Multi-stage ejector based low-pressure leaking gas recirculation system for supercritical CO2 Brayton cycle

被引:0
作者
Yu, Meihong [1 ,2 ]
Wang, Chen [1 ,2 ]
Yu, Tang [3 ]
Ma, Le [3 ]
Liu, Xiuting [3 ]
Gong, Houjun [3 ]
Wang, Lei [1 ,2 ]
Liu, Minyun [3 ]
Huang, Yanping [3 ]
Wang, Xinli [1 ,2 ]
机构
[1] Shandong Univ, Sch Control Sci & Engn, Jinan 250061, Peoples R China
[2] Shandong Univ, Ctr Hydrogen Energy, Jinan 250061, Peoples R China
[3] Nucl Power Inst China, CNNC Key Lab Nucl Reactor Thermal Hydraul Technol, Chengdu 610213, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
Supercritical carbon dioxide Brayton cycle; Recirculation system for leaking gas; Ejector; Four-stage ejector; Operating characteristics; 2-STAGE EJECTOR; 2-PHASE EJECTOR; REFRIGERATION; PERFORMANCE; DESIGN; OPTIMIZATION;
D O I
10.1016/j.energy.2025.134520
中图分类号
O414.1 [热力学];
学科分类号
摘要
The supercritical carbon dioxide Brayton cycle (SCBC) is an appealing power system for its high compactness and efficiency. The ultra-high rotational speeds of mechanical components and the large pressure difference in turbomachinery lead to the supercritical CO2 (S-CO2) leakage affecting overall efficiency and stability. This study presents a four-stage ejector based leakage gas recovery system to reuse the leaking S-CO2 and enhance the system performance. This work proposes a design methodology for the four-stage ejector and then investigates its operating characteristics under different working conditions through a verified numerical simulation model. The findings indicate that the working conditions of the multi-stage ejector affect the number of ejectors in critical mode and then its entrainment performance. Increasing primary flow pressure improves the pressure lift performance of the multi-stage ejector, while variations in secondary fluid pressure have minimal impact. Besides, the final-stage ejector design is critical for maximizing pressure lift capacity of multi-stage ejectors, while the first-stage design highly influences their entrainment performance. Finally, compared to the compressor-based SCBC and the single-ejector-based SCBC, the proposed system can recycle 5.0 g/s of leaking S-CO2 and achieve a pressure lift of 7.5 MPa with a more compact geometric structure, thereby facilitating the miniaturization of SCBCs.
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页数:23
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