Experimental investigation and quasi-steady modeling of nucleate boiling in mini-channel thermosyphons

被引:0
|
作者
Scheiff, V. [1 ,2 ]
Yada, S. [2 ]
Fdhila, R. Bel [1 ,2 ]
机构
[1] Malardalen Univ, Vasteras, Sweden
[2] Hitachi Energy Res, Forskargrand 7, SE-72178 Vasteras, Sweden
关键词
Thermosyphons; Evaporation; Boiling phenomenon; Power control; Quasi-steady state; HEAT-TRANSFER; LOOP; FLOW; PERFORMANCE;
D O I
10.1016/j.applthermaleng.2024.124033
中图分类号
O414.1 [热力学];
学科分类号
摘要
This study explores the understanding of two-phase cooling in thermosyphons using a quasi-steady state methodology during the boiling process. A thermosyphon is built as a passive loop to dissipate heat with an evaporator and a condenser. The evaporator is made of multiple mini channels (hydraulic diameter of 1.54 mm, length of 260 mm with 7 x 2 internal ports for a Confinement number of 0.55) with HFO-1336mzz(E) as the working fluid. Different heat loads (500 - 4000 W) are generated directly on the external contact surface of the evaporator to create all the different stages of boiling, from monophasic regime to steady nucleate boiling with the Onset of Nucleate Boiling transition. The temperature evolution inside the evaporator is measured at different heights and compared with a theoretical assumption of a quasi-steady state. A characteristic time depending on critical factors such as thermal mass is determined to model the temperature during a generated heat load. A good agreement between experimental measurements and the quasi-steady model is shown. Thus, this study emphasizes tracking the temperature evolution over time within the system. This dynamic perspective offers a nuanced understanding of the system's response to varying heat inputs, transient phases, and the onset of boiling. This characterized local behavior provides an original insight into the boiling appearing inside mini- channels. It is shown that boiling is initiated by nucleation at a few specific sites and then propagates up to a critical length due to high vapor generation, introducing a thermal lag during the boiling incipience.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] Flow boiling of ethanol/water binary mixture in a square mini-channel
    Vasileiadou, Parthenopi
    Sefiane, Khellil
    Karayiannis, Tassos G.
    Christy, John R. E.
    APPLIED THERMAL ENGINEERING, 2017, 127 : 1617 - 1626
  • [32] Research on the flow boiling and heat transfer of ethanol in a corrugated mini-channel
    Chang, Wei
    Zhang, Shusheng
    Tian, Shuai
    Huo, Mengjia
    MECHANICAL, MATERIALS AND MANUFACTURING ENGINEERING, PTS 1-3, 2011, 66-68 : 876 - 881
  • [33] Numerical investigation of critical heat flux during subcooled flow boiling in a vertical rectangular Mini-channel
    Chen, Yu-Jie
    Ling, Kong
    Jin, Shu-Qi
    Lu, Wei
    Yu, Bo
    Sun, Dongliang
    Zhang, Wei
    Tao, Wen-Quan
    APPLIED THERMAL ENGINEERING, 2023, 221
  • [34] NUMERICAL INVESTIGATION ON SATURATED BOILING FLOW AND HEAT TRANSFER OF MIXTURE REFRIGERANT IN A VERTICAL RECTANGULAR MINI-CHANNEL
    Chen, Jie
    Cai, Weihua
    Li, Shulei
    Ren, Yan
    Ma, Hongqiang
    Jiang, Yiqiang
    THERMAL SCIENCE, 2018, 22 : S617 - S627
  • [35] Subcooled flow boiling in a flat mini-channel under local heating
    Zaitsev, Dmitry
    Tkachenko, Egor
    Belosludtsev, Valentin
    Kreta, Alexey
    Kabov, Oleg
    ALL-RUSSIAN CONFERENCE XXXIV SIBERIAN THERMOPHYSICAL SEMINAR, DEDICATED TO THE 85TH ANNIVERSARY OF ACADEMICIAN A. K. REBROV, 2018, 1105
  • [36] Experimental study on the effect of orientation on flow boiling using R134a in a mini-channel evaporator
    Gao, Wuhuan
    Xu, Xianghua
    Liang, Xingang
    APPLIED THERMAL ENGINEERING, 2017, 121 : 963 - 973
  • [37] A NUMERICAL STUDY OF QUASI-NUCLEATE BOILING IN MINI- AND MICRO CHANNELS
    Zu, Y. Q.
    Yan, Y. Y.
    PROCEEDINGS OF THE 6TH INTERNATIONAL CONFERENCE ON NANOCHANNELS, MICROCHANNELS, AND MINICHANNELS, PTS A AND B, 2008, : 585 - 591
  • [38] Bubble Behavior and Heat Transfer in Quasi-Steady Pool Boiling in Microgravity
    Zhao, Jian-Fu
    Li, Jing
    Yan, Na
    Wang, Shuang-Feng
    MICROGRAVITY SCIENCE AND TECHNOLOGY, 2009, 21 : 175 - 183
  • [39] Bubble Behavior and Heat Transfer in Quasi-Steady Pool Boiling in Microgravity
    Jian-Fu Zhao
    Jing Li
    Na Yan
    Shuang-Feng Wang
    Microgravity Science and Technology, 2009, 21 : 175 - 183
  • [40] Transient investigation of mini-channel regenerative heat exchangers: Combined experimental and CFD approach
    Alfarawi, S.
    Al-Dadah, R.
    Mahmoud, S.
    APPLIED THERMAL ENGINEERING, 2017, 125 : 346 - 358