首页> 外文期刊>Journal of Heat Transfer >Heat and Mass Transfer in Power-Law Nanofluids Over a Nonisothermal Stretching Wall With Convective Boundary Condition
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Heat and Mass Transfer in Power-Law Nanofluids Over a Nonisothermal Stretching Wall With Convective Boundary Condition

机译:具有对流边界条件的非等温拉伸壁上幂律纳米流体的传热和传质

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摘要

A boundary layer analysis that has been presented for the heat and mass transfer in power-law nanofluids over a stretching surface with convective boundary condition are investigated numerically. The surface nanoparticle concentration is kept constant. A power-law model is used for non-Newtonian fluids, whereas Brownian motion and thermophoresis effects are incorporated in the nanofluid model. A similarity transformation is used to reduce mass, momentum, thermal energy, and nanoparticles concentration equations into nonlinear ordinary differential equations which are solved numerically by using a finite difference method. The effects of nanofluid parameters, suction'injection, and convective parameters and generalized Pr and Le numbers on dimensionless functions, skin friction, local Nusselt, and Sherwood numbers are shown graphically. The quantitative comparison of skin friction and heat transfer rates with the published results for special cases is shown in tabular form and is found in good agreement.
机译:数值研究了对流边界条件下拉伸表面上幂律纳米流体中传热和传质的边界层分析。表面纳米颗粒浓度保持恒定。幂律模型用于非牛顿流体,而布朗运动和热泳效应则纳入了纳米流体模型。使用相似性变换将质量,动量,热能和纳米颗粒浓度方程式简化为非线性常微分方程,可使用有限差分法对其进行数值求解。图形化地显示了纳米流体参数,抽吸,对流参数以及广义Pr和Le数对无量纲函数,皮肤摩擦,局部Nusselt和Sherwood数的影响。表格中显示了特殊情况下皮肤摩擦和传热速率与已发表结果的定量比较,发现吻合良好。

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