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Performance Analysis and Evaluation of a Supercritical CO2 Rankine Cycle Coupled with an Absorption Refrigeration Cycle 被引量:4
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作者 CHEN Yi XU Dongjie +3 位作者 CHEN Zheng GAO Xiang REN Fukang HAN Wei 《Journal of Thermal Science》 SCIE EI CAS CSCD 2020年第4期1036-1052,共17页
The utilization of sensible waste heat such as flue gas and industrial surplus heat is essential for energy saving. Supercritical CO2 power generation cycle is a promising way to be used in this field. In this paper, ... The utilization of sensible waste heat such as flue gas and industrial surplus heat is essential for energy saving. Supercritical CO2 power generation cycle is a promising way to be used in this field. In this paper, a new supercritical CO2 Rankine cycle coupled with an absorption refrigeration cycle is proposed, which consists of a reheating supercritical CO2 cycle, a mixed-effect Li Br-H2O absorption refrigeration cycle and solar subsystem including evacuated-tube collector and a hot water storage tank. The system has four variants according to the presence or absence of solar subsystem and net cooling energy output. The thermodynamic model of the proposed system was established and its performance was evaluated. The proposed system is able to realize cascade utilization of flue gas waste heat and efficient conversion of solar energy. It has much higher thermodynamic efficiency than the reference system(i.e., the conventional supercritical CO2 Brayton cycle). Taking combined power and cooling system driven by flue gas waste heat and solar energy as an example, its thermal efficiency and exergy efficiency are 20.37% and 54.18% respectively, compared with the 14.74% and 35.96% of the reference system. Energy Utilization Diagrams(EUD) are implemented to investigate the irreversible losses and variation of the exergy destruction in the energy conversion process. Parametric analysis in two key parameters is conducted to provide guidance for the system optimal design. 展开更多
关键词 supercritical CO2 cycle absorption refrigeration cycle sensible heat source solar energy thermodynamic analysis
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Performance Analysis of an Integrated Supercritical CO_(2) Recompression/Absorption Refrigeration/Kalina Cycle Driven by Medium-Temperature Waste Heat 被引量:2
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作者 SU Ruizhi YU Zeting +2 位作者 WANG Daohan SUN Bo SUN Jia’nan 《Journal of Thermal Science》 SCIE EI CAS CSCD 2022年第6期2051-2067,共17页
A novel power and cooling cogeneration system which combines a supercritical CO_(2) recompression cycle(SCRC), an ammonia-water absorption refrigeration cycle(AARC) and a Kalina cycle(KC) is proposed and investigated ... A novel power and cooling cogeneration system which combines a supercritical CO_(2) recompression cycle(SCRC), an ammonia-water absorption refrigeration cycle(AARC) and a Kalina cycle(KC) is proposed and investigated for the recovery of medium-temperature waste heat. The system is based on energy cascade utilization, and the waste heat can be fully converted through the simultaneous operation of the three sub-cycles. A steady-state mathematical model is built for further performance study of the proposed system. When the exhaust temperature is 505℃, it is shown that under designed conditions the thermal efficiency and exergy efficiency reach 30.74% and 61.55%, respectively. The exergy analysis results show that the main exergy destruction is concentrated in the heat recovery vapor generator(HRVG). Parametric study shows that the compressor inlet pressure, the SCRC pressure ratio, the main compressor and the turbine I inlet temperature, and the AARC generator pressure have significant effects on thermodynamic and economic performance of the combined system. The findings in this study could provide guidance for system design to achieve an efficient utilization of medium-temperature waste heat(e.g., exhaust heat from gas turbine, high-temperature fuel cells and internal combustion engine). 展开更多
关键词 waste heat utilization cogeneration system supercritical CO_(2)recompression cycle absorption refrigeration cycle Kalina cycle
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基于S-CO_(2)循环的并联与混联新型冷电联产系统热力学和经济性分析
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作者 周云龙 程秋洁 杨美 《中国电机工程学报》 CSCD 北大核心 2023年第S1期198-207,共10页
为提高能量利用效率同时实现制冷量的调节,提出新型超临界二氧化碳(supercritical carbon dioxide,S-CO_(2))循环的冷电联产混合动力系统。集成制冷与发电的热力循环,设计并联和混联两种联合循环系统布局方式。基于质量、能量和成本平... 为提高能量利用效率同时实现制冷量的调节,提出新型超临界二氧化碳(supercritical carbon dioxide,S-CO_(2))循环的冷电联产混合动力系统。集成制冷与发电的热力循环,设计并联和混联两种联合循环系统布局方式。基于质量、能量和成本平衡方程,建立热力学和经济模型;从能量和经济的角度对比分析两个联合循环系统的性能。结果表明,并联和混联系统的热效率分别为47.65%和49.12%;单位成本分别为157.85元/GJ和149.49元/GJ;混联系统的(火用)效率比并联系统高2.27%。通过对并联和混联系统顶循环参数进一步分析,得出混联系统具有更好的热经济性能。结果可为基于SCO_(2)系统的冷电联合循环的理论分析提供一些参考。 展开更多
关键词 超临界二氧化碳(supercritical carbon dioxide S-CO_(2))循环 吸收式制冷循环(absorption refrigeration cycle ARC)系统 有机朗肯循环(organic rankine cycle ORC)系统 循环效率 单位成本
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