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首页> 外文期刊>Frontiers in Heat and Mass Transfer >NUMERICAL SOLUTION ON HEAT TRANSFER MAGNETOHYDRODYNAMIC FLOW OF MICROPOLAR CASSON FLUID OVER A HORIZONTAL CIRCULAR CYLINDER WITH THERMAL RADIATION
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NUMERICAL SOLUTION ON HEAT TRANSFER MAGNETOHYDRODYNAMIC FLOW OF MICROPOLAR CASSON FLUID OVER A HORIZONTAL CIRCULAR CYLINDER WITH THERMAL RADIATION

机译:热辐射水平下圆柱状微流体上卡森流体传热磁流体动力的数值解

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This paper focuses on the numerical solution for magnetohydrodynamic (MHD) flow of micropolar Casson fluid with thermal radiation over a horizontal circular cylinder. The nonlinear partial differential equations of the boundary layer are first transformed into a non-dimensional form and then solved numerically using an implicit finite difference scheme known as Keller-box method. The The effects of the emerging parameters, namely Casson fluid parameter, magnetic parameter, radiation parameter and micropolar parameter on the local Nusselt number and the local skin friction coefficient, as well as the temperature, velocity and angular velocity profiles are shown graphically and discussed. The present results of local Nusselt number and the local skin friction for viscous fluid are found to be in good agreement with the literature
机译:本文重点研究了在水平圆柱体上具有热辐射的微极性卡森流体的磁流体力学(MHD)流动的数值解。首先将边界层的非线性偏微分方程转换为无量纲形式,然后使用称为Keller-box方法的隐式有限差分方案进行数值求解。图形显示并讨论了新兴参数(即卡森流体参数,磁参数,辐射参数和微极参数)对局部Nusselt数和局部皮肤摩擦系数以及温度,速度和角速度曲线的影响。发现局部Nusselt值和粘性流体的局部皮肤摩擦的当前结果与文献非常吻合

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