首页> 外文期刊>Communications in Theoretical Physics >Darcy Forchheimer Three-Dimensional Flow of Williamson Nanofluid over a Convectively Heated Nonlinear Stretching Surface
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Darcy Forchheimer Three-Dimensional Flow of Williamson Nanofluid over a Convectively Heated Nonlinear Stretching Surface

机译:Darcy Forchheimer威廉姆森的三维流动在定性加热的非线性拉伸表面上

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摘要

The present study elaborates three-dimensional flow of Williamson nanoliquid over a nonlinear stretchable surface. Fluid flow obeys Darcy Forchheimer porous medium. A bidirectional nonlinear stretching surface generates the flow. Convective surface condition of heat transfer is taken into consideration. Further the zero nanoparticles mass flux condition is imposed at the boundary. Effects of thermophoresis and Brownian diffusion are considered. Assumption of boundary layer has been employed in the problem formulation. Convergent series solutions for the nonlinear governing system are established through the optimal homotopy analysis method (OHAM). Graphs have been sketched in order to analyze that how the velocity, temperature and concentration distributions are affected by distinct emerging flow parameters. Skin friction coefficients and local Nusselt number are also computed and discussed.
机译:本研究详细阐述了威廉姆森纳米喹吖的三维流动在非线性可拉伸表面上。 流体流动奥西达西前摩尔多孔介质。 双向非线性拉伸表面产生流动。 考虑热传递的对流表面条件。 此外,零纳米颗粒质量磁通条件施加在边界处。 考虑了热孔和褐色扩散的影响。 在问题制定中采用了边界层的假设。 通过最佳同型同型分析方法(OHAM)建立了非线性控制系统的收敛系列解决方案。 已经绘制了图表,以便分析如何通过不同的出现流动参数的速度,温度和浓度分布。 还计算和讨论了皮肤摩擦系数和局部营养数。

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