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Numerical study of mixed convection flow in a lid-driven cavity with sinusoidal heating on sidewalls using nanofluid

机译:纳米流体在侧壁正弦加热下盖驱动腔内混合对流的数值研究

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Mixed convection flow of Cu-water nanofluid inside a lid-driven square cavity with adiabatic horizontal walls and sinusoidal heating on sidewalls has been investigated numerically. The effects of increase in shear force for a fixed buoyancy force and effects of increase in buoyancy force for a fixed shear force were investigated. Effects of variations of Richardson number, phase deviation of sinusoidal heating, and volume fraction of nanoparticles on flow and temperature field were studied. The obtained results showed that for a constant Grashof number at all Richardson numbers, a clockwise eddy was developed inside the cavity, also the rate of heat transfer increases with decrease in Richardson number and increase of volume fraction of nanoparticles. For a constant Reynolds number the clockwise eddy is observed up to Ri = 1. For Ri = 10 a multicellular flow pattern is formed inside the cavity. Moreover it was found that when the Reynolds number is kept constant, the rate of heat transfer increases with increase in Richardson number.
机译:数值研究了具有绝热水平壁和侧壁正弦加热的盖子驱动方腔内的铜水纳米流体的混合对流。研究了固定浮力时剪切力增加的影响和固定剪切力时增加浮力的影响。研究了理查森数的变化,正弦加热的相位偏差以及纳米颗粒的体积分数对流场和温度场的影响。获得的结果表明,对于在所有Richardson数下都恒定的Grashof数,空腔内部产生了顺时针涡流,并且随着Richardson数的减少和纳米粒子体积分数的增加,传热速率也随之增加。对于恒定的雷诺数,直到Ri = 1观察到顺时针涡流。对于Ri = 10,在腔体内形成多细胞流动模式。此外,发现当雷诺数保持恒定时,传热速率随着理查森数的增加而增加。

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