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Magnetohydrodynamic stagnation-point flow of Sisko nanofluid over a stretching sheet with suction

机译:Sisko纳米流体在拉伸片上的磁流体动力学停滞点流动

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摘要

A numerical investigation is presented to show the effects of thermo-diffusion on the hydromagnetic stagnation-point flow of Sisko nanofluid over a linearly stretching sheet by considering viscous dissipation and Joule heating with suction/injection. A suitable set of similarity transformations is considered in order to convert the basic partial differential equations into a set of coupled nonlinear ordinary differential equations. An efficient numerical method along with shooting technique is involved in order to solve the reduced governing basic equations. The influences of several emerging physical parameters of Sisko nanofluid on the profiles of velocity, temperature, solutal concentration, nanoparticle volume fraction, skin-friction coefficient, Nusselt number, and Sherwood number have been studied and analyzed in detail through graphs and tables. It is found that the skin friction coefficient decays more rapidly against the material parameter of Sisko fluid. Also, it is noticed that the Brownian motion and thermophoresis parameter have the reverse effects on Sisko nanofluid Sherwood number. It is analyzed that the Nusselt number decreases with an increase in the values of thermophoresis parameter, Brownian motion parameter, and Eckert number, while its value increases with material parameter and Dufour solutal Lewis number. It is observed that the Sherwood number has ascending behavior for thermophoresis and, Brownian motion parameters, whereas nanofluid Sherwood number gets amplified with a hike in the nano Lewis number parameter for all the values of Brownian motion parameter.
机译:通过考虑粘性耗散和吸/注塑焦耳热,提出了热扩散对Sisko纳米流体在线拉伸片上水磁停滞点流动的影响。为了将基本偏微分方程转换为一组耦合的非线性常微分方程,考虑了一组合适的相似性变换。为了求解简化的控制基本方程,涉及一种有效的数值方法和射击技术。通过图表和表格详细研究和分析了Sisko纳米流体的几个新兴物理参数对速度、温度、溶解浓度、纳米颗粒体积分数、皮肤摩擦系数、努塞尔数和舍伍德数等分布的影响。结果表明,皮肤摩擦系数对Sisko流体的材料参数衰减得更快。此外,还注意到布朗运动和热泳参数对 Sisko 纳米流体舍伍德数有相反的影响。结果表明,Nusselt数随热泳参数、Brownian运动参数和Eckert数值的增加而减小,而Nusselt数随材料参数和Dufour绝对Lewis数的增加而增大。观察到 Sherwood 数在热泳和布朗运动参数方面具有上升行为,而纳米流体 Sherwood 数随着布朗运动参数所有值的纳米路易斯数参数的增加而放大。

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