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Flow of nanofluid by nonlinear stretching velocity

机译:非线性拉伸速度在纳米流体中的流动

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Main objective in this article is to model and analyze the nanofluid flow induced by curved surface with nonlinear stretching velocity. Nanofluid comprises water and silver. Governing problem is solved by using homotopy analysis method (HAM). Induced magnetic field for low magnetic Reynolds number is not entertained. Development of convergent series solutions for velocity and skin friction coefficient is successfully made. Pressure in the boundary layer flow by curved stretching surface cannot be ignored. It is found that magnitude of power-law index parameter increases for pressure distibutions. Magnitude of radius of curvature reduces for pressure field while opposite trend can be observed for velocity.
机译:本文的主要目的是对具有非线性拉伸速度的曲面诱导的纳米流体流动进行建模和分析。纳米流体包含水和银。通过使用同伦分析法(HAM)解决了控制问题。对于低雷诺数的感应磁场是不可接受的。成功开发了速度和皮肤摩擦系数的收敛级数解。弯曲拉伸表面在边界层中流动的压力不容忽视。发现压力分布的幂律指数参数的大小增加。对于压力场,曲率半径的大小减小,而对于速度,则可以观察到相反的趋势。

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