首页> 外文期刊>Heat Transfer Research >EFFECT OF NANOFLUID VARIABLE PROPERTIES ON MIXED CONVECTION FLOW AND HEAT TRANSFER IN AN INCLINED TWO-SIDED LID-DRIVEN CAVITY WITH SINUSOIDAL HEATING ON SIDEWALLS
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EFFECT OF NANOFLUID VARIABLE PROPERTIES ON MIXED CONVECTION FLOW AND HEAT TRANSFER IN AN INCLINED TWO-SIDED LID-DRIVEN CAVITY WITH SINUSOIDAL HEATING ON SIDEWALLS

机译:纳米流体变化特性对侧墙正弦加热倾斜式两边驱动腔中混合对流和传热的影响

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In this study, mixed convection fluid flow and heat transfer in an inclined two-sided lid-driven cavity subjected to Al_2O_3-water nanofluid (with different particle diameters from 15 to 99 nm) has been investigated numerically. The geometry is a double lid-driven square cavity with sinusoidal temperature distribution on the left sidewall, while the right wall is kept at T_c. The top and bottom walls of the cavity, which move in opposite directions, are assumed to be insulated. The effects of inclination angle, Richardson number, nanoparticle volume fraction, temperature, and nanoparticle diameter based on recent variable property formulations are studied. The effects of an increase in Richardson number while the solid volume fraction is constant and effects of an increase in solid volume fraction when the Richardson number is kept constant are investigated. Also, the obtained results show that an increase in nanoparticle diameter influences the flow pattern and isotherm contours inside the cavity relatively when the Richardson number is kept constant and the diameter is varied from 15 to 99 nm. As the mean nanoparticle diameter increases, the corresponding flow velocity decreases, and hence the heat transfer enhancement is reduced. The results indicate that as Richardson number increases, the average Nusselt number rapidly increases for different values of d_p. Moreover, the results have clearly indicated that the addition of Al_2O_3 nanoparticles has produced a remarkable enhancement on heat transfer with respect to that of the pure fluid.
机译:在这项研究中,对流在Al_2O_3-水纳米流体(粒径从15到99 nm不同)的倾斜的双面盖驱动腔中的混合对流流体流动和传热进行了数值研究。几何形状是双盖驱动的方腔,左侧壁具有正弦温度分布,而右侧壁保持在T_c。假定沿相反方向移动的空腔的顶壁和底壁是绝缘的。基于最近的可变性质公式,研究了倾角,理查森数,纳米颗粒体积分数,温度和纳米颗粒直径的影响。研究了当固体体积分数恒定时Richardson数增加的影响,以及当Richardson数保持恒定时固体体积分数增加的影响。而且,获得的结果表明,当理查森数保持恒定并且直径在15到99 nm之间变化时,纳米粒子直径的增加会相对影响型腔内部的流动模式和等温线轮廓。随着平均纳米颗粒直径的增加,相应的流速降低,因此传热增强降低。结果表明,随着理查森数增加,对于不同的d_p值,平均努塞尔数迅速增加。此外,结果清楚地表明,相对于纯流体,Al_2O_3纳米颗粒的添加在传热方面产生了显着的增强。

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