Optimization and analysis of a hydrogen liquefaction process integrated with the liquefied natural gas gasification and organic Rankine cycle

被引:36
|
作者
Yang, Jian [1 ]
Li, Yanzhong [1 ,2 ]
Tan, Hongbo [1 ]
Bian, Jiang [3 ]
Cao, Xuewen [3 ]
机构
[1] Xi An Jiao Tong Univ, Inst Refrigerat & Cryogen Engn, Xian 710049, Peoples R China
[2] State Key Lab Technol Space Cryogen Propellants, Beijing 100028, Peoples R China
[3] China Univ Petr East China, Coll Pipeline & Civil Engn, Qingdao 266580, Peoples R China
关键词
Hydrogen liquefaction; Organic Rankine cycle; LNG cold energy utilization; Genetic algorithm; Dual -pressure Joule -Brayton cycle; HIGH-EFFICIENCY; EXERGY; DESIGN;
D O I
10.1016/j.est.2022.106490
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Combination of the hydrogen pre-cooling and liquefied natural gas gasification processes is forward-looking in the hydrogen liquefaction industry. To enhance the cold energy utilization, a hydrogen liquefaction process integrated in conjunction with a liquefied natural gas gasification process assisted by an organic Rankine cycle is designed. Furthermore, a simplified refrigeration system incorporating a dual-pressure Joule-Brayton cycle is developed to provide efficient cryo-cooling for the hydrogen. A binary mixture consisting of ethylene and propane is preferred as the working fluid for the organic Rankine cycle when liquefied natural gas gasification pressure is 30 bar, which results in 2.2% and 15.5% improvement in the liquefied natural gas cold energy utilization compared to the organic Rankine cycle with the pure refrigeration as the working fluid and the hydrogen pre-cooling process without the organic Rankine cycle, respectively. In the proposed cryo-cooling process using two Joule-Brayton cascade cycles, the utilization rate of the input exergy reaches 48.84%. The exergy loss generated in the compressors and coolers accounts for approximately 66.2% of the total exergy loss. Therefore, they are regarded as the priority targets for improving the hydrogen liquefaction system. After the optimization of the proposed process using the genetic algorithm, optimal results are obtained with a specific energy consumption of 6.59 kWh/kgH2 and an exergy efficiency of 47.0%.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Optimization and exergy analysis of a cascade organic Rankine cycle integrated with liquefied natural gas regasification process
    Fakharzadeh, Mohsen
    Tahouni, Nassim
    Abbasi, Mojgan
    Panjeshahi, M. Hassan
    INTERNATIONAL JOURNAL OF REFRIGERATION, 2023, 156 : 186 - 197
  • [2] Multi-objective optimization of hydrogen liquefaction process integrated with liquefied natural gas system
    Bae, Ju-Eon
    Wilailak, Supaporn
    Yang, Jae-Hyeon
    Yun, Dong-Yeol
    Zahid, Umer
    Lee, Chul-Jin
    ENERGY CONVERSION AND MANAGEMENT, 2021, 231
  • [3] Design and Analysis of Hydrogen Production and Liquefaction Process by Using Liquefied Natural Gas
    Noh, Wonjun
    Park, Sihwan
    Lee, Inkyu
    KOREAN CHEMICAL ENGINEERING RESEARCH, 2021, 59 (02): : 200 - 208
  • [4] Analysis and optimization of cascade Rankine cycle for liquefied natural gas cold energy recovery
    Choi, In-Hwan
    Lee, Sangick
    Seo, Yutaek
    Chang, Daejun
    ENERGY, 2013, 61 : 179 - 195
  • [5] HEAT RECOVERY FROM A LIQUEFIED NATURAL GAS PRODUCTION PROCESS BY MEANS OF AN ORGANIC RANKINE CYCLE
    Ancona, M. A.
    Bianchi, M.
    Branchini, L.
    De Pascale, A.
    Melino, F.
    Ottaviano, S.
    Peretto, A.
    Scarponi, L. B.
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, 2018, VOL 9, 2018,
  • [6] Thermodynamic simulation and optimization of natural gas liquefaction cycle based on the common structure of organic rankine cycle
    Zhang, Qiang
    Zhang, Ningqi
    Zhu, Shengbo
    Heydarian, Dariush
    ENERGY, 2023, 264
  • [7] Thermodynamic analysis and optimization of a two-stage organic Rankine cycle for liquefied natural gas cryogenic exergy recovery
    Xue, Xiaodi
    Guo, Cong
    Du, Xiaoze
    Yang, Lijun
    Yang, Yongping
    ENERGY, 2015, 83 : 778 - 787
  • [8] A novel integrated structure of hydrogen purification and liquefaction using natural gas steam reforming, organic Rankine cycle and photovoltaic panels
    Ghorbani, Bahram
    Mehrpooya, Mehdi
    Amidpour, Majid
    CRYOGENICS, 2021, 119
  • [9] Exergoeconomic Analysis and Optimization of a Biomass Integrated Gasification Combined Cycle Based on Externally Fired Gas Turbine, Steam Rankine Cycle, Organic Rankine Cycle, and Absorption Refrigeration Cycle
    Ren, Jie
    Xu, Chen
    Qian, Zuoqin
    Huang, Weilong
    Wang, Baolin
    ENTROPY, 2024, 26 (06)
  • [10] Integrated hydrogen liquefaction process with steam methane reforming by using liquefied natural gas cooling system
    Yang, Jae-Hyeon
    Yoon, Younggak
    Ryu, Mincheol
    An, Su-Kyung
    Shin, Jisup
    Lee, Chul-Jin
    APPLIED ENERGY, 2019, 255