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Scaling Group Transformation for MHD Boundary Layer Slip Flow of a Nanofluid over a Convectively Heated Stretching Sheet with Heat Generation

机译:热发电纳米流体纳米流体的MHD边界层滑动流动缩放组变换

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摘要

Steady viscous incompressible MHD laminar boundary layer slip flow of an electrically conducting nanofluid over a convectively heated permeable moving linearly stretching sheet has been investigated numerically. The effects of Brownian motion, thermophoresis, magnetic field, and heat generation/absorption are included in the nanofluid model. The similarity transformations for the governing equations are developed. The effects of the pertinent parameters, Lewis number, magnetic field, Brownian motion, heat generation, thermophoretic, momentum slip and Biot number on the flow field, temperature, skin friction factor, heat transfer rate, and nanoparticle, volume fraction rate are displayed in both graphical and tabular forms. Comparisons of analytical (for special cases) and numerical solutions with the existing results in the literature are made and is found a close agreement, that supports the validity of the present analysis and the accuracy of our numerical computations. Results for the reduced Nusselt and Sherwood numbers are provided in tabular and graphical forms for various values of the flow controlling parameters which govern the momentum, energy, and the nanoparticle volume fraction transport in the MHD boundary layer.
机译:在数值上研究了在具有定性加热的可渗透的可渗透的线性拉伸板上的导电纳米流体的稳定粘性不可压缩的MHD层边界层滑动。褐色运动,热孔,磁场和发热/吸收的影响包括在纳米流体模型中。开发了管理方程的相似性变换。展示了流场,温度,皮摩擦因子,传热速率和纳米粒子,延续参数,刘易斯数,磁场,布朗运动,发热,热量,动量滑动和Biot数,体积分数率图形和表格均。对文献中现有结果的分析(特殊情况)和数值解决方案的比较,并发现了一个密切的协议,支持目前分析的有效性和数据计算的准确性。减少的NUSELET和SHERWOOD数量的结果以表格和图形形式提供,用于控制MHD边界层中的动量,能量和纳米粒子体积分数的流量控制参数的各种值。

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