努塞尔数
对流换热
对流
机械
传热
薄膜温度
丘吉尔-伯恩斯坦方程
热力学
强迫对流
自然对流和联合对流
温度梯度
材料科学
传热系数
速度梯度
自然对流
物理
气象学
湍流
雷诺数
作者
Hui Xiao,Zhimin Dong,Rui Long,Kun Yang,Yuan Fang
出处
期刊:Energies
[Multidisciplinary Digital Publishing Institute]
日期:2019-11-01
卷期号:12 (21): 4175-4175
被引量:11
摘要
This paper explores the mechanism of convective heat transfer enhancement in a new perspective. In this paper, a new parameter called heat convection velocity is proposed based on the field synergy principle. It is defined as the velocity projection on the temperature gradient vector and reflects the magnitude of the velocity component that contributes to heat convection. Three typical cases are taken into consideration to investigate the influence factors of Nusselt number theoretically. The results indicate that the Nusselt number can be enhanced by increasing the mean heat convection velocity and the dimensionless mean temperature difference. Through theoretical analysis, three suggestions are found for designing heat transfer enhancement components: (a) the overall synergetic effect should be improved; (b) the fluid with lower temperature gradient should be guided to the region where the temperature gradient is higher; (c) temperature distribution should be an interphase distribution of hot and cold fluid. Besides, the heat convection velocity is used to investigate the mechanism of convective heat transfer in the smooth tube. It is found that the increase of Nusselt number is due to the increase of heat convection velocity. In addition, according to design suggestions, a new insert is invented and inserted in the circular tube. With heat convection velocity analysis, it is found that there is much potential of increasing heat convection velocity for enhancing the convective heat transfer in the circular tube.
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