Second law analysis of supercritical CO2 recompression Brayton cycle

被引:249
|
作者
Sarkar, Jahar [1 ]
机构
[1] Banaras Hindu Univ, Inst Technol, Dept Mech Engn, Varanasi 221005, Uttar Pradesh, India
关键词
Nuclear reactor; S-CO2; cycle; Exergy analysis; Pressure ratio; Optimization; Irreversibility; Second law efficiency; EXERGY ANALYSIS; REACTOR; TEMPERATURE; ENERGY;
D O I
10.1016/j.energy.2009.04.030
中图分类号
O414.1 [热力学];
学科分类号
摘要
In the present study, exergetic analyses and optimization of S-CO2 recompression cycle have been performed to study the effect of operating parameters on the optimum pressure ratio, energetic and exergetic efficiencies and component irreversibilities. Effect of isentropic efficiency, recuperator effectiveness and component pressure drop on the second law efficiency is presented as well. Results show that the effect of minimum operating temperature on the optimum pressure ratio and cycle efficiencies is more predominant than the maximum operating temperature, whereas the effect of maximum cycle pressure is significant only for lower values and the optimum pressure ratio leads to near critical minimum cycle pressure. Result shows that the irreversibilities of heat exchangers are significantly more compared to that of turbo-machineries and the effect of operating parameters on irreversibility is also more significant for recuperators compared to turbo-machines. Effect of isentropic efficiency of turbine is more predominant (about 2.5 times) than that of compressors and effect of high temperature recuperator (HTR) effectiveness is more predominant (about double) than that of low temperature recuperator (LTR) on the second law efficiency. Effect of pressure drop in reactor is more significant compared to others components on the second law efficiency reduction. (C) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1172 / 1178
页数:7
相关论文
共 50 条
  • [1] Dynamic Modeling and Transient Analysis of a Recompression Supercritical CO2 Brayton Cycle
    Zhou, Pan
    Zhang, Jinyi
    Le Moullec, Yann
    [J]. INTERNATIONAL CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS (SOLARPACES 2019), 2020, 2303
  • [2] CONTROL OF A SUPERCRITICAL CO2 RECOMPRESSION BRAYTON CYCLE DEMONSTRATION LOOP
    Conboy, T.
    Pasch, J.
    Fleming, D.
    [J]. PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2013, VOL 8, 2013,
  • [3] Control of a Supercritical CO2 Recompression Brayton Cycle Demonstration Loop
    Conboy, T.
    Pasch, J.
    Fleming, D.
    [J]. JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASME, 2013, 135 (11):
  • [4] DYNAMIC MODEL OF A 10 MW SUPERCRITICAL CO2 RECOMPRESSION BRAYTON CYCLE
    Lambruschini, Fabio
    Liese, Eric
    Zitney, Stephen E.
    Traverso, Alberto
    [J]. PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2016, VOL 9, 2016, : 341 - 349
  • [5] Dynamic Characteristic Study of Supercritical CO2 Recompression Brayton Cycle System
    Zhu, Qinghui
    Han, Ruiyan
    Yang, Siyuan
    Zhang, Bo
    Yang, Zhuqiang
    [J]. FRONTIERS IN ENERGY RESEARCH, 2022, 10
  • [6] Dynamic modelling and transient characteristics of supercritical CO2 recompression Brayton cycle
    Deng, Tianrui
    Li, Xionghui
    Wang, Qiuwang
    Ma, Ting
    [J]. ENERGY, 2019, 180 : 292 - 302
  • [7] Dynamic Modeling of 5 MWe Supercritical CO2 Recompression Brayton Cycle
    Yang, Zijiang
    Le Moullec, Yann
    Zhang, Jinyi
    Zhang, Yijun
    [J]. INTERNATIONAL CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS (SOLARPACES 2017), 2018, 2033
  • [8] Investigation of the recompression pathway in the supercritical CO2 Brayton cycle: Cycle modification and thermodynamic study
    Li, Chengyu
    Wang, Yongzhen
    Wang, Youtang
    He, Fang
    [J]. APPLIED THERMAL ENGINEERING, 2024, 248
  • [9] Indirect integration of thermochemical energy storage with the recompression supercritical CO2 Brayton cycle
    Chen, Xiaoyi
    Jin, Xiaogang
    Ling, Xiang
    Wang, Yan
    [J]. ENERGY, 2020, 209
  • [10] Optimization and thermodynamic analysis of supercritical CO2 Brayton recompression cycle for various small modular reactors
    Park, Joo Hyun
    Park, Hyun Sun
    Kwon, Jin Gyu
    Kim, Tae Ho
    Kim, Moo Hwan
    [J]. ENERGY, 2018, 160 : 520 - 535