Thermo-economic analysis of the combined solar based pre-compression supercritical CO2 cycle and organic Rankine cycle using ultra low GWP fluids

被引:29
作者
Khan, Yunis [1 ]
Mishra, Radhey Shyam [1 ]
机构
[1] Delhi Technol Univ, Dept Mech Engn, Bawana Rd, New Delhi 110042, India
关键词
THERMAL-ENERGY STORAGE; WORKING FLUID; PARAMETRIC OPTIMIZATION; EXERGY ANALYSIS; BRAYTON CYCLE; GAS-TURBINE; SYSTEM; COLLECTORS; TOWER; STEAM;
D O I
10.1016/j.tsep.2021.100925
中图分类号
O414.1 [热力学];
学科分类号
摘要
Present study deals with the parametric and economic analysis of solar driven combined pre-compression supercritical CO2 cycle and organic Rankine cycle using ultra low global warming potential HFO (hydro fluoro olefins) fluids and comparison with the R134a fluid. A numerical model was developed with the help of EES software to simulate the combined system. It was concluded from the results that HFO working performed better than the R134a. R1336mzz(Z) gave highest thermal and exergy efficiency and power output for the combined cycle by 55.02, 59.60%, 298.5 kW at 950 W/m2 of solar irradiation respectively. Also highest waste heat recovery ratio was found 0.84 for the R1336mzz(Z) fluid while R134a gave only 0.099 at 0.95 heat exchanger effectiveness. At end, it was found that the R1336mzz(Z) and R1234ze(Z) estimated the lowest and highest specific investment cost i.e. 2234 and 2290 & euro;/kWe respectively. It was also concluded from the results that if the fluid is the best for thermal performance, it is not necessary it would be best from the economic point of view.
引用
收藏
页数:12
相关论文
共 50 条
[31]   Thermo-economic optimization of a nanofluid based organic Rankine cycle: A multi-objective study and analysis [J].
Prajapati, Parth P. ;
Patel, Vivek K. .
THERMAL SCIENCE AND ENGINEERING PROGRESS, 2020, 17
[32]   SUPERCRITICAL CO2 RANKINE CYCLE USING LOW AND MEDIUM TEMPERATURE HEAT SOURCES [J].
Guo, Cong ;
Du, Xiaoze ;
Zhou, Yingyan ;
Yang, Lijun ;
Yang, Yongping .
PROCEEDINGS OF THE ASME 7TH INTERNATIONAL CONFERENCE ON ENERGY SUSTAINABILITY, 2013, 2014,
[33]   Thermo-economic analysis of a combined flash-binary geothermal cycle with a transcritical CO2 cycle to produce green hydrogen [J].
Sabbaghi, Mohammad Ali ;
Sefid, Mohammad .
INTERNATIONAL JOURNAL OF EXERGY, 2024, 43 (02) :110-122
[34]   Performance optimization of combined supercritical CO2 recompression cycle and regenerative organic Rankine cycle using zeotropic mixture fluid [J].
Hou, Shengya ;
Cao, Sheng ;
Yu, Lijun ;
Zhou, Yaodong ;
Wu, Yuandan ;
Zhang, FengYuan .
ENERGY CONVERSION AND MANAGEMENT, 2018, 166 :187-200
[35]   Thermoeconomic analysis of a combined supercritical CO2 reheating under different configurations of Organic Rankine cycle ORC as a bottoming cycle [J].
Ochoa, Guillermo Valencia ;
Forero, Jorge Duarte ;
Rojas, Jhan Piero .
HELIYON, 2022, 8 (12)
[36]   Thermo-Economic Comparative Study and Multi-Objective Optimization of Supercritical CO2-Based Mixtures Brayton Cycle Combined With Absorption Refrigeration Cycle [J].
Ma, Ya-Nan ;
Hu, Peng .
JOURNAL OF THERMAL SCIENCE AND ENGINEERING APPLICATIONS, 2023, 15 (08)
[37]   Thermo-economic performance comparison of two configurations of combined steam and organic Rankine cycle with steam Rankine cycle driven by Al2O3-therminol VP-1 based PTSC [J].
Habibi, Hamed ;
Zoghi, Mohammad ;
Chitsaz, Ata ;
Javaherdeh, Koroush ;
Ayazpour, Mojtaba .
SOLAR ENERGY, 2019, 180 :116-132
[38]   Thermo-economic and environmental evaluation of a novel SOFC based trigeneration system using organic Rankine cycle and cascaded vapor compression-absorption refrigeration system [J].
Khan, Yunis ;
Singh, Pawan Kumar .
THERMAL SCIENCE AND ENGINEERING PROGRESS, 2025, 57
[39]   Optimization and thermo-economic performance analysis of organic Rankine cycles using mixture working fluids driven by solar energy [J].
Tiwari, Deepak ;
Sherwani, Ahmad Faizan ;
Kumar, Nishant .
ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2019, 41 (15) :1890-1907
[40]   Thermoeconomic analysis of a CO2 plume geothermal and supercritical CO2 Brayton combined cycle using solar energy as auxiliary heat source [J].
Qiao, Zongliang ;
Cao, Yue ;
Li, Peiyu ;
Wang, Xingchao ;
Romero, Carlos E. ;
Pan, Lehua .
JOURNAL OF CLEANER PRODUCTION, 2020, 256