Heat and Mass Transfer Characteristics of Alkali Metals in a Combined Wick of High-Temperature Heat Pipe

被引:4
|
作者
Yu, Ping [1 ]
Huang, Chuanhui [1 ]
Liu, Lei [1 ]
Guo, Huafeng [1 ]
Liu, Chengqiang [1 ]
机构
[1] Xuzhou Univ Technol, Coll Mech & Elect Engn, Xuzhou, Jiangsu, Peoples R China
来源
关键词
Porous medium; heat pipe; numerical simulation; combined wick;
D O I
10.32604/fdmp.2020.06528
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
To study the heat and mass transfer characteristics of alkali metals in a combined porous wick in high-temperature heat pipes, a three-dimensional (3-D) numerical model is constructed by using the finite volume method, Darcy's theory, and the theory of local thermal equilibrium. The research finds that the pressure drop of fluids flowing through a combined porous wick exhibits an increasing trend with increasing flow velocity at the inlet and with decreasing permeability of the porous media; a combined porous wick of lower porosity and permeability and larger fluid velocity at the inlet is found to have a less uniformly distributed fluid velocity; the different temperatures of the fluid at the inlet mainly influence the inlet section of the computational model, while having negligible effect thereon in the axial direction (this embodies the thermal homogeneity of such heat pipes). The result reveals that the temperature change in fluids at the inlet does not significantly affect the overall temperature distribution in a combined wick.
引用
收藏
页码:267 / 280
页数:14
相关论文
共 50 条
  • [41] Evaporative heat transfer model of a loop heat pipe with bidisperse wick structure
    Lin, Fang-Chou
    Liu, Bing-Han
    Huang, Chi-Ting
    Chen, Yau-Ming
    [J]. INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2011, 54 (21-22) : 4621 - 4629
  • [42] A device and technique to measure the heat transfer limit of a planar heat pipe wick
    Williams, RR
    Harris, DK
    [J]. EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2006, 30 (03) : 277 - 284
  • [43] Study on adaptive heat transfer performance of high temperature heat pipe
    Ji, Yang
    Yuan, Dazhong
    Che, Zhanxun
    Zhao, Jie
    Tang, Dawei
    Zhang, Zhuohua
    [J]. ANNALS OF NUCLEAR ENERGY, 2021, 163
  • [44] Numerical Modeling of Heat and Mass Transfer in a Low-Temperature Heat Pipe
    G. V. Kuznetzov
    A. E. Sitnikov
    [J]. Journal of Engineering Physics and Thermophysics, 2002, 75 (4) : 840 - 848
  • [45] Heat transfer characteristics of ultra-thin flat heat pipe with nano-modified porous wick
    纳米修饰吸液芯超薄平板热管的传热特性
    [J]. Xu, Jinliang (xjl@ncepu.edu.cn), 1600, Materials China (68):
  • [46] Heat resistant coatings on high-temperature metals
    Pavlovskii, VA
    [J]. PROTECTION OF METALS, 2004, 40 (04): : 358 - 361
  • [47] Heat Resistant Coatings on High-Temperature Metals
    V. A. Pavlovskii
    [J]. Protection of Metals, 2004, 40 : 358 - 361
  • [48] Heat and Mass Transfer in Ceramic Lattices During High-Temperature Oxidation
    Aronovici, Maud
    Bianchi, Giovanni
    Ferrari, Luca
    Barbato, Maurizio
    Gianella, Sandro
    Scocchi, Giulio
    Ortona, Alberto
    [J]. JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2015, 98 (08) : 2625 - 2633
  • [49] Modeling of Heat Mass Transfer in High-Temperature Reacting Flows with Combustion
    Askarova, A. S.
    Bolegenova, S. A.
    Bolegenova, S. A.
    Maximov, V. Yu.
    Beketayeva, M. T.
    [J]. HIGH TEMPERATURE, 2018, 56 (05) : 738 - 743
  • [50] Modeling of Heat Mass Transfer in High-Temperature Reacting Flows with Combustion
    A. S. Askarova
    S. A. Bolegenova
    S. A. Bolegenova
    V. Yu. Maximov
    M. T. Beketayeva
    [J]. High Temperature, 2018, 56 : 738 - 743