Thermodynamic modeling and multi-objective optimization of a solar-driven multi-generation system producing power and water

被引:24
|
作者
Khanmohammadi, Shoaib [1 ]
Razi, Shabnam [1 ]
Delpisheh, Mostafa [2 ]
Panchal, Hitesh [3 ]
机构
[1] Kermanshah Univ Technol, Dept Mech Engn, Kermanshah, Iran
[2] Iran Univ Sci & Technol IUST, Sch Mech Engn, Tehran, Iran
[3] Govt Engn Coll Patan, Mech Engn Dept, Gujarat, India
关键词
Trans -critical CO (2); HDH unit; Optimization; Water production; Multi; -generation; INTEGRATED-SYSTEM; ENERGY; HYDROGEN; GENERATION; DESIGN; CYCLE;
D O I
10.1016/j.desal.2022.116158
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The present paper addresses the thermodynamic modeling and multi-objective optimization of a solar-based multi-generation system producing hot water, heating, cooling, hydrogen, and freshwater using a humidification and dehumidification (HDH) unit. Usually, in areas with high radiation intensity, the shortage of drinking water is severe; therefore, using multi-generation systems with solar energy as the prime mover can be a promising option in these areas. The main goals of the current work are multi-aspect assessment and optimization of a solar system to generate potable water and other valuable products. The proposed system is examined using thermodynamic modeling and environmental simulation from different aspects in the present study. The exergy destruction evaluation rate showed that the heliostat had the highest exergy destruction rate, gauged at 1867 kW. Also, in terms of exergy efficiency, the pump and heliostat units had the lowest exergy efficiency, with values of 52.09 % and 65.39 %. Parametric analysis was implemented to find the effect of changing different parameters on the yield of produced fresh water, exergy efficiency, exergy destruction rate, coefficient of performance (COP), sustainability index (SI), and produced hydrogen. Results showed that increasing the compressor pressure ratio from 2 to 6 elicits a reduction in freshwater flow rate and COP. Similarly, increasing the outlet pressure from 70 to 80 bar reduced exergy efficiency and freshwater production. Furthermore, owing to the different effects of the parameters on the studied system, multi-objective optimization was performed using the evolutionary genetic algorithm.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Thermodynamic analysis and multi-objective optimization of a new biomass-driven multi-generation system for zero energy buildings
    Mohammadikhah, Fazel
    Javaherdeh, Kourosh
    Mahmoudimehr, Javad
    ENERGY SYSTEMS-OPTIMIZATION MODELING SIMULATION AND ECONOMIC ASPECTS, 2021, 12 (01): : 157 - 180
  • [2] Thermodynamic analysis and multi-objective optimization of a new biomass-driven multi-generation system for zero energy buildings
    Fazel Mohammadikhah
    Kourosh Javaherdeh
    Javad Mahmoudimehr
    Energy Systems, 2021, 12 : 157 - 180
  • [3] Solar-driven multi-generation system: Thermoeconomic and environmental optimization for power, cooling, and liquefied hydrogen production
    Qing, Xia
    ENERGY, 2024, 293
  • [4] Multi-objective design optimization of a multi-generation energy system based on geothermal and solar energy
    Alirahmi, Seyed Mojtaba
    Dabbagh, Sajjad Rahmani
    Ahmadi, Pouria
    Wongwises, Somchai
    ENERGY CONVERSION AND MANAGEMENT, 2020, 205
  • [5] Performance optimization and multi-objective analysis of an innovative solar-driven combined power and cooling system
    Yadav, Vinay Kumar
    Sarkar, Jahar
    Ghosh, Pradyumna
    ENERGY AND BUILDINGS, 2024, 307
  • [6] Solar-driven liquid air power plant modeling, design space exploration, and multi-objective optimization
    Yang, S.
    ENERGY, 2022, 246
  • [7] Multi-objective optimization of a multi-step solar-driven Brayton plant
    Sanchez-Orgaz, S.
    Pedemonte, M.
    Ezzatti, P.
    Curto-Risso, P. L.
    Medina, A.
    Calvo Hernandez, A.
    ENERGY CONVERSION AND MANAGEMENT, 2015, 99 : 346 - 358
  • [8] Thermodynamic analysis and multi-objective optimization of a novel power generation system driven by geothermal energy
    Yu, Zeting
    Su, Ruizhi
    Feng, Chunyu
    ENERGY, 2020, 199
  • [9] Performance assessment and multi-objective optimization of a multi-generation system based on solar tower power: A case study in Dubai, UAE
    Nedaei, Navid
    Azizi, Saeid
    Farshi, Leili Garousi
    PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2022, 161 : 295 - 315
  • [10] Multi-objective optimization of a solar driven trigeneration system
    Bellos, Evangelos
    Tzivanidis, Christos
    ENERGY, 2018, 149 : 47 - 62