Magnetohydrodynamics Micropolar Boundary Layer Flow Past a Stretching Sheet with Microstructural Slip Heat Generation with Convective Boundary Condition

Ishaq M. A., Sayeed N.H., Salihu N.O.
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Abstract

The formulation depicting the magnetohydrodynamics MHD boundary layer of a micropolar fluid on a moving sheet with heat generation and convective boundary conditions in its rectangular form is presented. The PDEs formulated are transformed into nonlinear ODEs via the stream functions and appropriate similarity variables. The solution to the nonlinear coupled equations were presented in decomposed form. The comparison of skin friction values with literatures for validation were carried out and an agreement depicted. The implications of dimensionless physical parameters that appear in this work are graphically studied in the presence of microstructural slip. Physical parameters such as Biot number and heat generation parameters are found to enhance the fluid temperature profile.
磁流体力学微极边界层通过拉伸片的微观结构滑移热生成与对流边界条件
本文给出了具有热生成和对流边界条件的微极流体在运动薄片上的磁流体力学MHD边界层的矩形表达式。通过流函数和适当的相似度变量将所建立的偏微分方程转化为非线性偏微分方程。以分解形式给出了非线性耦合方程的解。皮肤摩擦值与文献进行了比较验证,结果一致。无量纲物理参数的含义,出现在这项工作是图形研究在微观结构滑移的存在。物理参数如Biot数和产热参数提高了流体温度分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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