首页> 外文期刊>Mathematical Problems in Engineering >Influences of Slip Velocity and Induced Magnetic Field on MHD Stagnation-Point Flow and Heat Transfer of Casson Fluid over a Stretching Sheet
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Influences of Slip Velocity and Induced Magnetic Field on MHD Stagnation-Point Flow and Heat Transfer of Casson Fluid over a Stretching Sheet

机译:滑动速度和感应磁场对MHD驻点流和卡森流体在拉伸片上的传热的影响

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摘要

The steady MHD boundary layer flow near the stagnation point over a stretching surface in the presence of the induced magnetic field, viscous dissipation, magnetic dissipation, slip velocity phenomenon, and heat generation/absorption effects has been investigated numerically. The Casson fluid model is used to characterize the non-Newtonian fluid behavior. The governing partial differential equations using appropriate similarity transformations are reduced into a set of nonlinear ordinary differential equations, which are solved numerically using a shooting method with fourth-order Runge-Kutta integration scheme. Comparisons with the earlier results have been made and good agreements were found. Numerical results for the velocity, induced magnetic field, temperature profiles, skin friction coefficient, and Nusselt number are presented through graphs and tables for various values of physical parameters. Results predicted that the magnetic parameter with alpha 1 has the tendency to enhance the heat transfer rate, whereas the reverse trend is seen with alpha 1. It is also noticed that the rate of heat transfer is a decreasing function of the reciprocal of a magnetic Prandtl number, whereas the opposite phenomenon occurs with the magnitude of the friction factor.
机译:在存在感应磁场,粘滞耗散,磁耗散,滑移速度现象以及生热/吸收效应的条件下,研究了拉伸表面上停滞点附近的稳定MHD边界层流动。 Casson流体模型用于表征非牛顿流体行为。使用适当的相似度变换将控制偏微分方程简化为一组非线性常微分方程,然后使用具有四阶Runge-Kutta积分方案的射击方法对其进行数值求解。已与早期结果进行了比较,并找到了良好的协议。速度,感应磁场,温度曲线,皮肤摩擦系数和Nusselt数的数值结果通过各种物理参数值的图表显示。结果预测,α<1的磁参数具有提高传热速率的趋势,而α> 1则呈现相反的趋势。还应注意,传热速率是α的倒数的递减函数。磁Prandtl数,而相反的现象发生在摩擦系数的大小上。

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