Study of combined heat and power plant integration with thermal energy storage for operational flexibility

被引:37
|
作者
Chen, Chengxu [1 ]
Ge, Zhihua [1 ]
Zhang, Youjun [1 ]
机构
[1] North China Elect Power Univ, Key Lab Power Stn Energy Transfer Convers & Syst, Minist Educ, Beijing 102206, Peoples R China
关键词
Combined heat and power; Thermal energy storage; Power plant flexibility; Thermodynamic analysis; Peak shaving capacity; COMPREHENSIVE ANALYSIS; GENERATION SYSTEM; EXERGY ANALYSIS; ELECTRIC-POWER; FEEDWATER; SOLAR; OPTIMIZATION; PERFORMANCE; COGENERATION; TECHNOLOGIES;
D O I
10.1016/j.applthermaleng.2022.119537
中图分类号
O414.1 [热力学];
学科分类号
摘要
Increasing the share of renewable energy in the future electricity market requires measures to maintain the stability of the grid, owing to the volatility and intermittency of renewable energy. For a combined heat and power (CHP) plant, molten salt thermal energy storage (TES) can be added to improve the flexibility to meet the needs of peak shaving. This paper proposed a novel cascade reheat steam extraction system to adjust the elec-trical load by using EBSILON software applied to thermal simulation and thermal analysis. A 350 MW super-critical CHP plant was used as an example to analyze the thermal and peak shaving performance under variable operating conditions. Meanwhile, through the static simulation, the change in the load and the efficiency of TES can be calculated during the charging and discharging cycle. The results show that the efficiency of TES is 40-51 %. With an increase in the load, the efficiency of TES is reduced, and the exergy loss range is from 4 MW to 12.4 MW mainly due to the throttling process and the molten salt heat transfer process. Moreover, the thermal ef-ficiency and exergy efficiency of the novel system are higher than those of the traditional CHP plant below 60 % turbine heat acceptance, so it is relatively economical to run for peak shaving under low loads. Finally, depending on the corresponding operating strategy, a reduction of the minimum load by up to 1 % of the rated output electrical load during charging and an increase of the maximum load by up to 2 % of the rated output electrical load during discharging are possible. Overall, the proposed system provides a feasible method for the flexibilization of CHP plants alongside new renewable systems.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Improving CHP flexibility by integrating thermal energy storage and power-to-heat technologies into the energy system
    Lepiksaar, K.
    Masatin, V.
    Latosov, E.
    Siirde, A.
    Volkova, A.
    SMART ENERGY, 2021, 2
  • [32] Flexibility of Large-Scale Solar Heating Plant with Heat Pump and Thermal Energy Storage
    Luc, Katarzyna M.
    Heller, Alfred
    Rode, Carsten
    PROCEEDINGS OF THE 11TH ISES EUROSUN 2016 CONFERENCE, 2017, : 849 - 861
  • [33] TECHNO-ECONOMIC OPTIMIZATION OF A COMBINED CYCLE COMBINED HEAT AND POWER PLANT WITH INTEGRATED HEAT PUMP AND LOW-TEMPERATURE THERMAL ENERGY STORAGE
    Garcia, Jose
    Smet, Vincent
    Guedez, Rafael
    Sorce, Alessandro
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, VOL 5, PT II, 2020,
  • [34] Combined-cycle gas turbine power plant integration with cascaded latent heat thermal storage for fast dynamic responses
    Li, Decai
    Hu, Yukun
    Li, Dacheng
    Wang, Jihong
    ENERGY CONVERSION AND MANAGEMENT, 2019, 183 : 1 - 13
  • [35] Integrated dispatch for combined heat and power with thermal energy storage considering heat transfer delay
    Zhu, Mengshu
    Li, Jinghua
    ENERGY, 2022, 244
  • [36] Power-to-heat as a flexibility measure for integration of renewable energy
    Kirkerud, Jon Gustav
    Bolkesjo, Torjus Folsland
    Tromborg, Erik
    ENERGY, 2017, 128 : 776 - 784
  • [37] Study on the operational feasibility domain of combined heat and power generation system based on compressed carbon dioxide energy storage
    Hao, Jiahao
    Zheng, Pingyang
    Li, Yanan
    Zhang, Zhentao
    Zhang, Jiajun
    Yang, Junling
    Yue, Yunkai
    Li, Xiaoqiong
    ENERGY, 2024, 291
  • [38] Operation flexibility and energy efficiency co-optimization on a combined heat and power plant cogenerating power and multiple heat loads
    Yu, Pei
    Liu, Ming
    Ma, Guofeng
    Liu, Miaomiao
    Yan, Junjie
    ENERGY, 2025, 321
  • [39] Integration of Thermal Energy Storage Systems and Thermodynamic Analysis of Solar Combined Power Plants
    Al-Doori, Ghaith Thaaer Fadhil
    Abed, Falah Mohammed
    Faisal, Hayder Subhi
    INTERNATIONAL JOURNAL OF MULTIPHYSICS, 2024, 18 (03) : 1494 - 1512
  • [40] Heat transfer of high thermal energy storage with heat exchanger for solar trough power plant
    Vaivudh, Sarayooth
    Rakwichian, Wattanapong
    Chindaruksa, Sirinuch
    ENERGY CONVERSION AND MANAGEMENT, 2008, 49 (11) : 3311 - 3317