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Title: Theoretical Analysis on Thermodynamic and Economic Performance Improvement in a Supercritical CO<sub>2</sub> Cycle by Integrating with Two Novel Double-Effect Absorption Reheat Power Cycles
Authors: Yan, SL
Zhao, MW
Zhang, HF
Zheng, HT
Deng, FQ 
Issue Date: 2024
Source: International journal of energy research, 2024, v. 2024, 3745897
Abstract: To enhance the overall performance of recompression supercritical carbon dioxide- (sCO(2)-) based systems, two new double-effect absorption reheat power cycles (DARPC) were developed in this study. These methods are based on the typical absorption power cycle (APC). For the proposed sCO(2)/DARPC systems, a parametric analysis of the thermodynamic and economic performances, as well as additional parametric optimisations, were performed quantitatively. The results indicate that replacing the APC subsystem with DARPC subsystems can enhance the total function of the sCO2 system even further, owing to the increased H2O vapour created in the separator and the reheating process, which adds to the greater net power output. Furthermore, compared to the DARPC2 subsystem, the DARPC1 subsystem may produce more H2O vapour from the generator and separator, resulting in an increase in net output power. When compared to a single sCO(2) power cycle, multiobjective optimisations showed that the sCO(2)/DARPC1 and sCO(2)/DARPC2 systems could increase the exergy efficiency by 12.95% and 11.51% and decrease the total product unit cost by 9.67% and 8.37%, respectively. Furthermore, the sCO(2)/DARPC1 and sCO(2)/DARPC2 systems can achieve improvements in exergy efficiency of 4.95% and 3.61% and a total product unit cost of 4.52% and 3.15%, respectively, compared with the sCO(2)/APC system.
Publisher: John Wiley & Sons
Journal: International journal of energy research 
ISSN: 0363-907X
DOI: 10.1155/2024/3745897
Rights: Copyright © 2024 Shilin Yan et al. This is an open access article distributed under the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
The following publication Yan, Shilin, Zhao, Minwei, Zhang, Hongfu, Zheng, Hongtao, Deng, Fuquan, Theoretical Analysis on Thermodynamic and Economic Performance Improvement in a Supercritical CO2 Cycle by Integrating with Two Novel Double-Effect Absorption Reheat Power Cycles, International Journal of Energy Research, 2024, 3745897, 24 pages, 2024 is available at https://dx.doi.org/10.1155/2024/3745897.
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