努塞尔数
雷诺数
机械
鳍
欧拉数(物理)
压力降
传热
材料科学
热交换器
水力直径
物理
热力学
管(容器)
同心管换热器
传热系数
欧拉方程
湍流
反向欧拉法
复合材料
半隐式欧拉法
作者
Yongshi Feng,Cai Liang,Xin Wu,Hui Fang
出处
期刊:Journal of Thermophysics and Heat Transfer
[American Institute of Aeronautics and Astronautics]
日期:2022-09-26
卷期号:37 (2): 365-381
被引量:2
摘要
In this paper, the thermal-hydraulic characteristics of H-type finned tube banks are numerically investigated on the basis of a more accurate and convenient calculation method of fin efficiency for H-type fins. Experiments are performed to validate the numerical simulations. The variations of the Nusselt number, Euler number, and comprehensive factor [Formula: see text] with the Reynolds number and seven geometric parameters of H-type finned tube banks are obtained. The results indicate that the Nusselt number is proportional to the Reynolds number, the slit width, the fin thickness, and the longitudinal tube pitch; but, it is inversely proportional to the tube row number, the fin height, and the spanwise tube pitch. As the Reynolds number, the tube row number, the slit width, the fin pitch, and the spanwise tube pitch increase, the Euler number decreases. The [Formula: see text] factor rises with the increase of the slit width, and there exists an optimal tube row number ([Formula: see text]) at which the [Formula: see text] factor is the maximum. The correlations of the heat transfer (Nusselt number) and pressure drop (Euler number) of the 10-row H-type finned tube bank, which can nearly be considered to be fully developed, are presented. The numerical results and correlations have good applicability under different fluids and show good agreement with the experimental results and correlations.
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