4-E analysis and multiple objective optimizations of a novel solar-powered cogeneration energy system for the simultaneous production of electrical power and heating

被引:0
|
作者
Taufique Ahamad
Mohd Parvez
Shiv Lal
Osama Khan
Mohammad Javed Idrisi
机构
[1] Al-Falah University,Department of Mechanical Engineering
[2] Rajasthan Technical University,Department of Mechanical Engineering
[3] Jamia Millia Islamia,Department of Mechanical Engineering
[4] Mizan-Tepi University,Department of Mathematics, College of Natural and Computational Science
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Owing to its natural and rich advantages, exploration of solar energy technology has become increasingly popular in recent years to counter the growing crude oil prices. However, its universal adoption is still limited, not only due to environmental restrictions but also due to lower overall efficiency. Rankine cycle is optimised to conduct 4-E (Exergy, Energy, Economic and Ecological) analysis. Furthermore, three sets (R-113, R-11, and R-1233zd) of refrigerants are prioritised and ranked on the basis of 4-E analysis as outcomes. The contemporary study addressed all critical factors and explains the impact of solar irradiance, mass flow rate of molten salt and steam, turbine inlet pressure, and turbine inlet temperature which are eventually weighed and prioritised using combined multi-criteria decision making (MCDM) techniques. The energy efficiency, exergetic efficiency, power/ cost of electricity, and ecological emissions are taken as the indicators of the combined cycle, respectively. The energy efficiency of the hybrid system is improved to 75.07% after including cogeneration cycle, with an increment of 54.58%. In comparison to conventional thermal powerplant setups, the power/cost of electricity and ecological efficiency have been reduced by 68% and upgraded by 16%, correspondingly. Direct normal radiation is the most critical factor followed by turbine inlet temperature. Further, the result indicates that maximum exergy destruction that occurs in the central receiver declines to 39.92%, followed by heliostat and steam turbine which was 27% and 9.32% respectively. In conclusion, the hybrid cycle can furnish cheaper electricity, with lower carbon imprint in sustainable manner with better efficiency.
引用
收藏
相关论文
共 50 条
  • [41] Multi-objective optimization and 4E analysis of an integrated system based on waste-to-energy, solar PV, power-to-gas, and HDH-RO desalination
    Ravajiri, Eshagh Safarzadeh
    Jalali, Alireza
    Houshfar, Ehsan
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2023, 277
  • [42] Exergy, exergoeconomic optimization and exergoenvironmental analysis of a hybrid solar, wind, and marine energy power system: A strategy for carbon-free electrical production
    Zainul, Rahadian
    Basem, Ali
    Alfaker, Mohamad J.
    Sharma, Pawan
    Kumar, Abhishek
    Al-Bahrani, Mohammed
    Elawady, A.
    Abbas, Mohamed
    Fooladi, Hadi
    Pandey, Shatrudhan
    [J]. HELIYON, 2024, 10 (16)
  • [43] Thermo-enviro-exergoeconomic analysis and multi-objective optimization of a novel geothermal-solar-wind micro-multi-energy system for cleaner energy production
    Bamisile, Olusola
    Cai, Dongsheng
    Adedeji, Michael
    Dagbasi, Mustafa
    Li, Jian
    Hu, Yihua
    Huang, Qi
    [J]. PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2023, 170 : 157 - 175
  • [44] Design and thermodynamic analysis of a solar-wind energy-based combined system for cleaner production of hydrogen with power, heating, hot water and clean water
    Tukenmez, Nejat
    Yuksel, Yunus Emre
    Ozturk, Murat
    [J]. International Journal of Hydrogen Energy, 2024, 94 : 256 - 277
  • [45] Design analysis and tri-objective optimization of a novel integrated energy system based on two methods for hydrogen production: By using power or waste heat
    Cao, Yan
    Hani, Ehab Hussein Bani
    Mansir, Ibrahim B.
    Safarzadeh, Mehdi
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (62) : 26574 - 26588
  • [46] 6E analysis and particle swarm optimization of a novel ultra-high temperature solar cogeneration system fusing thermochemical energy storage and multistage direct heat transfer
    Su, Zixiang
    Yang, Liu
    Wang, Hao
    Song, Jianzhong
    Jiang, Weixue
    Liu, Shenghui
    Liang, Cai
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2024, 317
  • [47] Energy, exergy, exergoeconomic, and exergoenvironmental (4E) analysis of a new bio-waste driven multigeneration system for power, heating, hydrogen, and freshwater production: Modeling and a case study in Izmir
    Tabriz, Zahra Hajimohammadi
    Mohammadpourfard, Mousa
    Akkurt, Gulden Gokcen
    Heris, Saeed Zeinali
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2023, 288
  • [48] A combined cycle power plant integrated with a desalination system: Energy, exergy, economic and environmental (4E) analysis and multi-objective optimization
    Haghghi, Behrad
    Saleh, Amin
    Hajabdollahi, Hassan
    Dehaj, Mohammad Shafiey
    [J]. KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2022, 39 (07) : 1688 - 1708
  • [49] A combined cycle power plant integrated with a desalination system: Energy, exergy, economic and environmental (4E) analysis and multi-objective optimization
    Behrad Haghghi
    Amin Saleh
    Hassan Hajabdollahi
    Mohammad Shafiey Dehaj
    [J]. Korean Journal of Chemical Engineering, 2022, 39 : 1688 - 1708
  • [50] Modeling and 4E analysis of a new combined cooling, heating, and power energy system based on biogas combustion and hot oil for heat supply
    Tian, Hongjun
    Chen, Xiaowei
    Ahmad, Sayed Fayaz
    Agrawal, Manoj Kumar
    Seikh, Asiful H.
    Shah, Nehad Ali
    Su, Qiaolin
    [J]. PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2024, 184 : 1484 - 1501