Influence of the liquid plug on the heat transfer performance of the ultra-thin flat heat pipe

被引:6
作者
Sheng, Yuxuan [1 ]
Chen, Yuhang [1 ]
Yu, Bowen [2 ]
Tian, Mei [2 ]
Jian, Qifei [1 ]
Yu, Xiao [2 ]
机构
[1] South China Univ Technol, Sch Mech & Automot Engn, Guangzhou 510641, Guangdong, Peoples R China
[2] Aviat Ind Corp China, Shenyang Aeroengine Res Inst, Shenyang 110015, Peoples R China
关键词
Ultra -thin flat heat pipe; Liquid plug; Visualization; Temperature gradient; Thermal resistance; VISUALIZATION EXPERIMENTS; FLOW; WICK;
D O I
10.1016/j.applthermaleng.2023.120599
中图分类号
O414.1 [热力学];
学科分类号
摘要
Under extreme size, the ultra-thin flat heat pipe will form a liquid plug connecting the upper and lower surfaces due to the size effect and surface tension, and the liquid plug occupies and separates the vapor flow path. To study the influence of the liquid plug on the heat and mass transfer performance of the ultra-thin flat heat pipe, the ultra-thin flat heat pipe with a thickness of 1 mm and a filling rate of 30% is theoretically analyzed and visualization research. The results show that the liquid plug divides the vapor flow path into two separate sections, obstructing the continuous vapor flow. And the two sections are evaporated and condensed, respectively. The liquid plug will affect the temperature gradient distribution. In the hot end bubble, the temperature gradient decreases in the region where the condensing phase change occurs and increases in the region adjacent to this. The liquid plug needs to be pushed from the evaporator to the condenser during the heating process, resulting in an increased start-up time for the ultra-thin flat heat pipe. At low heating power of 4 W and 8 W, the liquid plug leads to the wick of the evaporator being completely covered by the liquid plug or liquid film, and the thermal resistance is higher than that without the liquid plug. When the heating power rises to 12 W and 16 W, the evaporator enters the nucleated boiling stage, and the liquid plug will replenish the working fluid reflux in the wick, and the thermal resistance decreases compared to the case without the liquid plug.
引用
收藏
页数:11
相关论文
共 50 条
  • [31] An ultra-thin miniature loop heat pipe cooler for mobile electronics
    Zhou, Guohui
    Li, Ji
    Lv, Lucang
    APPLIED THERMAL ENGINEERING, 2016, 109 : 514 - 523
  • [32] Experimental study of a large-area ultra-thin flat heat pipe for solar collectors under different cooling conditions
    Zhong, Guisheng
    Tang, Yong
    Ding, Xinrui
    Rao, Longshi
    Chen, Gong
    Tang, Kairui
    Yuan, Wei
    Li, Zongtao
    RENEWABLE ENERGY, 2020, 149 : 1032 - 1039
  • [33] Study on heat transfer performance for loop heat pipe with circular flat evaporator
    Nguyen, Xuan Hung
    Sung, Byung Ho
    Choi, Jeehoon
    Ryoo, Seong Ryoul
    Ko, Han Seo
    Kim, Chulju
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2012, 55 (04) : 1304 - 1315
  • [34] Experimental studies on a novel thin flat heat pipe heat spreader
    Li, Ji
    Lv, Lucang
    APPLIED THERMAL ENGINEERING, 2016, 93 : 139 - 146
  • [35] Corner flow characteristics in a silicon-based ultra-thin flat-grooved heat pipe with double-end cooling
    Lv, Yitong
    Wang, Bo
    Gan, Zhihua
    Yu, Zitao
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2024, 198
  • [36] Experimental study on the thermal performance of ultra-thin flat heat pipes with novel multiscale striped composite wick structures
    Wang, Menghao
    Yang, Yinchuang
    Sun, Yiwei
    Li, Jian
    Hao, Menglong
    HELIYON, 2023, 9 (10)
  • [37] Design, fabrication and heat transfer performance study of a novel flexible flat heat pipe
    Yang, Xin
    Liu, Tengqing
    Yan, Wentao
    Wang, Shuangfeng
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2023, 142
  • [38] EXPERIMENTAL INVESTIGATION ON THERMAL PERFORMANCE OF ULTRA-THIN FLATTENED HEAT PIPE WITH MIDDLE HEATING FOR ELECTRONICS COOLING
    Liu, Tengqing
    He, Xuehao
    Zhang, Yaokang
    Wang, Shuangfeng
    HEAT TRANSFER RESEARCH, 2024, 55 (08) : 83 - 95
  • [39] Thermal performance experimental study of a serrated micro-groove ultra-thin aluminum flat heat pipe under different heater locations
    Ye, Guimin
    He, Guochong
    Sheng, Yuxuan
    Chen, Yuhang
    Jian, Qifei
    EXPERIMENTAL HEAT TRANSFER, 2025, 38 (01) : 1 - 16
  • [40] Capillary performance analysis of copper powder-fiber composite wick for ultra-thin heat pipe
    Niu, Junyi
    Xie, Ning
    Gao, Xuenong
    Fang, Yutang
    Zhang, Zhengguo
    HEAT AND MASS TRANSFER, 2021, 57 (06) : 949 - 960