Dual solutions for the boundary layer flow of a nanofluid over a moving surface

I. Mondal, S. Mukhopadhyay, R. Gorla
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引用次数: 1

Abstract

An analysis of heat and mass transfer for boundary layer forced convective flow of a nanofluid past a moving flat surface parallel to a moving stream is presented. The similarity solutions for the problem are obtained and the reduced ordinary differential equations are solved numerically. To support the validity of the numerical results, comparison is made with known results from the open literature for some particular cases of the present study. When the surface and the fluid move in the opposite directions, dual solutions exist. Numerical results for friction factor, surface heat transfer rate and mass transfer rate have been presented for parametric variations of the Brownian motion parameter Nb, thermophoresis parameter Nt and Lewis number Le. The dependency of the friction factor, surface heat transfer rate (Nusselt number) and mass transfer rate (Sherwood number) on these parameters has been discussed.
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纳米流体在移动表面上边界层流动的对偶解
本文分析了纳米流体通过平行于运动流的运动平面时边界层强制对流的传热传质问题。得到了问题的相似解,并对简化后的常微分方程进行了数值求解。为了支持数值结果的有效性,对本研究的一些特殊情况与公开文献的已知结果进行了比较。当表面和流体向相反方向运动时,存在对偶溶液。给出了摩擦因数、表面传热率和传质率对布朗运动参数Nb、热透参数Nt和路易斯数Le等参数变化的数值计算结果。讨论了摩擦系数、表面传热率(努塞尔数)和传质率(舍伍德数)与这些参数的关系。
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