Influence of Heat Generation and Thermal Radiation on MHD Flow in a Vertical Micro-Porous-Channel in the Presence of Viscous Dissipation

Bhaskar Ponna, V. Malapati
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引用次数: 1

Abstract

This article analyses the influence of heat generation and thermal radiation on steady hydromagnetic fully developed natural convection flow in a vertical micro-porous–channel in the presence of viscous dissipation. The governing ordinary differential equations, exhibiting the physics of the flow formation are displayed. Using the relevant non–dimensional variables, the governing equations are transformed into their corresponding non–dimensional form and then solved exactly by employing the perturbation technique. The influence of different admissible parameters such as fluid wall interaction parameter, Knudsen number, heat generation parameter, thermal radiation parameter, magnetic parameter, Eckert number, and permeability parameter on the fluid velocity, temperature, skin friction coefficient, and heat transfer coefficient at the micro-porous–channel surfaces is discussed with the aid of line graphs and tables.
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热生成和热辐射对存在粘性耗散的垂直微孔通道MHD流动的影响
本文分析了在存在粘性耗散的垂直微孔通道中,产热和热辐射对稳定的充分发展的自然对流流的影响。给出了反映流体形成物理特性的常微分方程。利用相关的无量纲变量,将控制方程转化为相应的无量纲形式,然后采用摄动技术精确求解。借助折线图和表格,讨论了流体壁相互作用参数、Knudsen数、产热参数、热辐射参数、磁性参数、Eckert数和渗透率参数等不同允许参数对微孔通道表面流体速度、温度、摩擦系数和换热系数的影响。
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