Effects of spiral start number and depth ratio of corrugated tube on flow and heat transfer characteristics in turbulent flow region

被引:0
|
作者
V. Kongkaitpaiboon
P. Promthaisong
V. Chuwattanakul
K. Wongcharee
S. Eiamsa-ard
机构
[1] Mahanakorn University of Technology,Department of Mechanical Engineering, Faculty of Engineering
[2] King Mongkut’s Institute of Technology Ladkrabang,Department of Food Engineering, Faculty of Engineering
[3] Mahanakorn University of Technology,Department of Chemical Engineering, Faculty of Engineering
来源
Journal of Mechanical Science and Technology | 2019年 / 33卷
关键词
Corrugated tube; Heat transfer; Spirally-corrugated tube; Shell and tube heat exchanger;
D O I
暂无
中图分类号
学科分类号
摘要
Influence of spirally-corrugated tubes on heat transfer (Nu), pressure loss (f) and thermal enhancement factor (TEF) characteristics was numerically investigated. The physical models of spirally-corrugated tubes and also a straight circular tube were built for the comparative study. The predictions were performed for the spirally-corrugated tubes with spiral start numbers (N) of 2, 3, 4 and 5 and depth ratios (DR = e/D) of 0.02, 0.04, 0.06, 0.08, 0.1, 0.12, 0.14 and 0.16 at Reynolds numbers of 5000, 8000, 14000 and 20000. The numerical results show that the spiral corrugated tubes created two types of flow structures: main swirl flows (appear around the core) and secondary swirl flows (appear near tube wall) which facilitate heat transfer between the fluid and the tube walls. The overall heat transfer depends on the competition between two effects: the positive effect of the stronger swirl intensity by increasing start number and the negative effect of the difficulty of fluid transfer into grooves by increasing depth ratio. For the investigated range, the corrugated tubes yield Nusselt numbers and thermal performance factors varying from 0.82 to 2.16 times and 0.66–1.2 times of the straight circular tube, respectively. The highest thermal enhancement factor (TEF) of 1.2 is achieved by using the tube with spiral start number of 4 having moderate depth ratio of 0.08 at Re = 5000.
引用
收藏
页码:4005 / 4012
页数:7
相关论文
共 50 条
  • [31] Heat transfer and flow characteristics in a channel with one corrugated wall
    GAO XiaoMing
    LI WeiYi
    WANG JianSheng
    Science China(Technological Sciences), 2014, (11) : 2177 - 2189
  • [32] Heat transfer and flow characteristics in a channel with one corrugated wall
    XiaoMing Gao
    WeiYi Li
    JianSheng Wang
    Science China Technological Sciences, 2014, 57 : 2177 - 2189
  • [33] Heat transfer characteristics of pulsated turbulent pipe flow
    M. A. Habib
    S. A. M. Said
    A. A. Al-Farayedhi
    S. A. Al-Dini
    A. Asghar
    S. A. Gbadebo
    Heat and Mass Transfer, 1999, 34 : 413 - 421
  • [34] Heat transfer characteristics of turbulent flow in periodic channels
    Mostofizadeh, AR
    Molki, M
    IRANIAN JOURNAL OF SCIENCE AND TECHNOLOGY, 2000, 24 (03): : 299 - 308
  • [35] Analysis of Heat Transfer and Flow Characteristics of a Helically Coiled Tube with Twisted Elliptical in a Low Reynolds Number Flow
    Wang, Jun
    Liu, Yaohui
    Ding, Ruoxi
    PROCESSES, 2022, 10 (11)
  • [36] CFD analysis of flow and heat transfer of turbulent pulsating flow in a tube in rolling motion
    Yan, B. H.
    Gu, H. Y.
    ANNALS OF NUCLEAR ENERGY, 2011, 38 (09) : 1833 - 1841
  • [37] Flow and heat transfer characteristics inside a wavy tube
    Shohel Mahmud
    A. Sadrul Islam
    C. Feroz
    Heat and Mass Transfer, 2003, 39 : 387 - 393
  • [38] Effects of the shape of tube and flow field on fluid flow and heat transfer
    Zhang, Liang
    Tian, Linchao
    Zhang, Anlong
    Chen, Hemin
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2020, 117 (117)
  • [39] Analytical study of heat transfer for liquid metals in a turbulent tube flow
    Shen, Yaou
    Peng, Shinian
    Yan, Mingyu
    Zhang, Yu
    Deng, Jian
    Yu, Hongxing
    Huang, Daishun
    NUCLEAR ENGINEERING AND DESIGN, 2021, 373
  • [40] Heat transfer characteristics of air cross-flow for in-line arrangement of spirally corrugated tube and smooth tube bundles
    陆国栋
    周强泰
    田茂诚
    程林
    俞小莉
    Journal of Zhejiang University Science A(Science in Engineering), 2005, (07) : 670 - 675