Stagnation Point Flow of a Nanofluid toward an Exponentially Stretching Sheet with Nonuniform Heat Generation/Absorption

A. Malvandi, F. Hedayati, G. Domairry
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引用次数: 107

Abstract

This paper deals with the steady two-dimensional stagnation point flow of nanofluid toward an exponentially stretching sheet with nonuniform heat generation/absorption. The employed model for nanofluid includes two-component four-equation nonhomogeneous equilibrium model that incorporates the effects of Brownian diffusion and thermophoresis simultaneously. The basic partial boundary layer equations have been reduced to a two-point boundary value problem via similarity variables and solved analytically via HAM. Effects of governing parameters such as heat generation/absorption λ, stretching parameter e, thermophoresis , Lewis number Le, Brownian motion , and Prandtl number Pr on heat transfer and concentration rates are investigated. The obtained results indicate that in contrast with heat transfer rate, concentration rate is very sensitive to the abovementioned parameters. Also, in the case of heat generation , despite concentration rate, heat transfer rate decreases. Moreover, increasing in stretching parameter leads to a gentle rise in both heat transfer and concentration rates.
纳米流体向非均匀热生成/吸收指数拉伸片的滞止点流动
本文研究了纳米流体在非均匀生热/吸热条件下向指数拉伸薄片的二维稳态滞止点流动。所采用的纳米流体模型是同时考虑布朗扩散和热泳作用的双组分四方程非均匀平衡模型。将基本的部分边界层方程通过相似变量简化为两点边值问题,并用HAM进行解析求解。研究了热生成/吸收λ、拉伸参数e、热透、路易斯数Le、布朗运动和普朗特数Pr等控制参数对传热和浓度的影响。结果表明,与换热速率相反,浓度速率对上述参数非常敏感。同样,在产生热量的情况下,尽管浓度增加,但传热速率降低。随着拉伸参数的增大,换热率和浓缩率均呈平缓上升趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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