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Impact of a rotating cone on forced convection of Ag-MgO/water hybrid nanofluid in a 3D multiple vented T-shaped cavity considering magnetic field effects

机译:考虑磁场效应的3D多通风T形腔中Ag-MgO /水杂交纳米流体强制对流的影响

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摘要

Forced convection of hybrid Ag-MgO/water nanofluid in a three-dimensional T-shaped vented cavity with multiple ports under the effects of a inner rotating cone and magnetic field is numerically studied with finite volume method. The simulation is performed for various values of parameters such as: Reynolds number (between 100 and 1000), Hartmann number (between 0 and 60), angular velocity of the rotating cone (between - 200 rad/s and 0), aspect ratio of the circular cylinders of the base of the cone (between 0.5 and 2) and nanoparticle solid volume fraction of the hybrid nanofluid (phi between 0 and 0.01, phi 2 between 0 and 0.01). It was observed that the average heat transfer rate rises with higher values of Reynolds number, Hartmann number above a specified value, angular rotational speed of the cone, aspect ratio of the cone for values above 1 and solid nanoparticle volume fractions of the hybrid particles. In total, 61% of average heat transfer enhancement for left horizontal upper surface is achieved with the imposed magnetic field. The enhancement in the average Nusselt numbers is 25.6% for the rotating cone at the highest angular velocity as compared to a motionless one. The average heat transfer increases almost linearly with hybrid solid nanoparticle volume fraction, while 8.96% and 15.52% enhancements are obtained for varying the solid volume fraction of the particles with the lower and higher thermal conductivity up to 0.01.
机译:采用有限体积法数值研究了在内旋转锥和磁场作用下,银-氧化镁/水纳米流体在三维多端口T形通风腔中的强迫对流。对各种参数值进行了模拟,例如:雷诺数(在100和1000之间)、哈特曼数(在0和60之间)、旋转锥体的角速度(在-200 rad/s和0之间),锥体底部圆柱的纵横比(介于0.5和2之间)和杂化纳米流体的纳米颗粒固体体积分数(φ介于0和0.01之间,φ2介于0和0.01之间)。结果表明,平均传热速率随雷诺数、哈特曼数高于规定值、锥体角转速、锥体长径比大于1以及杂化颗粒的固体纳米颗粒体积分数的增大而增大。总的来说,在施加磁场的情况下,左水平上表面的平均传热增强率为61%。与静止锥体相比,旋转锥体在最高角速度下的平均努塞尔数增加了25.6%。平均传热率随混合固体纳米颗粒体积分数的增加几乎呈线性增加,而当导热系数较低和较高的颗粒的固体体积分数达到0.01时,平均传热率分别提高了8.96%和15.52%。

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