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首页> 外文期刊>International Journal of Heat and Mass Transfer >Mixed convection of nanofluids in a three dimensional cavity with two adiabatic inner rotating cylinders
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Mixed convection of nanofluids in a three dimensional cavity with two adiabatic inner rotating cylinders

机译:具有两个绝热内部旋转圆柱的三维腔中纳米流体的混合对流

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In this study, mixed convection of nanofluids in a three dimensional cavity with two inner adiabatic rotating circular cylinders were analyzed by using finite element method. Vertical surfaces are kept at constant temperature while other walls and rotating cylinder surfaces were taken as adiabatic. The three dimensional cavity was filled with water and various types of nanoparticles (Cu, A1_2O_3 and TiO_2). The water-Cu nanofluid provided the highest heat transfer rate and at the highest value of Rayleigh number, 4% higher average heat transfer rate is obtained when compared to other particles. When cylinders rotate, depending on the rotational direction either enhancement or deterioration of average Nusselt number is observed. For the highest value of rotational speed of the cylinders, 8.5% discrepancy between the average Nusselt number is observed for the nanofluid with Cu and A1_2O_3 nanoparticles. For Cu-water nanofluid at the highest volume fraction as compared to base fluid, 38.10% of enhancement in the average heat transfer is obtained. A correlation for the average Nusselt number in polynomial form was developed which is a function of Rayleigh number and angular rotational speed of the cylinders.
机译:在这项研究中,使用有限元方法分析了纳米流体在带有两个内部绝热旋转圆柱体的三维腔中的混合对流。垂直表面保持恒温,而其他壁和旋转圆柱体表面则视为绝热。三维腔中充满了水和各种类型的纳米粒子(Cu,Al_2O_3和TiO_2)。与其他颗粒相比,水-铜纳米流体提供了最高的传热速率,并且在瑞利数的最大值下,平均传热速率提高了4%。当圆柱体旋转时,根据旋转方向,可以观察到平均努塞尔数的增大或减小。对于圆柱体的最高转速,对于含Cu和Al_2O_3纳米颗粒的纳米流体,平均努塞尔数之间存在8.5%的差异。对于与基础流体相比体积分数最高的Cu-水纳米流体,平均传热增强了38.10%。建立了多项式形式的平均努塞尔数的相关性,该相关性是瑞利数和圆柱角旋转速度的函数。

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