Three dimensional MHD Casson fluid flow over a stretching surface with variable thermal conductivity

Pub Date : 2021-03-01 DOI:10.17512/JAMCM.2021.1.03
B. Ganga, S. Charles, A. Hakeem, S Nadeem
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引用次数: 3

Abstract

. The three-dimensional magnetohydrodynamic (MHD) boundary layer flow of a Casson fluid over a stretching surface set into a porous medium with variable thermal conductivity and heat generation/absorption has been researched. Conservation laws of mass, momentum and energy are changed into ordinary differential equations, which are numerically dealt with by applying the fourth order Runge-Kutta integration scheme in relationship with shooting procedure. The dimensionless velocity, temperature, skin friction coefficient and the local Nusselt number inside the boundary layer are processed and examined through tables and illustrations for various physical parameters. The numerical outcomes obtained for the specific case are sensible in great concurrence with the existing results. Results indicate that momentum boundary layer reduces for the Hartman number and Casson fluid parameter. Temperature is found as an enlightened function for the heat generation and thermal conductivity parameter.
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具有可变导热系数的拉伸表面上的三维MHD-Casson流体流动
. 研究了三维磁流体力学(MHD)卡森流体在拉伸表面上进入具有变热导率和热生成/吸收的多孔介质的边界层流动。将质量、动量和能量守恒定律转化为常微分方程,应用四阶龙格-库塔积分格式与射击过程进行数值处理。通过表格和插图对边界层内的无量纲速度、温度、表面摩擦系数和局部努塞尔数进行了处理和检验。具体算例的数值计算结果与已有结果有较好的一致性。结果表明,随着哈特曼数和卡森流体参数的增加,动量边界层减小。发现温度是产热量和导热系数参数的启蒙函数。
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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