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Numerical Solutions of the Aligned Magnetic Field on the Boundary Layer Flow and Heat Transfer over a Stretching Sheet by using Keller-box Method

机译:Keller-box法在拉伸薄板上边界层流动和传热的定向磁场数值解

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摘要

In this study, the influence of aligned magnetic field on the steady boundary layer flow and heat transfer over audstretching sheet together with Newtonian heating is considered. The transformed governing nonlinear boundary layer equations in the form of ordinary differential equations are solved numerically by Keller-box method. The numerical solutions of the applied magnetic field with different values of aligned angle, D1 on the velocity and temperature profile are presented graphically. It is found that, increases in aligned angle retarded the value of fluid’s velocity and increases the value of fluid’s temperature.
机译:在这项研究中,考虑了取向磁场对拉伸边界层上稳定边界层流动和传热以及牛顿加热的影响。用Keller-box方法对常微分方程形式的控制非线性边界层方程进行了数值求解。用图形表示了速度和温度曲线上具有不同对准角D1的外加磁场的数值解。发现,增加对准角会延迟流体的速度值并增加流体的温度值。

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