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The Aligned Magnetic Field with Convective Boundary Conditions over a Stretching Sheet in a Viscous Fluid

机译:具有对流边界条件的对齐磁场在粘性流体中的拉伸片上

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In this study, the aligned magnetic field on the flow of a viscous fluid over a stretching sheet with convective boundary conditions is analyzed. The governing nonlinear boundary layer equations is transformed into ordinary differential equations and then solved numerically by Keller-box method. The numerical solutions with different values of aligned angle, Prandtl number and magnetic field are presented graphically and tabular form. It is found that the velocity profile, skin friction coefficient and Nusselt number decreases with the increasing of aligned angle and magnetic field. Similarly, increment in Prandtl number decreases the temperature profile.
机译:在该研究中,分析了在具有对流边界条件的拉伸片上的粘性流体流动上的对准磁场。控制非线性边界层方程被转换成常微分方程,然后通过凯勒盒方法进行数字解决。具有不同对齐角度,普朗特数和磁场的不同值的数值解,以图形方式和表格形式呈现。发现速度曲线,皮肤摩擦系数和氮数数量随着对齐角度和磁场的增加而降低。类似地,普朗特数量的增量会降低温度曲线。

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