首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >Effects of heat generation/absorption on natural convection of nanofluids over the vertical plate embedded in a porous medium using drift-flux model
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Effects of heat generation/absorption on natural convection of nanofluids over the vertical plate embedded in a porous medium using drift-flux model

机译:利用漂移-通量模型,生热/吸收对纳米流体在包埋于多孔介质中的垂直板上自然对流的影响

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In this paper, natural convection heat transfer over a vertical plate in a Darcy porous medium saturated with a nanofluid subject to heat generation/absorption was theoretically studied. The governing partial differential equations were transformed to a set of ordinary differential equations using similarity transformations and solved using finite difference method. The influence of parametric variation of the Brownian motion parameter, thermophoresis parameter and heat generation/absorption parameter on velocity, temperature and nanoparticles concentration profiles was graphically shown. Impact of non-dimensional parameters on the reduced Nusselt number and reduced Sherwood number was also investigated. The results showed that an increase in the heat generation/absorption parameter would increase temperature and velocity profiles; but, it would decrease concentration profiles. Increase of thermophoresis parameter increased magnitude of concentration profiles while not showing any significant effect on velocity and temperature profiles. The results also indicated that increase of Brownian motion parameter did not demonstrate any significant effect on the magnitude of velocity and temperature profiles. It was found that an increase in the heat generation/absorption parameter decreased the reduced Nusselt number whereas it increased the reduced Sherwood number. For negative values of the Brownian motion parameter, increase of the thermophoresis parameter increased the reduced Nusselt and Sherwood numbers.
机译:在本文中,从理论上研究了在纳西流体饱和的达西多孔介质中,在垂直板上自然对流传热的过程。使用相似变换将控制的偏微分方程转换为一组常微分方程,并使用有限差分法求解。图形化地显示了布朗运动参数,热泳参数和生热/吸收参数的参数变化对速度,温度和纳米颗粒浓度分布的影响。还研究了无量纲参数对减少的Nusselt数和减少的Sherwood数的影响。结果表明,生热/吸收参数的增加将增加温度和速度分布。但是,这会降低浓度曲线。电泳参数的增加增加了浓度分布的幅度,而对速度和温度分布没有显着影响。结果还表明,布朗运动参数的增加并未证明对速度和温度分布的大小有任何显着影响。发现发热/吸收参数的增加降低了降低的努塞尔数,而增加了降低的舍伍德数。对于布朗运动参数的负值,热泳参数的增加会减少Nusselt和Sherwood数。

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