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首页> 外文期刊>International Journal of Heat and Mass Transfer >MHD mixed convection boundary layer flow towards a stretching vertical surface with constant wall temperature
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MHD mixed convection boundary layer flow towards a stretching vertical surface with constant wall temperature

机译:MHD混合对流边界层流向壁面温度恒定的拉伸垂直表面

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This work considers a steady two-dimensional magnetohydrodynamic (MHD) flow of a viscous, incompressible and electrically conducting fluid over a stretching vertical surface with constant wall temperature. The external flow and the stretching velocities are assumed to vary with x~(1/2), where x is the distance from the slot where the surface is issued. The transformed boundary layer equations are solved numerically for some values of the related parameters, namely the magnetic parameter M, the velocity ratio parameter ε and the mixed convection or buoyancy parameter λ, while the Prandtl number pr is fixed to unity, using a finite-difference scheme known as the Keller-box method. Both assisting and opposing flow cases are considered. It is found that the magnetic parameter M significantly affects the flow and the thermal fields, besides increasing the range of λ for which the solution exists. Dual solutions are found to exist for some range of the mixed convection parameter.
机译:这项工作考虑了具有恒定壁温的拉伸垂直表面上的粘性,不可压缩和导电流体的稳定二维磁流体动力学(MHD)流。假设外部流动和拉伸速度随x〜(1/2)的变化而变化,其中x是距开有表面的缝隙的距离。对于相关参数的某些值(即磁参数M,速度比参数ε和混合对流或浮力参数λ),对转换后的边界层方程进行了数值求解,而普朗特数pr使用有限等式固定为1差异方案称为Keller-box方法。辅助情况和相反情况都被考虑。可以发现,磁参数M除了会增加溶液存在的λ的范围外,还会显着影响流动和热场。对于混合对流参数的某个范围,发现存在双重解。

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