Magneto-hydrodynamic mixed convection of a non-Newtonian power-law nanofluid past a moving vertical plate with variable density

Macha Madhu, Naikoti Kishan
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引用次数: 14

Abstract

Present paper investigates the magnetohydrodynamic boundary layer mixed convection flow over a moving vertical plate in a non-Newtonian power-law nanofluid with variable density. The governing partial differential equations are transformed into a ordinary differential equations by suitable similarity transformations. The system of coupled non-linear ordinary differential equations are solved numerically using variational finite element method. The solutions for the flow and heat transfer characteristics are computed numerically for various values of flow controlling parameters. Investigation predict that an increase in the values of magnetic field parameter and thermophoresis parameter is to enhance the temperature and nanoparticle volume fraction profiles. Increasing power-law index reduces the velocity, temperature and nanoparticle volume fraction profiles. An increase in the Brownian motion and Lewis number is reduces the nanoparticle volume fraction profiles and temperature field is decreases with increasing Pradtl number. An increase in power-law index and thermophoresis is found to be increase in the skin friction co-efficient but decrease in the heat transfer co-efficient.

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非牛顿幂律纳米流体通过变密度移动垂直板的磁流体动力混合对流
本文研究了变密度非牛顿幂律纳米流体在运动垂直板上的磁流体边界层混合对流流动。通过适当的相似变换,将控制偏微分方程转化为常微分方程。采用变分有限元法对耦合非线性常微分方程组进行数值求解。对不同流动控制参数值下的流动和换热特性进行了数值计算。研究预测,磁场参数和热泳参数的增大会提高纳米颗粒的温度和体积分数分布。幂律指数的增加降低了速度、温度和纳米颗粒体积分数分布。随着布朗运动和路易斯数的增加,纳米颗粒体积分数分布减小,温度场随普拉托数的增加而减小。幂律指数和热泳率的增加使皮肤摩擦系数增加,而传热系数降低。
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