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Natural convection of nanofluids over a convectively heated vertical plate embedded in a porous medium

机译:纳米流体在包埋在多孔介质中的对流加热垂直板上的自然对流

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In this paper, the natural convective flow of nanofluids over a convectively heated vertical plate in a saturated Darcy porous medium is studied numerically. The governing equations are transformed into a set of ordinary differential equations by using appropriate similarity variables, and they are numerically solved using the fourth-order Runge-Kutta method associated with the Gauss-Newton method. The effects of parametric variation of the Brownian motion parameter (Nb), thermophoresis parameter (Nt) and the convective heating parameter (Nc) on the boundary layer profiles are investigated. Furthermore, the variation of the reduced Nusselt number and reduced Sherwood number, as important parameters of heat and mass transfer, as a function of the Brownian motion, thermophoresis and convective heating parameters is discussed in detail. The results show that the thickness of the concentration profiles is much lower than the temperature and velocity profiles. For low values of the convective heating parameter (Nc), as the Brownian motion parameter increases, the non-dimensional wall temperature increases. However, for high values of Nc, the effect of the Brownian motion parameter on the non-dimensional wall temperature is not significant. As the Brownian motion parameter increases, the reduced Sherwood number increases and the reduced Nusselt number decreases.
机译:在本文中,在饱和达西多孔介质中,通过对流加热的垂直平板对纳米流体的自然对流进行了数值研究。通过使用适当的相似变量将控制方程转换为一组常微分方程,并使用与高斯-牛顿法相关的四阶Runge-Kutta方法对其进行数值求解。研究了布朗运动参数(Nb),热泳参数(Nt)和对流加热参数(Nc)的参数变化对边界层剖面的影响。此外,还详细讨论了作为热量和质量传递的重要参数的努塞尔特数和舍伍德数的减少随布朗运动,热泳和对流加热参数的变化。结果表明,浓度分布的厚度远低于温度和速度分布。对于对流加热参数(Nc)的低值,随着布朗运动参数的增加,无量纲壁温也会增加。但是,对于高Nc值,布朗运动参数对无量纲壁温的影响并不明显。随着布朗运动参数的增加,减少的舍伍德数增加,减少的努塞尔数减少。

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