Turbulent convective heat transfer of CO2 in a helical tube at near-critical pressure

被引:86
|
作者
Xu, Jinliang [1 ]
Yang, Chuanyong [2 ]
Zhang, Wei [1 ]
Sun, Dongliang [1 ]
机构
[1] North China Elect Power Univ, Beijing Key Lab Multiphase Flow & Heat Transfer, Beijing 102206, Peoples R China
[2] Beijing Zhongan Qual Assessment Ctr, Elect Power Dept, Beijing 100022, Peoples R China
关键词
Helical tube; Centrifugal force; Buoyancy force; Heat transfer coefficient; SUPERCRITICAL PRESSURES;
D O I
10.1016/j.ijheatmasstransfer.2014.09.066
中图分类号
O414.1 [热力学];
学科分类号
摘要
Experiments of carbon dioxide flowing in a helical pipe at near-critical pressure were performed at constant heat flux boundary condition. The helical curvature diameter, helical pitch and tube diameter were 283.0 mm, 32.0 mm and 9.0 mm, respectively. The inlet Reynolds number was larger than 104 to ensure the turbulent flow. The renormalization group RNG k-epsilon model simulated the three-dimensional turbulent heat transfer of CO2 in the helical pipe. Much attention was paid to the combined effects of the centrifugal force and buoyancy force on the heat transfer. The RNG k-epsilon model reasonably simulates the complicated heat transfer. The wall temperatures near the tube exit were slightly over-predicted, due to the suppression of the increased wall temperatures near the tube exit by axial thermal conduction in the experiment. Before and near the pseudocritical temperature region, the varied physical properties caused significantly non-uniform velocity and temperature distributions over the tube cross section. The larger axial velocities appear at the outer-bottom location, and the higher wall temperatures appear at the inner-top location. Thus, the outer-bottom locations hold larger heat transfer coefficients. The turbulent kinetic energies are increased along the axial angles and larger in the inner-top region of the tube cross section. The effective viscosities are decreased along the axial angles, and the larger effective viscosities are shifted to the tube center with the axial flow development. Beyond the pseudocritical temperature region, the decreased buoyancy force suppressed the non-uniformity of the heat transfer coefficients over the tube circumference. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:748 / 758
页数:11
相关论文
共 50 条
  • [41] Convective gas cooling heat transfer and pressure drop characteristics of supercritical CO2/oil mixture in a minichannel tube
    Yun, Rin
    Hwang, Yunho
    Radermacher, Reinhard
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2007, 50 (23-24) : 4796 - 4804
  • [43] NUMERICAL INVESTIGATION ON TURBULENT HEAT TRANSFER OF SUPERCRITICAL CO2 IN A HELICALLY COILED TUBE
    Huang, Xiao-Rui
    Zhang, Zhen
    Yang, Xing-Tuan
    Jiang, Sheng-Yao
    Tu, Ji-Yuan
    PROCEEDINGS OF THE 26TH INTERNATIONAL CONFERENCE ON NUCLEAR ENGINEERING, 2018, VOL 8, 2018,
  • [44] Convective heat transfer in turbulent flow near a gap
    Chang, D.
    Tavoularis, S.
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2006, 128 (07): : 701 - 708
  • [45] A numerical investigation of turbulent convective heat transfer of supercritical CO2 in vertical mini tubes
    Rao, Zhenghua
    Liao, Shengming
    PROGRESS IN COMPUTATIONAL FLUID DYNAMICS, 2014, 14 (03): : 166 - 176
  • [46] A turbulent near-wall model on convective heat transfer from an abrupt expansion tube
    Chung, BTF
    Jia, S
    HEAT AND MASS TRANSFER, 1995, 31 (1-2): : 33 - 40
  • [47] HEAT TRANSFER IN A HORIZONTAL COILED PIPE IN A TRANSIENT REGIME AND AT A NEAR-CRITICAL PRESSURE OF A FLUID
    Kelbaliev, R. F.
    Aliev, R. Yu.
    Ismailov, M. B.
    JOURNAL OF ENGINEERING PHYSICS AND THERMOPHYSICS, 2008, 81 (05) : 930 - 934
  • [48] Heat Transfer Characteristics of CO2 at Supercritical Pressure in a Vertical Circular Tube
    Yoo, Tae Ho
    Bae, Yoon Yong
    Kim, Hwan Yeol
    TRANSACTIONS OF THE KOREAN SOCIETY OF MECHANICAL ENGINEERS B, 2011, 35 (01) : 23 - 31
  • [49] Heat Transfer Characteristics of Supercritical Pressure CO2 in a Vertical Smooth Tube
    Zhang L.
    Zhu B.
    Wu X.
    Xu J.
    Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 2019, 39 (15): : 4487 - 4496
  • [50] Investigation of turbulent convective heat transfer and pressure drop of TiO2/water nanofluid in circular tube
    Sajadi, A. R.
    Kazemi, M. H.
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2011, 38 (10) : 1474 - 1478