首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >MHD Flow of Micropolar Fluid over an Oscillating Vertical Plate Embedded in Porous Media with Constant Temperature and Concentration
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MHD Flow of Micropolar Fluid over an Oscillating Vertical Plate Embedded in Porous Media with Constant Temperature and Concentration

机译:微极流体在嵌入多孔介质中的振荡垂直板上的MHD流动,具有恒定温度和浓度

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摘要

The present analysis represents the MHD flow of micropolar fluid past an oscillating infinite vertical plate embedded in porous media. At the plate, free convections are caused due to the differences in temperature and concentration. Therefore, the combined effect of radiative heat and mass transfer is taken into account. Partial differential equations are used in the mathematical formulation of a micropolar fluid. The system of dimensional governing equations is reduced to dimensionless form by means of dimensional analysis. The Laplace transform technique is applied to obtain the exact solutions for velocity, temperature, and concentration. In order to highlight the flow behavior, numerical computation and graphical illustration are carried out. Furthermore, the corresponding skin friction and wall couple stress are calculated.
机译:本分析表示微极流体通过嵌入多孔介质中的振荡无限垂直板的MHD流动。在板上,由于温度和浓度的差异,会引起自由对流。因此,考虑了辐射传热和传质的综合效应。偏微分方程用于微极流体的数学公式。通过量纲分析,将量纲控制方程组简化为无量纲形式。应用拉普拉斯变换技术来获得速度、温度和浓度的精确解。为了突出流动行为,进行了数值计算和图形说明。此外,还计算了相应的蒙皮摩擦力和壁偶应力。

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