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首页> 外文期刊>Indian Journal of Pure & Applied Physics >Computational modeling of partial slip effects on hydromagnetic boundary layer flow past an exponential stretching surface in presence of thermal radiation
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Computational modeling of partial slip effects on hydromagnetic boundary layer flow past an exponential stretching surface in presence of thermal radiation

机译:在热辐射存在下通过指数拉伸表面流动液压边界层流动的计算模拟

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摘要

Numerical analysis of computational modeling is performed to investigate the influence of partial slip on boundary layer flow of electrically conducting incompressible viscous fluid over exponential stretching surface in the presence of thermal radiation. The impact of defining parameters are determined and governing boundary layer equations are reduced to ordinary differential equations by using appropriate similarity transformation. Numerical computation of the problem has been carried out by Runge-Kutta fourth order method in association with quasilinear shooting technique. Effects of magnetic parameter, radiation parameter, Prandtl number, suction or injection parameter, velocity slip parameter and thermal slip parameter on velocity and temperature profiles are computed and illustrated graphically, whereas numerical values of local skin friction coefficient and local Nusselt number are expressed through tabular arrays. Results for non-magnetic flow condition are found in concordance with earlier investigations.
机译:进行计算建模的数值分析,研究了在热辐射的存在下对指数拉伸表面上导电不可压缩粘液流体的边界层流动的影响。确定参数的影响并通过使用适当的相似性转换减少到普通微分方程的影响。通过与Quasilinear拍摄技术相关联的runge-Kutta第四订单方法进行了数值计算。图形上计算磁性参数,辐射参数,Prandt1号,抽吸或喷射参数,速度滑移参数和热滑移参数,局部皮肤摩擦系数和局部纽带数的数值通过表格表示阵列。与早期的研究相一致地发现了非磁性流动条件的结果。

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