Supersonic expansion and condensation characteristics of hydrogen gas under different temperature conditions

被引:0
|
作者
Duan, Xinyue [1 ]
Zhang, Zeyu [2 ]
Zhao, Ziyuan [2 ]
Liu, Yang [2 ]
Gong, Liang [1 ]
Cao, Xuewen [2 ]
Bian, Jiang [2 ]
机构
[1] China Univ Petr East China, Coll New Energy, Qingdao 266580, Peoples R China
[2] China Univ Petr East China, Coll Pipeline & Civil Engn, Qingdao 266580, Peoples R China
关键词
Hydrogen; Liquefaction; Supersonic; Condensation; Laval nozzle; Computational fluid dynamics; NATURAL-GAS; NUMERICAL-SIMULATION; GROWTH;
D O I
暂无
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
This paper introduced supersonic expansion liquefaction technology into the field of hydrogen liquefaction. The mathematical model for supersonic condensation of hydrogen gas in a Laval nozzle model was established. The supersonic expansion and condensation characteristics of hydrogen gas under different temperature conditions were investigated. The simulation results show that the droplet number rises rapidly from 0 at the nozzle throat as the inlet temperature increases, and the maximum droplet number generated is 1.339 x 1018 kg-1 at inlet temperature of 36.0 K. When hydrogen nucleation occurs, the droplet radius increases significantly and shows a positive correlation with the increase in the inlet temperature, and the maximum droplet radii are 6.667 x 10-8 m, 1.043 x 10-7 m, and 1.099 x 10-7 m when the inlet temperature is 36.0 K, 36.5 K, and 37.0 K, respectively. The maximum nucleation rate decreases with increasing inlet temperature, and the nucleation region of the Laval nozzle becomes wider. The liquefaction efficiency can be effectively improved by lowering the inlet temperature. This is because a lower inlet temperature provides more subcooling, which allows the hydrogen to reach the thermodynamic conditions required for large-scale condensation more quickly. (c) 2024 The Chemical Industry and Engineering Society of China, and Chemical Industry Press Co., Ltd. All rights reserved.
引用
收藏
页码:220 / 226
页数:7
相关论文
共 50 条
  • [41] Study on Temperature Rise Characteristics of GIS Disconnector Under Different Operating Conditions
    Zhao, Lihua
    Wang, Zelong
    Zhu, Haiyi
    Hong, Guo
    Ren, Junwen
    Long, Wei
    Huang, Xiaolong
    IEEE TRANSACTIONS ON POWER DELIVERY, 2021, 36 (06) : 3601 - 3610
  • [42] Characteristics of axial-type HTS motor under different temperature conditions
    Jung, HJ
    Nakamura, T
    Muta, I
    Hoshino, T
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2003, 13 (02) : 2201 - 2205
  • [43] Characteristics of high-speed hydrogen combustion under high-temperature conditions
    Hashimoto, T
    Ogasawara, H
    JOURNAL OF THE ATOMIC ENERGY SOCIETY OF JAPAN, 1999, 41 (11): : 1148 - 1156
  • [44] Combustion characteristics of hydrogen-enriched natural gas under elevated temperature and pressure
    Chang, Ming
    Miao, Hai-Yan
    Liu, Yan
    Lu, Lin
    Huang, Zuo-Hua
    Jiang, De-Ming
    Neiranji Xuebao/Transactions of CSICE (Chinese Society for Internal Combustion Engines), 2010, 28 (06): : 481 - 487
  • [45] YIELD OF GERMANIUM IN CONDENSATION PRODUCTS UNDER DIFFERENT CARBONIZING CONDITIONS
    MEDVEDEV, KP
    KHUDOKOR.NP
    AKIMOVA, LM
    COKE & CHEMISTRY USSR, 1973, (06): : 46 - 49
  • [46] Gas desorption and diffusion characteristics in different rank coals under different pressure-drop conditions
    Dang, Zheng
    Su, Xianbo
    Wang, Xiaoming
    Wang, Qian
    Hou, Shihui
    GEOENERGY SCIENCE AND ENGINEERING, 2023, 221
  • [47] Gas-Liquid Interaction Characteristics in a Multiphase Pump under Different Working Conditions
    Deng, Yuxuan
    Wang, Xiaodong
    Xu, Jing
    Li, Yanna
    Zhang, Yanli
    Kuang, Chunyan
    PROCESSES, 2022, 10 (10)
  • [48] Characteristics of gas generation from the pyrolysis of crude oil under the different geological conditions
    Huang, Yuxin
    Hu, Wangshui
    Sun, Yuanhui
    Li, Zhongcheng
    Zeng, Fancheng
    PETROLEUM SCIENCE AND TECHNOLOGY, 2018, 36 (24) : 2064 - 2069
  • [49] Thermohydraulic Efficiency of Heat Exchange of Gas Heat Carriers Under Different Temperature Conditions
    Pechenegov, Yu Ya
    CHEMICAL AND PETROLEUM ENGINEERING, 2022, 58 (3-4) : 272 - 276
  • [50] Thermohydraulic Efficiency of Heat Exchange of Gas Heat Carriers Under Different Temperature Conditions
    Yu. Ya. Pechenegov
    Chemical and Petroleum Engineering, 2022, 58 : 272 - 276