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Exploring magnetic dipole contribution on radiative flow of ferromagnetic Williamson fluid

机译:探索磁偶极子对铁磁威廉姆森流体辐射流的贡献

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摘要

The purpose of present article is to analyze the impacts of thermal radiation and magnetic dipole in flow of ferromagnetic Williamson liquid over a stretched surface. Appropriate transformations are utilized to obtain the relevant nonlinear differential system. The obtained differential system is tackled numerically with the help of built-in-shooting method. Influence of viscous dissipation, ferromagnetic interaction parameter, cure temperature, Prandtl number, Weissenberg number (material parameter) and thermal radiation are observed on temperature and velocity fields. Further velocity and temperature gradients are discussed and analyzed graphically. The obtained outcomes declare that surface drag force and heat transfer rate enhance for higher estimation of thermal radiation and Prandtl number. Moreover velocity field decays verses Weissenberg number.
机译:本文的目的是分析热辐射和磁偶极子在拉伸表面上铁磁性威廉姆森液体流动中的影响。利用适当的变换来获得相关的非线性微分系统。借助内置的射击方法,可以对获得的差分系统进行数值处理。在温度和速度场上观察到了粘性耗散,铁磁相互作用参数,固化温度,普朗特数,魏森伯格数(材料参数)和热辐射的影响。进一步讨论了速度和温度梯度,并以图形方式进行了分析。获得的结果表明,表面阻力和传热速率增强,可以更好地估计热辐射和普朗特数。此外,速度场衰减与魏森伯格数成正比。

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