Modelling of heat and mass transfer in a two-phase closed thermosyphon

被引:1
|
作者
Lataoui, Zied [1 ]
Benselama, Adel M. [2 ]
机构
[1] Univ Monastir, Ecole Natl Ingenieurs Monastir, Lab Etud Syst Therm & Energet, Ave Ibn El Jazzar, Monastir 5019, Tunisia
[2] Univ Poitiers, CNRS ENSMA, Inst Pprime FTC COST, 1 Ave Clement Ader, F-86961 Futuroscope, France
关键词
Thermosyphon; Two-phase flow; Volume of fluid; Phase change; Heat transfer performance; INCLINATION ANGLE; FILL RATIO; THERMAL PERFORMANCE; SOLAR COLLECTORS; PIPE; WATER; CONDENSATION; SIMULATION; PARAMETERS;
D O I
10.1016/j.energy.2024.133851
中图分类号
O414.1 [热力学];
学科分类号
摘要
A CFD model is developed to simulate the heat and mass transfer inside a two-phase closed thermosyphon. Based on the "volume of fluid" method, governing equations are solved using the OpenFOAM utilities. The involved complex phenomena like evaporation and condensation occurring in such a device and associated with twophase flow are investigated. A noticeable novelty of this model is that neither artificial, ad hoc nor specific nucleation means is needed to trigger evaporation along the heat source walls; an altogether unique phase change model is valid and uniformly used within the flow occurring inside the thermosyphon. The numerical results are compared to well-documented experimental data showing very good agreement: maximum deviation of 1 % and 2.7 % are obtained for mean temperature and condenser pressure, respectively. The axial thermal resistance values are also compared with the experimental data. Fair agreement was obtained in the overall equivalent resistance (26.4-32.5 %) and in the evaporator axial resistance (25-27.5 %). In addition, the evaporator slug flow pattern is successfully captured by the model. The liquid fraction distribution inside the thermosyphon is analyzed as time evolves. It shows, in particular, that bubble activation and growth have the same trend as previous experimental visualization results, namely denser activation close to the meniscus. The velocity distribution shows also recirculation in the top of the condenser zones and above the liquid meniscus in the evaporator zone, too, as a direct effect of buoyancy and natural convection. As activated bubbles rise and coalesce into larger bubbles, the occurrence of a slug flow is observed. Furthermore, the tested model had shown its efficiency to predict the main fluid flow and thermal characteristics of a thermosyphon when pseudo-steady state is reached.
引用
收藏
页数:16
相关论文
共 50 条
  • [11] Boiling and condensation heat transfer of inclined two-phase closed thermosyphon with various filling ratios
    Kim, Yeonghwan
    Shin, Dong Hwan
    Kim, Jin Sub
    You, Seung M.
    Lee, Jungho
    APPLIED THERMAL ENGINEERING, 2018, 145 : 328 - 342
  • [12] Experimental study on the startup and heat transfer behaviors of a two-phase closed thermosyphon at subzero temperatures
    Zhang, Mingyi
    Yan, Zhongrui
    Pei, Wansheng
    Lai, Yuanming
    Qin, Yinghong
    Yu, Fan
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2022, 190
  • [13] Enhancing heat transfer performance of a two-phase closed thermosyphon using a polymer-coated hydrophobic condenser
    Seo, Donghyun
    Park, Jinsoo
    Shim, Jaehwan
    Nam, Jeonghyeon
    Shin, Dong Hwan
    Nam, Youngsuk
    Lee, Jungho
    APPLIED THERMAL ENGINEERING, 2021, 196
  • [14] Numerical Investigation of the Two-Phase Closed Thermosyphon Operating with Non-Uniform Heat Flux Profiles
    Wang, Zhao
    Turan, Ali
    Craft, Timothy
    ENERGIES, 2023, 16 (13)
  • [15] Numerical investigation of surface wettability effect on two-phase closed thermosyphon
    Lin, Chia-Wei
    Hsu, Hua-Yi
    Kumar, Ranjith
    APPLIED THERMAL ENGINEERING, 2024, 247
  • [16] Heat transfer performance of two-phase closed thermosyphon with oxidized CNT/water nanofluids
    Heris, Saeed Zeinali
    Fallahi, Marjan
    Shanbedi, Mehdi
    Amiri, Ahmad
    HEAT AND MASS TRANSFER, 2016, 52 (01) : 85 - 93
  • [17] Visualization and heat transfer comparative analysis of two phase closed thermosyphon
    Liu, Hao
    Gan, Wang
    Yao, Huicong
    Wang, Xiaoyuan
    Wang, Yinfeng
    Zhu, Yuezhao
    APPLIED THERMAL ENGINEERING, 2022, 217
  • [18] Experimental investigations of heat transfer from an internally finned two phase closed thermosyphon
    Naresh, Y.
    Balaji, C.
    APPLIED THERMAL ENGINEERING, 2017, 112 : 1658 - 1666
  • [19] Numerical investigation of the heat and mass transfer performance of a two-phase closed thermosiphon based on a modified CFD model
    Yao, Huicong
    Yue, Chaoyu
    Wang, Yinfeng
    Chen, Haijun
    Zhu, Yuezhao
    CASE STUDIES IN THERMAL ENGINEERING, 2021, 26
  • [20] Heat transfer characteristics and operational visualization of two-phase loop thermosyphon
    Zhang, Tao
    Qu, Jian
    Hua, Yu
    APPLIED THERMAL ENGINEERING, 2023, 228