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Combined effects of double rotating cones and magnetic field on the mixed convection of nanofluid in a porous 3D U-bend

机译:双旋转锥体和磁场对多孔3D U形弯纳米流体混合对流的综合作用

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摘要

Impacts of double rotating cone system and magnetic field on mixed convection in a 3D U-shaped porous channel are analyzed with finite element method. Impacts of different influencing parameters such as Richardson number (between 0.05 and 50), Hartmann number (between 0 and 100), rotational speed of the cones (between -5000 and 5000), size of the cones (between 0 and 0.075H) and aspect ratio (between 0.4 and 2) on the flow and heat transfer are scrutinized. It was revealed that the average Nu decreases when higher values of Richardson number, magnetic field strength are considered while the impact is reverse for angular speed, size and aspect ratio of the cones. The hot walls of the U-channel contribute to overall heat transfer differently and the variation is significant for different pertinent parameters. The average Nu of hot wall near the exit is reduced by about 20% at the highest Richardson number. The magnetic field reduced the effective convention while significant increment of the average Nusselt number of the bottom wall is observed with higher size and speed of the rotating cones. The size effect is influential in the case of rotation and up to 143% increment in the average Nu is attained for the highest size with highest speed of the cones while this amount is only 9.5% for a stationary cone. Enhancements up to 84% in the average Nu is obtained with rotation of the cones while aspect ratio contributed to only 10% increment. A multi-parametric POD analysis for the evaluation of local and average Nusselt numbers of the hot surfaces of the U-shaped cavity is performed. The number of modes required to represent the data in the parametric space is 20, 20 and 48 for left, right and bottom surfaces.
机译:用有限元法分析了双旋转锥系统和磁场对3D U形多孔通道混合对流的影响。不同影响参数的影响,如Richardson号码(0.05和50之间),锥形数(在0到100之间),锥体的转速(介于-5000到5000之间),锥体的尺寸(0和0.075h)和仔细检查流动和热传递上的纵横比(0.4和2之间)。据透露,当Richardson数量的更高值,磁场强度被认为是磁场强度的,而截至角速度,锥体的尺寸和纵横比相反。 U沟道的热壁有助于不同的传热不同,并且变化对于不同的相关参数具有重要意义。在最高的Richardson号码中,出口附近的热墙的平均诺下降约20%。磁场减少了有效的惯例,同时观察到底壁的平均泡沫数量的显着增量,其尺寸和旋转锥的速度较高。在旋转的情况下,尺寸效应在旋转的情况下,平均NU中的增量高达143%,最高尺寸具有最高速度的锥体,而该量仅为固定锥形的9.5%。通过锥体旋转获得平均NU中高达84%的增强,而宽高比促成10%的增量。执行用于评估U形腔的局部热表面的局部和平均泡沫的数量的多参数分析。表示参数空间中的数据所需的模式数为20,20和48,用于左,右侧和底部。

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