Performance analysis and optimization of a solar-powered system for power and cooling cogeneration

被引:1
作者
Wang, Qing [1 ]
Yu, Minli [1 ]
Li, Lirong [1 ]
机构
[1] Hebei Vocat Univ Technol & Engn, Dept Elect Engn, Xingtai 054000, Peoples R China
关键词
Solar-powered system; Parabolic trough solar collector; Supercritical CO 2 cycle; Power and cooling cogeneration; Economic and environmental analyses; Multi-objective optimization; ORGANIC RANKINE-CYCLE; BRAYTON CYCLE; ENERGY; RECOVERY;
D O I
10.1016/j.solener.2025.113443
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Switching from fossil fuels to renewable energy sources to mitigate environmental challenges has become a priority for sustainable development. This study explores the multi-aspect performance of a solar-powered cogeneration system designed for simultaneous power and cooling production. The proposed configuration integrates a parabolic trough solar collector with a supercritical CO2 unit, an ejector refrigeration cycle, a modified organic flash cycle, and an organic Rankine cycle. The system generates a net output power of 15.6 MW and a cooling load of 3.40 MW, achieving respective energetic and exergetic efficiencies of 18.28 % and 16.35 %. Economic analysis reveals a total product cost rate of 1468.95 $/h, with a payback period of 4.82 years, while environmental evaluation reports an exergoenvironmental impact rate of 191.34 Pts/h. Parametric and sensitivity analyses highlight critical design variables, leading to an optimization process using a multi-objective particle swarm optimizer. Scenario I improves system performance with a net power output of 16.3 MW, reducing the exergoenvironmental impact rate to 167.86 Pts/h and the total product cost rate to 1268.55 $/h. Scenario II achieves a net power output of 15.65 MW, enhances the exergetic efficiency to 16.42 %, and increases the cooling load to 3.75 MW. These results confirm the system's superior thermodynamic performance, economic viability, and environmental sustainability.
引用
收藏
页数:27
相关论文
共 78 条
[1]   Comparative energy, exergy and exergo-economic analysis of solar driven supercritical carbon dioxide power and hydrogen generation cycle [J].
Abid, Muhammad ;
Khan, Muhammad Sajid ;
Ratlamwala, Tahir Abdul Hussain .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45 (09) :5653-5667
[2]   A new solar energy-based integrated carbon capturing system with a gas turbine-supercritical CO2 combined power cycle [J].
Al-Hamed, Khaled H. M. ;
Dincer, Ibrahim .
ENERGY CONVERSION AND MANAGEMENT, 2022, 251
[3]   Energy and sizing analyses of parabolic trough solar collector integrated with steam and binary vapor cycles [J].
Al-Sulaiman, Fahad A. .
ENERGY, 2013, 58 :561-570
[4]   Performance assessment of a novel system using parabolic trough solar collectors for combined cooling, heating, and power production [J].
Al-Sulaiman, Fahad A. ;
Hamdullahpur, Feridun ;
Dincer, Ibrahim .
RENEWABLE ENERGY, 2012, 48 :161-172
[5]  
Alenezi A., 2019, AIAA PROPULSION ENER, DOI [10.2514/6.2019-4074, DOI 10.2514/6.2019-4074]
[6]   Optimizing Co-generation performance of reactivity controlled compression ignition engines with solar steam reforming of methanol; a thermoeconomic, economic and exergoenvironmental analysis [J].
Asgari, Armin ;
Faal, Mehrdad Yousefi ;
Yari, Mortaza ;
Mohebbi, Milad ;
Mahmoodi, Reza ;
Noorzadeh, Saeed .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 94 :145-165
[7]   Exergy and exergoeconomic analyses and multi- objective optimization of a novel cogeneration system for hydrogen and cooling production [J].
Asgari, Armin ;
Yari, M. ;
Mahmoudi, S. Mohammad S. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (62) :26114-26134
[8]   Decision study and optimization of an innovative three-state multigeneration process using solar energy and compressed air energy storage: A data-driven scenario [J].
Baghalnezhad, Masoud ;
Salehi, Gholamreza ;
Lavasani, Arash Mirabdolah ;
Vahabi, Mohammad ;
Nimafar, Mohammad .
APPLIED THERMAL ENGINEERING, 2024, 256
[9]   Comparative performance analysis of solar powered supercritical-transcritical CO2 based systems for hydrogen production and multigeneration [J].
Bamisile, Olusola ;
Mukhtar, Mustapha ;
Yimen, Nasser ;
Huang, Qi ;
Olotu, Olamide ;
Adebayo, Victor ;
Dagabsi, Mustafa .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (52) :26272-26288
[10]  
Bejan A., 1995, Thermal Design and Optimization