LAPSE:2023.1316
Published Article
LAPSE:2023.1316
Advanced Exergy Analysis of an Absorption Chiller/Kalina Cycle Integrated System for Low-Grade Waste Heat Recovery
Zhiqiang Liu, Zhixiang Zeng, Chengwei Deng, Nan Xie
February 21, 2023
Abstract
Exergy analysis and advanced exergy analysis of an absorption chiller/Kalina cycle integrated system are conducted in this research. The exergy destruction of each component and overall exergy efficiency of the cascade process have been obtained. Advanced exergy analysis investigates the interactions among different components and the actual improvement potential. Results show that among all the equipment, the largest exergy destruction is in the generators and absorber. System exergy efficiency is obtained as 35.52%. Advanced analysis results show that the endogenous exergy destruction is dominant in each component. Interconnections among different components are not significant but very complicated. It is suggested that the improvement priority should be given to the turbine. Performance improvement of this low-grade waste heat recovery process is still necessary because around 1/4 of the total exergy destruction can be avoided. Exergy and advanced exergy analysis in this work locates the position of exergy destruction, quantifies the process irreversibility, presents the component interactions and finds out the system improvement potential. This research provides detailed and useful information about this absorption chiller/Kalina cycle integrated system.
Keywords
advanced exergy analysis, cascade utilization, exergy analysis, power generation, waste heat recovery
Suggested Citation
Liu Z, Zeng Z, Deng C, Xie N. Advanced Exergy Analysis of an Absorption Chiller/Kalina Cycle Integrated System for Low-Grade Waste Heat Recovery. (2023). LAPSE:2023.1316
Author Affiliations
Liu Z: School of Energy Science and Engineering, Central South University, Changsha 410083, China
Zeng Z: School of Energy Science and Engineering, Central South University, Changsha 410083, China
Deng C: Shanghai Institute of Space Power Sources, Shanghai 200245, China
Xie N: School of Energy Science and Engineering, Central South University, Changsha 410083, China [ORCID]
Journal Name
Processes
Volume
10
Issue
12
First Page
2608
Year
2022
Publication Date
2022-12-06
ISSN
2227-9717
Version Comments
Original Submission
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PII: pr10122608, Publication Type: Journal Article
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LAPSE:2023.1316
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https://doi.org/10.3390/pr10122608
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