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首页> 外文期刊>Results in Physics >Unsteady Sisko magneto-nanofluid flow with heat absorption and temperature dependent thermal conductivity: A 3D numerical study
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Unsteady Sisko magneto-nanofluid flow with heat absorption and temperature dependent thermal conductivity: A 3D numerical study

机译:具有吸热和温度相关导热系数的非稳定Sisko磁纳米流体流动:3D数值研究

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摘要

The impact of temperature dependent thermal conductivity and convective surface conditions on unsteady 3D Sisko nanofluid flow over a stretching surface is studied in the presence of heat generation/absorption and magnetic field. The numerical solution of nonlinear coupled equations has been carried out to explore the properties of different physical profiles of the fluid flow with varying of parameters. Specifically, the application of generalized Biot numbers and heat generation/absorption parameter in the sketching of temperature and concentration profiles are explored. The effect of all three parameters is noticed in the increasing order for shear thinning(01)fluids. Moreover, the influence of Biot numberγ1on heat and mass transfer rates, are found in the enhancement and diminishing conducts respectively, in both cases of shear thinning as well as shear thickening fluids and a reverse trend is observed with the variation of Biot numberγ2. Additionally, the present results are validated through skin friction, heat and mass transfer rate values with the comparable values in the existing previous values.
机译:在存在热量产生/吸收和磁场的情况下,研究了取决于温度的热导率和对流表面条件对拉伸表面上不稳定3D Sisko纳米流体流动的影响。已经进行了非线性耦合方程的数值解,以探索具有不同参数的流体流动的不同物理分布的特性。具体而言,探索了广义比奥数和热量产生/吸收参数在温度和浓度分布图绘制中的应用。对于剪切稀化(0 1)流体,这三个参数的影响按递增顺序排列。此外,在剪切稀化和剪切增稠流体的两种情况下,在增强和减小行为中都分别发现了毕奥特数γ1对传热和传质速率的影响,并且随着毕奥特数γ2的变化观察到相反的趋势。另外,通过与现有先前值中的可比值的皮肤摩擦,传热和传质速率值来验证当前结果。

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