Fluid flow and heat transfer characteristics of spiral coiled tube: Effects of Reynolds number and curvature ratio

被引:24
作者
Yoo, Geun-jong [1 ]
Choi, Hoon-ki [1 ]
Dong, Wa-ryong [1 ]
机构
[1] Changwon Natl Univ, Sch Mechatron, Chang Won 641773, South Korea
来源
JOURNAL OF CENTRAL SOUTH UNIVERSITY OF TECHNOLOGY | 2012年 / 19卷 / 02期
关键词
spiral coiled tube heat exchanger; Reynolds number; curvature ratio; secondary flow; friction factor; Nusselt number; PRESSURE-DROP; WILSON PLOTS; EXCHANGERS; PERFORMANCE;
D O I
10.1007/s11771-012-1027-0
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Numerical analysis was performed to investigate flow and heat transfer characteristics in spiral coiled tube heat exchanger. Radius of curvature of the spiral coiled tube was gradually increased as total rotating angle reached 12 pi. As the varying radius of curvature became a dominant flow parameter, three-dimensional flow analysis was performed to this flow together with different Reynolds numbers while constant wall heat flux condition was set in thermal field. From the analysis, centrifugal force due to curvature effect is found to have significant role in behavior of pressure drop and heat transfer. The centrifugal force enhances pressure drop and heat transfer to have generally higher values in the spiral coiled tube than those in the straight tube. Even then, friction factor and Nusselt number are found to follow the proportionality with square root of the Dean number. Individual effect of flow parameters of Reynolds number and curvature ratio was investigated and effect of Reynolds number is found to be stronger than that of curvature effect.
引用
收藏
页码:471 / 476
页数:6
相关论文
共 50 条
[41]   Experimental heat transfer and flow characteristics in a spiral grooved tube with overlapped large/small twin twisted tapes [J].
Hong, Yuxiang ;
Du, Juan ;
Wang, Shuangfeng .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2017, 106 :1178-1190
[42]   Heat Transfer and Fluid Flow Characteristics for Newtonian and Non-Newtonian Fluids in a Tube-in-Tube Helical Coil Heat Exchanger [J].
Kushwaha, Naveen ;
Kumawat, Tara Chand ;
Nigam, Krishna Deo Prasad ;
Kumar, Vimal .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2020, 59 (09) :3972-3984
[43]   Groove geometry effects on turbulent heat transfer and fluid flow [J].
Abdulmajeed A. Ramadhan ;
Yaser T. Al Anii ;
Amer J. Shareef .
Heat and Mass Transfer, 2013, 49 :185-195
[44]   Heat transfer performance evaluation and prediction of correlation for turbulent flow through a tube with helical tape inserts at higher Reynolds number [J].
Muhammad Mostafa Kamal Bhuiya ;
M. S. U. Chowdhury ;
J. U. Ahamed ;
A. K. Azad .
Heat and Mass Transfer, 2016, 52 :1219-1230
[45]   Fluid flow and heat transfer analogy for laminar and turbulent flow inside spiral tubes [J].
Patil, Rahul Harishchandra .
INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2019, 139 :362-375
[46]   Numerical simulation study of flow and heat transfer characteristics of the spiral ribbed tube with elliptical dimples [J].
Xie, Shuai ;
Zhu, Xianglong ;
Zeng, Guoen ;
Luo, Yikai ;
Zou, Xing .
NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2025, 86 (03) :551-568
[47]   Fluid Flow and Heat Transfer Characteristics in Rectangular Microchannels [J].
Jiang, Jie ;
Hao, Yingli ;
Shi, Mingheng .
HEAT TRANSFER-ASIAN RESEARCH, 2008, 37 (04) :197-207
[48]   Numerical investigation of laminar heat transfer and fluid flow characteristics of Al2O3 nanofluid in a double tube heat exchanger [J].
Tavousi, Ebrahim ;
Perera, Noel ;
Flynn, Dominic ;
Hasan, Reaz .
INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2023, 33 (12) :3994-4014
[49]   Effects of helical obstacle on heat transfer and flow in a tube [J].
Fagr, Mohsen H. ;
Hasan, Hayder M. ;
Alsulaiei, Zaher M. A. .
PROGRESS IN NUCLEAR ENERGY, 2021, 137
[50]   Heat transfer and performance analysis of nanofluid flow in helically coiled tube heat exchangers [J].
Bahrehmand, S. ;
Abbassi, A. .
CHEMICAL ENGINEERING RESEARCH & DESIGN, 2016, 109 :628-637