field equations are reduced to nonlinear ordinary differential equations using similarity transformations and then solved numerically by quasilinearization technique. The profiles of velocity components, microrotation, temperature distribution and concentration are studied for different values of fluid and geometric parameters such as Hartmann number, Hall and ion slip parameters, inverse Darcy parameter, Prandtl number, Schmidt number, and chemical reaction rate and shown in the form of graphs.
机译:本文介绍了在两个平行板之间具有化学反应,霍尔效应和离子滑移效应的多孔介质中的导电微极性流体的不可压缩的二维传热传质。上下板定期注入或吸气,板上的温度和浓度不均匀随时间周期性变化。使用相似变换将流场方程简化为非线性常微分方程,然后通过准线性化技术对其进行数值求解。研究了流体和几何参数(例如哈特曼数,霍尔和离子滑移参数,反达西参数,普朗特数,施密特数和化学反应速率)的不同值的速度分量,微旋转,温度分布和浓度的分布图,并显示在图的形式。

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