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Comparative exergy analysis of ammonia-water based Rankine cycles with and without regeneration

Authors
Kim, Kyoung HoonHan, Chul HoKim, Kyoungjin
Issue Date
2013
Publisher
INDERSCIENCE ENTERPRISES LTD
Keywords
ammonia-water mixture; ammonia concentration; anergy; exergy; Rankine cycle; regeneration
Citation
INTERNATIONAL JOURNAL OF EXERGY, v.12, no.3, pp 344 - 361
Pages
18
Journal Title
INTERNATIONAL JOURNAL OF EXERGY
Volume
12
Number
3
Start Page
344
End Page
361
URI
https://scholarworks.bwise.kr/kumoh/handle/2020.sw.kumoh/22392
DOI
10.1504/IJEX.2013.054117
ISSN
1742-8297
1742-8300
Abstract
Power generation systems using an ammonia-water mixture instead of water as working fluid have attracted much research interest over the past 20 years, since they have a potential to convert more energy in low-grade heat source into power and to improve the power generating processes in several ways. In this work comparative exergy analysis based on the second law of thermodynamics is carried out for ammonia-water based Rankine (AWR) and regenerative Rankine (AWRR) power generation cycles. Special attention is paid to analyse the effect of ammonia concentration in working fluid on the anergies in various system components including exhausted heat source and coolant, heat exchangers as well as the exergy efficiency. The analysis found that the anergies are significantly affected by ammonia concentration in working fluid. The main source for the anergy in the systems is strongly dependent on ammonia concentration and turbine inlet pressure, and it is quite different in AWR and AWRR systems.
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