Experimental investigation on the heat transfer characteristics of loop heat pipe with carbon spheres modified nickel wick

被引:0
|
作者
Ma, Zhengyuan [1 ]
Tan, Yubo [1 ]
Zhang, Zikang [1 ]
Liu, Wei [1 ]
Liu, Zhichun [1 ]
机构
[1] Huazhong Univ Sci & Technol, Sch Energy & Power Engn, Wuhan 430074, Peoples R China
基金
中国国家自然科学基金;
关键词
Loop heat pipe; Carbon spheres modified nickel wick; Surface modification; Hydrophilic functional groups; EVAPORATOR; PERFORMANCE; TESTS;
D O I
10.1016/j.applthermaleng.2024.123956
中图分类号
O414.1 [热力学];
学科分类号
摘要
Loop heat pipe (LHP), as passive heat transfer system, is one of the methods for thermal management of electronic components. To improve the heat transfer performance of LHPs, there is a pressing need for highperformance wicks. In this study, the hydrothermal carbonization method was used to fabricate a carbon spheres modified nickel wick (CSs-Ni-Wick) based on a biporous wick. The physical characteristics of the CSs-NiWick were then analyzed experimentally. This unique CSs-Ni-Wick combined the advantages of large pores for reducing flow resistance and small pores for enhancing capillarity. Furthermore, the CSs-Ni-Wick surface exhibited a higher concentration of hydrophilic functional groups, effectively facilitating the replenishment of subcooled liquid to the vapor-liquid interface and preventing wick drying. Based on these advantages, a flat plate LHP was constructed and subjected to multiple tests in horizontal condition to evaluate the heat transfer performance of the CSs-Ni-Wick. Experimental results revealed that the LHP achieved a maximum heat load of 140 W (20 W/cm2) and a minimum thermal resistance of 0.357 degrees C/W, while maintaining the heat source temperature below 85degree celsius. Additionally, the implementation of a micro-carbonized surface increased the density of vaporization cores, facilitating faster vapor nucleation, particularly at low heat loads. This enables vapor to be transferred more quickly from the evaporator to the condenser, leading to a smooth startup in the brass LHP using methanol as the working fluid, characterized by the absence of temperature overshoot or oscillation.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Heat transfer characteristics of ultra-thin flat heat pipe with nano-modified porous wick
    Liu C.
    Shang W.
    Zhao J.
    Ji X.
    Wu X.
    Xu J.
    Xu, Jinliang (xjl@ncepu.edu.cn), 1600, Materials China (68): : 4508 - 4516
  • [32] EXPERIMENTAL INVESTIGATION OF MICRO/NANO HEAT PIPE WICK STRUCTURES
    de Bock, H. Peter J.
    Varanasi, Kripa
    Chamarthy, Pramod
    Deng, Tao
    Kulkarni, Ambarish
    Rush, Brian M.
    Russ, Boris A.
    Weaver, Stanton E.
    Gerner, Frank M.
    IMECE 2008: HEAT TRANSFER, FLUID FLOWS, AND THERMAL SYSTEMS, VOL 10, PTS A-C, 2009, : 991 - 996
  • [33] INVESTIGATION OF HEAT TRANSFER IN EVAPORATOR OF MICROCHANNEL LOOP HEAT PIPE
    Yakomaskin, Alexander A.
    Afanasiev, Valery N.
    Zubkov, Nikolay N.
    Morskoy, Dmitry N.
    PROCEEDINGS OF THE ASME SUMMER HEAT TRANSFER CONFERENCE, 2012, VOL 2, 2012, : 539 - 546
  • [34] Investigation of Heat Transfer in Evaporator of Microchannel Loop Heat Pipe
    Yakomaskin, Alexander A.
    Afanasiev, Valery N.
    Zubkov, Nikolay N.
    Morskoy, Dmitry N.
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2013, 135 (10):
  • [35] Experimental investigation on the sintered wick of the anti-gravity loop-shaped heat pipe
    Li, Hui
    Wang, Xingang
    Liu, Zhongshan
    Tang, Yong
    Yuan, Wei
    Zhou, Rui
    Li, Yuji
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2015, 68 : 689 - 696
  • [36] Experimental investigation on performances and characteristics of nitrogen-charged cryogenic loop heat pipe with wick-mounted condenser
    Cho, Hyokjin
    Jin, Lingxue
    Jeong, Sangkwon
    CRYOGENICS, 2020, 105
  • [37] ANALYSIS OF HEAT TRANSFER LIMITATION OF WICK HEAT PIPE
    Nemec, Patrik
    Caja, Alexander
    Lenhard, Richard
    EXPERIMENTAL FLUID MECHANICS 2009, PROCEEDINGS OF THE INTERNATIONAL CONFERENCE, 2009, : 230 - 235
  • [38] EXPERIMENTAL INVESTIGATION OF THE THERMAL PERFORMANCE OF MESH WICK HEAT PIPE
    Gupta, Naveen Kumar
    Tiwari, Arun Kumar
    Ghosh, Subrata Kumar
    HEAT TRANSFER RESEARCH, 2018, 49 (18) : 1793 - 1811
  • [39] Experimental study on the heat transfer performance of a loop heat pipe
    Wang, Yi-Wei
    Cen, Ji-Wen
    Zhu, Xiong
    Jiang, Fang-Ming
    Liu, Pei
    Guangdianzi Jiguang/Journal of Optoelectronics Laser, 2012, 23 (08): : 1458 - 1462
  • [40] Operational characteristics of flat type loop heat pipe with biporous wick
    Liu, ZhiChun
    Li, Huan
    Chen, BinBin
    Yang, JinGuo
    Liu, Wei
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2012, 58 : 180 - 185