复合对流盖驱动的正弦三角形外壳中混合纳米流体的流动

I. Zahan, R. Nasrin, M. Alim
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引用次数: 11

摘要

在一个由等量的Cu和Al2O3纳米颗粒组成的混合纳米流体填充于水基流体中的正弦波状底面的盖子驱动的三角形外壳中,对复合磁对流进行了数值分析。对外壳左垂直壁进行加热,对腔体倾斜侧进行等温冷却,对底部波浪壁进行保温。在外壳的中间放置了一个导热水平圆柱体。本研究采用Galerkin加权残差法的有限元方法求解了相关的控制方程。在雷诺数、哈特曼数和普朗特数固定的情况下,详细研究了理查德森数和纳米颗粒固体体积分数对流动结构和换热特性的影响。在不同的控制参数下,得到了混合纳米流体的流线、等温线和平均努塞尔数。数值计算结果表明,理查德森数对流动和换热性能有显著影响。此外,两种不同的纳米颗粒悬浮液的组合具有更好的传热性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid nanofluid flow in combined convective lid-driven sinusoidal triangular enclosure
A numerical analysis has been carried out on combined magnetoconvection in a lid driven triangular enclosure with sinusoidal wavy bottom surface filled with hybrid nanofluid composed of equal quantities of Cu and Al2O3 nanoparticles dispersed in water-based fluid. The enclosure left vertical wall is heated while the inclined side of the cavity is cooled isothermally and the bottom wavy wall is insulated. A heat conducting horizontal circular cylinder has been placed at the middle of the enclosure. In this research, the relevant governing equations have been solved by using finite element method of Galerkin weighted residual approach. The implication of Richardson number and solid volume fraction of nanoparticles on the flow structure and heat transfer characteristics has been performed in details while the Reynolds number, Hartmann number and Prandtl number considered as fixed. Results have been presented in terms of streamlines, isotherms and average Nusselt number of the hybrid nanofluid for different values of governing parameters. The numerical results indicate that the Richardson number have significance effect on the flow and heat transfer performance. Moreover, it is noticed that combination of two different nanoparticles suspension has a better performance of heat transfer.
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