Thermos-economic performance of a novel CCHP system driven by low-grade thermal energy based on CO2 and organic fluids

被引:2
作者
Li, Tailu [1 ]
Gao, Ruizhao [1 ]
Qi, Jing [1 ]
Yuan, Ye [1 ]
机构
[1] Hebei Univ Technol, Sch Energy & Environm Engn, Tianjin 300401, Peoples R China
关键词
Thermos-economic performance; CCHP; Organic rankine cycle; Carbon dioxide; Organic fluid; TRANSCRITICAL RANKINE-CYCLE; WASTE-HEAT-RECOVERY; POWER CYCLE; INTEGRATED DESIGN; WORKING FLUIDS; ORC; OPTIMIZATION; GAS; TECHNOLOGY;
D O I
10.1016/j.csite.2024.104861
中图分类号
O414.1 [热力学];
学科分类号
摘要
A novel combined cooling, heating and power (CCHP) system is proposed based on mixture consisting of CO2 and organic fluids to meet the seasonal energy demand in buildings. Thermodynamic model was constructed based on the laws of thermodynamics, and seasonal operation modes were also established. Techno-economic performance was analyzed and the performance of mixture consisting of CO2 and organic fluids compared with CO2 and pure organic fluids. Results show that the temperature of the turbine inlet in trans-critical power cycle should be 10 degrees C lower than the heat source temperature, with the turbine inlet pressure being approximately 1.4 times as large as critical pressure. Turbine inlet temperature is negatively correlated to the payback period and levelized energy cost while turbine inlet pressure is positively correlated to the system economic performance. The carbon dioxide content is negatively correlated to net power output, thermal efficiency and exergy efficiency, while coefficient of performance will hit the bottom with the carbon dioxide content, except CO2/Propane. For the carbon dioxide content is between 5 % and 10 %, the system overall performance is also close to optimal value. In general, CO2/R134a (0.10/0.90) and CO2/R1234ze(E) (0.10/0.90) is recommendable.
引用
收藏
页数:24
相关论文
共 50 条
[1]   Thermodynamic and Thermo-economic Analysis of Integrated Organic Rankine Cycle for Waste Heat Recovery from Vapor Compression Refrigeration Cycle [J].
Asim, Muhammad ;
Leung, Michael K. H. ;
Shan, Zhiqiang ;
Li, Yingying ;
Leung, Dennis Y. C. ;
Ni, Meng .
LEVERAGING ENERGY TECHNOLOGIES AND POLICY OPTIONS FOR LOW CARBON CITIES, 2017, 143 :192-198
[2]   Exergy efficiency potential of dual-phase expansion trilateral and partial evaporation ORC with zeotropic mixtures [J].
Braimakis, Konstantinos ;
Karellas, Sotirios .
ENERGY, 2023, 262
[3]   Experiment and dynamic simulation of a solar tower collector system for power generation [J].
Chen, Jinli ;
Xiao, Gang ;
Xu, Haoran ;
Zhou, Xin ;
Yang, Jiamin ;
Ni, Mingjiang ;
Cen, Kefa .
RENEWABLE ENERGY, 2022, 196 :946-958
[4]   Integrated working fluid-thermodynamic cycle design of organic Rankine cycle power systems for waste heat recovery [J].
Cignitti, Stefano ;
Andreasen, Jesper G. ;
Haglind, Fredrik ;
Woodley, John M. ;
Abildskov, Jens .
APPLIED ENERGY, 2017, 203 :442-453
[5]   Parametric optimization and comparative study of organic Rankine cycle (ORC) for low grade waste heat recovery [J].
Dai, Yiping ;
Wang, Jiangfeng ;
Gao, Lin .
ENERGY CONVERSION AND MANAGEMENT, 2009, 50 (03) :576-582
[6]  
Feher E. G., 1968, Energy Conversion, V8, P85, DOI 10.1016/0013-7480(68)90105-8
[7]   Working fluid selection for regenerative supercritical Brayton cycle combined with bottoming ORC driven by molten salt solar power tower using energy-exergy analysis [J].
Habibi, Hamed ;
Zoghi, Mohammad ;
Chitsaz, Ata ;
Javaherdeh, Koroush ;
Ayazpour, Mojtaba ;
Bellos, Evangelos .
SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS, 2020, 39
[8]   The human imperative of stabilizing global climate change at 1.5°C [J].
Hoegh-Guldberg, O. ;
Jacob, D. ;
Taylor, M. ;
Bolanos, T. Guillen ;
Bindi, M. ;
Brown, S. ;
Camilloni, I. A. ;
Diedhiou, A. ;
Djalante, R. ;
Ebi, K. ;
Engelbrecht, F. ;
Guiot, J. ;
Hijioka, Y. ;
Mehrotra, S. ;
Hope, C. W. ;
Payne, A. J. ;
Poertner, H. -O. ;
Seneviratne, S. I. ;
Thomas, A. ;
Warren, R. ;
Zhou, G. .
SCIENCE, 2019, 365 (6459) :1263-+
[9]   Energy-exergy analysis and economic investigation of a cogeneration and trigeneration ORC-VCC hybrid system utilizing biomass fuel and solar power [J].
Karellas, Sotirios ;
Braimakis, Konstantinos .
ENERGY CONVERSION AND MANAGEMENT, 2016, 107 :103-113
[10]   Comparative investigation on the supercritical carbon dioxide power cycle for waste heat recovery of gas turbine [J].
Li, Bo ;
Wang, Shun-sen ;
Wang, Keke ;
Song, Liming .
ENERGY CONVERSION AND MANAGEMENT, 2021, 228