Analysis of coiled-tube heat exchangers to improve heat transfer rate with spirally corrugated wall

被引:124
|
作者
Zachar, A. [1 ]
机构
[1] Szent Istvan Univ, Dept Informat, H-2103 Godollo, Hungary
关键词
Spirally corrugated helical pipe; Heat transfer augmentation; Secondary flow; LAMINAR FORCED-CONVECTION; DIFFERENT PRANDTL NUMBERS; TURBULENT-FLOW; PRESSURE-DROP; TRANSFER ENHANCEMENT; MIXED CONVECTION; FRICTION FACTORS; HELICAL PIPE; TAPE INSERTS; FINITE PITCH;
D O I
10.1016/j.ijheatmasstransfer.2010.05.011
中图分类号
O414.1 [热力学];
学科分类号
摘要
Steady heat transfer enhancement has been studied in helically coiled-tube heat exchangers. The outer side of the wall of the heat exchanger contains a helical corrugation which makes a helical rib on the inner side of the tube wall to induce additional swirling motion of fluid particles. Numerical calculations have been carried out to examine different geometrical parameters and the impact of flow and thermal boundary conditions for the heat transfer rate in laminar and transitional flow regimes. Calculated results have been compared to existing empirical formulas and experimental tests to investigate the validity of the numerical results in case of common helical tube heat exchanger and additionally results of the numerical computation of corrugated straight tubes for laminar and transition flow have been validated with experimental tests available in the literature. Comparison of the flow and temperature fields in case of common helical tube and the coil with spirally corrugated wall configuration are discussed. Heat exchanger coils with helically corrugated wall configuration show 80-100% increase for the inner side heat transfer rate due to the additionally developed swirling motion while the relative pressure drop is 10-600% larger compared to the common helically coiled heat exchangers. New empirical correlation has been proposed for the fully developed inner side heat transfer prediction in case of helically corrugated wall configuration. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:3928 / 3939
页数:12
相关论文
共 50 条
  • [31] Numerical study on turbulent heat transfer and pressure drop of nanofluid in coiled tube-in-tube heat exchangers
    Aly, Wael I. A.
    ENERGY CONVERSION AND MANAGEMENT, 2014, 79 : 304 - 316
  • [32] Investigation and optimization of heat transfer performance of a spirally corrugated tube using the Taguchi method
    Yang, Peng
    Zhang, Hongwei
    Zheng, Yongyu
    Fang, Zhenjian
    Shi, Xueli
    Liu, Yingwen
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2021, 127
  • [33] EFFECTS OF GEOMETRICAL PARAMETERS ON HEAT TRANSFER ENHANCEMENT IN V-SPIRALLY CORRUGATED TUBE
    Chen, Xin-ji
    Wang, Feng-lei
    Yang, Chen
    Jin, Zhi-jiang
    Qian, Jin-yuan
    PROCEEDINGS OF ASME 2022 HEAT TRANSFER SUMMER CONFERENCE, HT2022, 2022,
  • [34] Investigation and optimization of heat transfer performance of a spirally corrugated tube using the Taguchi method
    Yang, Peng
    Zhang, Hongwei
    Zheng, Yongyu
    Fang, Zhenjian
    Shi, Xueli
    Liu, Yingwen
    International Communications in Heat and Mass Transfer, 2021, 127
  • [35] Investigation of a new tube-in-tube helical flow distributor design to improve temperature stratification inside hot water storage tanks operated with coiled-tube heat exchangers
    Zachar, Andras
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2013, 63 : 150 - 161
  • [36] Dynamic heat transfer characteristics of ice storage in smooth-tube and corrugated-tube heat exchangers
    Li, Chengjun
    Hou, Juan
    Wang, Yaran
    Wei, Shen
    Zhou, Pengkun
    He, Zhihao
    Wang, Yeming
    Zhang, Huan
    You, Shijun
    APPLIED THERMAL ENGINEERING, 2023, 223
  • [37] Heat transfer analysis of multi-row helically coiled tube heat exchangers for surface water-source heat pump
    Zhou, Chaohui
    Ni, Long
    Yao, Yang
    ENERGY, 2018, 163 : 1032 - 1049
  • [38] Dimensional analysis for the heat transfer characteristics in the corrugated channels of plate heat exchangers
    Lin, J. H.
    Huang, C. Y.
    Su, C. C.
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2007, 34 (03) : 304 - 312
  • [39] Heat transfer characteristics of a spirally coiled, finned-tube heat exchanger under dry-surface conditions
    Wongwises, S
    Naphon, P
    HEAT TRANSFER ENGINEERING, 2006, 27 (01) : 25 - 34
  • [40] Temperature Control by Heat Exchanger Incorporating with Vibration Type Coiled-tube
    Thaikua, A.
    Kittisupakorn, P.
    Tanthadiloke, S.
    INTERNATIONAL MULTICONFERENCE OF ENGINEERS AND COMPUTER SCIENTIST, IMECS 2012, VOL II, 2012, : 1357 - 1361