Performance evaluation of supercritical CO2 Brayton cycle with two-stage compression and intercooling

被引:0
|
作者
Jiang, Jiahui [1 ]
Yu, Yongqiang [1 ]
Zhao, Yuanyang [1 ]
Liu, Guangbin [1 ]
Yang, Qichao [1 ]
Liu, Yunxia [1 ]
Li, Liansheng [1 ]
机构
[1] Qingdao Univ Sci & Technol, Coll Electromech Engn, Qingdao 266061, Peoples R China
基金
中国国家自然科学基金;
关键词
Supercritical carbon dioxide (sCO2 ); Two-stage compression; Pinch point; Intercooling; Brayton cycle; CARBON-DIOXIDE CYCLE; POWER CYCLE; HEAT-EXCHANGERS; OPTIMIZATION; DESIGN;
D O I
10.1016/j.csite.2024.105503
中图分类号
O414.1 [热力学];
学科分类号
摘要
Due to its small structures and high energy efficiency, the Brayton cycle using supercritical carbon dioxide (sCO2) can be implemented in various energy industries. The simulation model for a sCO2 recompression Brayton (RB) system with a two-stage compression and intercooling process (TCIP) is developed. At the design working conditions, there are minimum and optimum split ratios for the sCO2 RB with TCIP cycle. The sCO2 RB with TCIP cycle has a broader range of split ratios compared to the RB cycle. The sCO2 RB with TCIP cycle can achieve a minimum split ratio of 0.315, compared to 0.36 for the sCO2 RB cycle. The maximum efficiency of the sCO2 RB with TCIP cycle is 50.95 %, which surpasses the efficiency of the sCO2 RB cycle by 3.14 %. There exists an optimal value for the first-stage pressure ratio because the maximum efficiency of the sCO2 RB with the TCIP system tends to increase and then decrease with the increase in the first-stage pressure ratio. The pressure ratio of 1.1 for the first-stage compressor, corresponding to an interstage pressure of 8.25 MPa, maximizes the efficiency of the sCO2 RB with the TCIP cycle. The results can be used to further explore the applicability of sCO2 RB with TCIP.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] A Novel Solar Receiver for Supercritical CO2 Brayton Cycle
    Teng, Liang
    Xuan, Yimin
    INNOVATIVE SOLUTIONS FOR ENERGY TRANSITIONS, 2019, 158 : 339 - 344
  • [22] Thermal analysis of a main compression intercooling supercritical CO2 cycle cascaded with flash tank enhanced compression-absorption refrigeration cycle
    Khan, Tausif Elahi
    Zaman, Masruf
    Ehsan, Mmonjurul
    Khan, Yasin
    ENERGY CONVERSION AND MANAGEMENT-X, 2025, 25
  • [23] DESIGN METHODOLOGY OF SUPERCRITICAL CO2 BRAYTON CYCLE TURBOMACHINERIES
    Lee, Jekyoung
    Lee, Jeong Ik
    Ahn, Yoonhan
    Yoon, Hojoon
    PROCEEDINGS OF THE ASME TURBO EXPO 2012, VOL 5, 2012, : 975 - 983
  • [24] Working Fluid Model for Supercritical Co2 Brayton Cycle
    Milewski, Jaroslaw
    Wolowicz, Marcin
    Ziembicki, Gabriel
    INTERNATIONAL CONFERENCE OF NUMERICAL ANALYSIS AND APPLIED MATHEMATICS (ICNAAM 2017), 2018, 1978
  • [25] Researchers Develop Supercritical CO2 Brayton Cycle Turbines
    不详
    POWER, 2011, 155 (05) : 12 - +
  • [26] Research on the Development of the Supercritical CO2 Dual Brayton Cycle
    Baik, Young-Jin
    Na, Sun Ik
    Cho, Junhyun
    Shin, Hyung-Ki
    Lee, Gilbong
    TRANSACTIONS OF THE KOREAN SOCIETY OF MECHANICAL ENGINEERS B, 2016, 40 (10) : 673 - 679
  • [27] Thermodynamic evaluation of two-stage refrigeration cycle with deep intercooling and series-parallel integration of thermal and mechanical compression
    Wang, Ruiting
    Li, Zeyu
    Peng, Zeyu
    Huang, Caoxuheng
    Ye, Zhihao
    Yu, Jianting
    INTERNATIONAL JOURNAL OF GREEN ENERGY, 2023, 20 (14) : 1628 - 1648
  • [28] THERMAL ENERGY STORAGE FOR THE SUPERCRITICAL CO2 BRAYTON CYCLE
    Bueno, P. C.
    Bates, L.
    Anderson, R.
    Bindra, H.
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2015, VOL 9, 2015,
  • [29] Thermal Hydraulic Performance Analysis of PCHE Precooler for Supercritical CO2 Brayton Cycle
    Lu, Mingjian
    Yan, Xinping
    Sun, Yuwei
    Wang, Jian
    Gong, Zikang
    2019 5TH INTERNATIONAL CONFERENCE ON TRANSPORTATION INFORMATION AND SAFETY (ICTIS 2019), 2019, : 537 - 541
  • [30] A comprehensive evaluation of the effect of different control valves on the dynamic performance of a recompression supercritical CO2 Brayton cycle
    Bian, Xingyan
    Wang, Xuan
    Wang, Rui
    Cai, Jinwen
    Tian, Hua
    Shu, Gequn
    Lin, Zhimin
    Yu, Xiangyu
    Shi, Lingfeng
    ENERGY, 2022, 248