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Numerical investigation of heat transfer from flow over square cylinder placed in a confined channel using Cu-water nanofluid

机译:铜水纳米流体在密闭通道中通过方筒流动的传热数值研究

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Laminar forced convection heat transfer from 2-D flow over a square cylinder placed in a confined adiabatic channel is studied numerically. The governing equations are solved using unsteady stream function-vorticity method. The effect of volume fraction of the nanoparticles are tested for different Reynolds number in laminar range. Fluid dynamics and heat transfer results were reported for steady-state condition. Local Nusselt number and average Nusselt number are reported in connection with volume fraction and Reynolds number for blockage ratio of 0.25. Square cylinder’s front wall results maximum Nusselt number whereas rear wall shows smaller Nusselt number. Wall attached pair of vortices appeared rear side of cylinder for Reynolds number varying from 10 to 40 and volume fraction varies from 0.0 to 0.1. The size of symmetry vortices linearly increases when Reynolds number or volume fraction is increased. The drag coefficient is more pronounced to the variation in Reynolds number and volume fraction rather lift coefficient.
机译:数值研究了二维流动在密闭绝热通道中放置的方形圆柱体上的层流强迫对流换热。用非定常流函数涡度法求解控制方程。对于层流范围内的不同雷诺数,测试了纳米颗粒的体积分数的影响。报告了稳态下的流体动力学和传热结果。报告的局部Nusselt数和平均Nusselt数与体积分数和雷诺数相关,封阻比为0.25。方筒的前壁产生最大的Nusselt数,而后壁则显示较小的Nusselt数。壁挂的一对涡流出现在圆柱体的后部,雷诺数从10到40变化,体积分数从0.0到0.1变化。雷诺数或体积分数增加时,对称涡旋的大小线性增加。阻力系数对于雷诺数和体积分数而不是升力系数的变化更为明显。

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