Magnetohydrodynamic Flow and Heat Transfer Characteristics in Micropolar-Casson Fluid over a Stretching Surface with Temperature-dependent Material Properties.

E. Fatunmbi, O. O. Akanbi
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Abstract

The current investigation communicates the flow and heat transfer characteristics of an electrically conducting micropolar-Casson fluid over a two-dimensional stretching surface with variable thermal conductivity and viscosity. Thermal radiation, viscous dissipation and heat source effects are also accounted for in the energy equation. The formulated equations of flow and heat transfer are converted from partial to ordinary differential equations using suitable similarity transformations while the dimensionless equations are solved by Runge-Kutta Fehlberg integration scheme. The effects of the physical parameters are publicized through graphs and validated by related published studies in the limiting situations. It is found from the investigation that there is accelerated flow due to the material micropolar term whereas the presence of Casson fluid and magnetic field terms decelerate the velocity. Besides, the surface temperature improves with a rise in the Casson fluid term, Eckert number and thermal conductivity parameter whereas the trend is reversed for micropolarity influence. Keywords: Micropolar-Casson fluid; Magnetohydrodynamic, Variable viscosity; Variable thermal conductivity;Viscous dissipation
具有温度依赖材料特性的拉伸表面上微极-卡森流体的磁流体动力学流动和传热特性。
目前的研究传达了导电微极-卡森流体在具有可变导热率和粘度的二维拉伸表面上的流动和传热特性。在能量方程中还考虑了热辐射、粘性耗散和热源效应。采用适当的相似变换将所建立的流动和传热方程由偏微分方程转换为常微分方程,并采用龙格-库塔-费贝格积分格式求解无因次方程。在极限情况下,物理参数的影响通过图表公布,并通过相关的已发表的研究进行验证。研究发现,由于物质微极项的存在,存在加速流动,而卡森流体和磁场项的存在使速度减慢。此外,表面温度随Casson流体项、Eckert数和导热系数参数的升高而升高,而微极性影响则相反。关键词:微极卡森流体;磁流体力学,变粘度;可变导热系数;粘性耗散
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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