Design of S-CO2 coal-fired power system based on the multiscale analysis platform

被引:11
|
作者
Fan, Y. H. [1 ]
Yang, D. L. [1 ]
Tang, G. H. [1 ]
Sheng, Q. [2 ]
Li, X. L. [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Energy & Power Engn, MOE Key Lab Thermofluid Sci & Engn, Xian 710049, Peoples R China
[2] Univ Edinburgh, Sch Engn, Edinburgh EH9 3FB, Midlothian, Scotland
基金
中国国家自然科学基金;
关键词
Modeling methodology; Multiscale; S-CO 2 coal-fired power plant; System net efficiency; Thermal-hydraulic performance; SUPERCRITICAL CARBON-DIOXIDE; CO2 BRAYTON CYCLES; HEAT-TRANSFER; OPTIMIZATION; PLANT;
D O I
10.1016/j.energy.2021.122482
中图分类号
O414.1 [热力学];
学科分类号
摘要
This work presents a design of 1000 MW S-CO2 coal-fired power system, containing not only a new methodology of S-CO2 power system modeling, but also the specific directions for engineering design. The coupling between computational fluid dynamic simulations at boiler scale and the mathematical modeling of the thermal cycle facilitates a high reliability of the comprehensive design. Our analysis helps identify key questions and then delivers specific directions for engineering design, especially for the pressure drop penalty in tail flue and thermal-hydraulic performance of cooling wall. The proposed flue split method coupled with parallel utilization method can not only effectively reduce the pressure drop penalty but also simplify the system heater configuration. Moreover, the thermal performance of S -CO2 cooling wall is improved by using the flue gas recirculation and cooling wall arrangement optimization. The optimized position and proportion of flue gas extraction are further obtained. Comprehensively, the proposed design of S-CO2 coal-fired power system enhances the system net efficiency up to 51.00%, with an efficient utilization of residual heat and cooling wall temperature below 700 degrees C. (c) 2021 Elsevier Ltd. All rights reserved.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Perspective of S-CO2 power cycles
    Xu, Jinliang
    Liu, Chao
    Sun, Enhui
    Xie, Jian
    Li, Mingjia
    Yang, Yongping
    Liu, Jizhen
    ENERGY, 2019, 186
  • [22] Single-Reheating or Double-Reheating, Which is Better for S-CO2 Coal Fired Power Generation System?
    SUN Enhui
    XU Jinliang
    HU Han
    YAN Chenshuai
    LIU Chao
    JournalofThermalScience, 2019, 28 (03) : 431 - 441
  • [23] Single-Reheating or Double-Reheating, Which is Better for S-CO2 Coal Fired Power Generation System?
    Enhui Sun
    Jinliang Xu
    Han Hu
    Chenshuai Yan
    Chao Liu
    Journal of Thermal Science, 2019, 28 : 431 - 441
  • [24] Membrane CO2 Separation System Improvement for Coal-Fired Power Plant Integration
    Alabid, Maytham
    Dinca, Cristian
    ENERGIES, 2024, 17 (02)
  • [25] Analysis of CO2 Emissions in the Whole Production Process of Coal-Fired Power Plant
    Wang, Han
    Fu, Zhenghui
    Wang, Shulan
    Zhang, Wenjie
    SUSTAINABILITY, 2021, 13 (19)
  • [26] Thermodynamic analysis and performance prediction on dynamic response characteristic of PCHE in 1000 MW S-CO2 coal fired power plant
    Ma, Teng
    Li, Ming-Jia
    Xu, Jin-Liang
    Cao, Feng
    ENERGY, 2019, 175 : 123 - 138
  • [27] Design and performance evaluation of a new waste incineration power system integrated with a supercritical CO2 power cycle and a coal-fired power plant
    Chen, Heng
    Zhang, Meiyan
    Wu, Yunyun
    Xu, Gang
    Liu, Wenyi
    Liu, Tong
    ENERGY CONVERSION AND MANAGEMENT, 2020, 210 (210)
  • [28] Partial load operation characteristics of supercritical CO2 coal-fired power generation system
    Zheng, Haonan
    Miao, Zheng
    Xu, Jinliang
    ENERGY, 2024, 291
  • [29] Techno-Economic Analysis of Solar Tower Aided Coal-Fired Power Generation System
    Zhu, Yong
    Zhai, Rongrong
    Yang, Yongping
    Angel Reyes-Belmonte, Miguel
    ENERGIES, 2017, 10 (09):
  • [30] The Analysis Research of Thermal System of Coal-fired Power Plant and Examples of Applications
    Li, Jianqiang
    Chen, Dandan
    Wang, He
    Fu, Xiaofei
    ADVANCES IN POWER AND ELECTRICAL ENGINEERING, PTS 1 AND 2, 2013, 614-615 : 157 - +