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EFFECTS OF CHEMICAL REACTION ON MAGNETO-MICROPOLAR FLUID FLOW FROM A RADIATIVE SURFACE WITH VARIABLE PERMEABILITY

机译:化学反应对可变渗透率辐射表面磁-微流体流动的影响

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This paper presents a study of a hydromagnetic free convection flow of an electrically conducting micropolar fluid past a vertical plate through a porous medium with a heat source, taking into account the homogeneous chemical reaction of first order. A uniform magnetic field has also been considered in the study which acts perpendicular to the porous surface of the above plate. The analysis has been done by assuming varying permeability of the medium and the Rosseland approximation has been used to describe the radiative heat flux in the energy equation. Numerical results are presented graphically in the form of velocity, micro- rotation, concentration and temperature profiles, the skin-friction coefficient, the couple stress coefficient, the rate of heat and mass transfers at the wall for different material parameters. The study clearly demonstrates how a chemical reaction influences the above parameters under given conditions.
机译:本文考虑了一阶均相化学反应,研究了导电微极性流体通过多孔介质通过多孔板流过垂直板的水磁自由对流。在研究中还考虑了均匀磁场,该磁场垂直于上述板的多孔表面起作用。通过假设介质的渗透率变化来进行分析,并且使用Rosseland近似值来描述能量方程中的辐射热通量。数值结果以速度,微旋转,浓度和温度分布图,表层摩擦系数,耦合应力系数,壁面传热速率和不同材料参数下的传质速率的图形表示。该研究清楚地证明了在给定条件下化学反应如何影响上述参数。

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