Multi-objective optimization of helium power cycle for thermo-chemical energy storage in concentrated solar power

被引:8
|
作者
Tesio, Umberto [1 ]
Guelpa, Elisa [1 ]
Verda, Vittorio [1 ]
机构
[1] Politecn Torino, Energy Dept, Turin, Italy
关键词
Calcium-looping; Long-term energy storage; Indirect integration; Brayton cycles; 100% renewable; CALCIUM LOOPING PROCESS; CO2 EMISSION CEMENT; GAS-TURBINE; INTEGRATION; TECHNOLOGY; PLANTS; PERFORMANCE; SYSTEMS; TOWER; BED;
D O I
10.1016/j.ecmx.2021.100116
中图分类号
O414.1 [热力学];
学科分类号
摘要
Concentrated Solar Power is an increasingly widespread technology because of its potential for efficiently converting solar radiation into electricity. The discrepancy between the time evolution of solar radiation and power demand makes it appropriate to include a Thermal Energy Storage in the plant operation. Calcium-Looping represents an interesting opportunity to store solar energy in chemical form thanks to high energy density and null thermal losses. Several aspects must be taken into account for the choice of the thermal cycle in the discharging process and its optimization. Process components operating conditions, heat transfer processes, layout complexity and investment costs are the most important characteristics for which an appropriate investigation must be developed. In this context, thanks to the high achievable temperatures and efficiencies, the use of helium power cycles constitutes an attractive option to analyse. The present work is devoted to the study of this thermal cycle integration and its optimization in energy and economic terms; a multi-objective optimization is performed with the aim of evaluating possible compromises between these two aspects. The system synthesis, design and operating conditions are optimized thanks to the adoption of a coherent and comprehensive strategy, which is the HEATSEP method. To evaluate the effect of deviations in the estimation of helium turbomachinery price, a sensitivity analysis is performed, showing that the plant configurations obtained do not change even for considerable errors in the prediction of this cost. He turbine inlet temperature and minimum temperature difference of He regenerator are demonstrated to strongly impact the cost of the system. Results show total plant efficiencies in a range between 18.1% and 21.9% and novel system layouts are designed for the most significant configurations. The strategy for the power block thermal feeding appears to be a key element in both energy and economic terms.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] An optimization model for sizing a concentrated solar power system with thermal energy storage
    Ghaithan, Ahmed M.
    ENERGY SYSTEMS-OPTIMIZATION MODELING SIMULATION AND ECONOMIC ASPECTS, 2024,
  • [22] Systematic analysis and multi-objective optimization of an integrated power and freshwater production cycle
    Bahari, Mehran
    Entezari, Ashkan
    Esmaeilion, Farbod
    Ahmadi, Abolfazl
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (43) : 18831 - 18856
  • [23] Multi-objective robust optimization of a solar power tower plant under uncertainty
    Luo, Yan
    Wang, Zhiyuan
    Zhu, Jiamin
    Lu, Tao
    Xiao, Gang
    Chu, Fengming
    Wang, Ruixing
    ENERGY, 2022, 238
  • [24] Optimum dimension of geometric parameters of solar chimney power plants - A multi-objective optimization approach
    Dehghani, Saeed
    Mohammadi, Amir H.
    SOLAR ENERGY, 2014, 105 : 603 - 612
  • [25] Optimized Ca-looping thermochemical energy storage under dynamic operation for concentrated solar power
    Pascual, S.
    Romeo, L. M.
    Lisbona, P.
    JOURNAL OF ENERGY STORAGE, 2023, 68
  • [26] Multi-objective optimization of combined heat and power system integrated with multi-energy storage systems for rural communities
    Khan, Tahir
    Ullah, Zia
    Agyekum, Ephraim Bonah
    Hasanien, Hany M.
    Yu, Miao
    JOURNAL OF ENERGY STORAGE, 2024, 99
  • [27] Multi-objective capacity estimation of wind - solar - energy storage in power grid planning consideration policy effect
    Huan, Jiajia
    Zhang, Xiaohui
    He, Yuling
    Sun, Kai
    Han, Zhicheng
    Wang, Haipeng
    IET GENERATION TRANSMISSION & DISTRIBUTION, 2024, 18 (11) : 2119 - 2132
  • [28] Thermal energy storage technologies for concentrated solar power - A review from a materials perspective
    Palacios, A.
    Barreneche, C.
    Navarro, M. E.
    Ding, Y.
    RENEWABLE ENERGY, 2020, 156 : 1244 - 1265
  • [30] Electrolyzer cell-methanation/Sabatier reactors integration for power-to-gas energy storage: Thermo-economic analysis and multi-objective optimization
    Jalili, Mohammad
    Holagh, Shahriyar Ghazanfari
    Chitsaz, Ata
    Song, Jian
    Markides, Christos N.
    APPLIED ENERGY, 2023, 329