Performance analysis of the combined supercritical CO2 recompression and regenerative cycle used in waste heat recovery of marine gas turbine

被引:143
|
作者
Hou, Shengya [1 ]
Wu, Yuandan [1 ]
Zhou, Yaodong [1 ]
Yu, Lijun [1 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Mech Engn, Inst Thermal Energy Engn, Shanghai 200240, Peoples R China
关键词
Marine gas turbine waste heat recovery; Supercritical CO2 recompression cycle; Supercritical CO2 regenerative cycle; Combined cycle performance; Thermodynamic and economic optimization; SYSTEMS; EXERGY; ENERGY;
D O I
10.1016/j.enconman.2017.08.082
中图分类号
O414.1 [热力学];
学科分类号
摘要
With the aim to recover the marine gas turbine exhaust heat, and improve the ship part-load thermal efficiency, a combined cycle coupling supercritical CO2 recompression and regenerative cycle is proposed. The proposed system adopts modular design. The application process can choose the module according to the ship's need. The cycle parameters, including the output power, exergy efficiency, the heat exchanger area per unit power output (APR) and the levelized energy cost (LEC), have been analyzed and optimized. The multi-objective optimization method based on genetic algorithm is selected as the optimization method to obtain the optimum system parameter. From the viewpoints of the output power, compactness and economics, the obtained result reveals the superiority of the proposed cycle compared to the common supercritical CO2 recompression cycle, the common supercritical CO2 regenerative cycle and the combined cycle coupling two supercritical CO2 regenerative cycle. What's more, the proposed system can effectively improve the part-load performance of the ship. When the gas turbine fails, the combined cycle could meet 80% propulsion power of the ship by enabling the second combustion chamber, which could be used as the backup generator and improve the safety of the ship operation. The proposed cycle is suitable for marine gas turbine waste heat recovery, it has advantages of deep utilization of waste heat, high compactness and low cost.
引用
下载
收藏
页码:73 / 85
页数:13
相关论文
共 50 条
  • [41] Thermo-economic optimization and comparative analysis of different organic flash cycles for the supercritical CO2 recompression Brayton cycle waste heat recovery
    Tang, Junrong
    Li, Qibin
    Wang, Shukun
    Yu, Haoshui
    ENERGY, 2023, 278
  • [42] Thermo-economic optimization and comparative analysis of different organic flash cycles for the supercritical CO2 recompression Brayton cycle waste heat recovery
    Tang, Junrong
    Li, Qibin
    Wang, Shukun
    Yu, Haoshui
    ENERGY, 2023, 278
  • [43] Performance analysis on gas engine - Gas turbine combined cycle integrated with regenerative gas turbine
    Tsuji, Tadashi
    PROCEEDINGS OF THE ASME TURBO EXPO, VOL 3, 2007, : 57 - 64
  • [44] Thermodynamic analysis and multi-objective optimization of a waste heat recovery system with a combined supercritical/transcritical CO2 cycle
    Qin, Lei
    Xie, Gongnan
    Ma, Yuan
    Li, Shulei
    ENERGY, 2023, 265
  • [45] Second law analysis of supercritical CO2 recompression Brayton cycle
    Sarkar, Jahar
    ENERGY, 2009, 34 (09) : 1172 - 1178
  • [46] Size optimization of heat exchanger and thermoeconomic assessment for supercritical CO2 recompression Brayton cycle applied in marine
    Du, Yadong
    Hu, Chenxing
    Yang, Ce
    Wang, Haimei
    Dong, Wuqiang
    Energy, 2022, 239
  • [47] Size optimization of heat exchanger and thermoeconomic assessment for supercritical CO2 recompression Brayton cycle applied in marine
    Du, Yadong
    Hu, Chenxing
    Yang, Ce
    Wang, Haimei
    Dong, Wuqiang
    ENERGY, 2022, 239
  • [48] Combined Supercritical CO2 Brayton Cycle and Organic Rankine Cycle for Exhaust Heat Recovery
    Carapellucci, Roberto
    Di Battista, Davide
    JOURNAL OF ENERGY RESOURCES TECHNOLOGY-TRANSACTIONS OF THE ASME, 2024, 146 (06):
  • [49] Analysis of a Dual Recuperated Dual Expansion Supercritical CO2 Cycle for Waste Heat Recovery Applications
    Syed J. Hoque
    Pramod Kumar
    Transactions of the Indian National Academy of Engineering, 2021, 6 (2) : 439 - 459
  • [50] A combined cooling and power transcritical CO2 cycle for waste heat recovery from gas turbines
    Sabzpoushan, S.
    Morad, M. R.
    Rahnama, H. Ebrahimi
    THERMAL SCIENCE AND ENGINEERING PROGRESS, 2022, 34