Thermodynamic Analysis of Irreversible Heat-transformers
Absorption heat transformers extend the possibilities for efficient and environment-friendly energy conversion processes. Based on a general thermodynamic model of three-thermal cycles with finite thermal capacity of the heat sources, this paper is intent upon analyzing and optimizing the performanc...
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doaj-c36cdf441ba146d289dfcfe94f7845472020-11-25T03:01:48ZengUniversitas IndonesiaMakara Journal of Technology2355-27862356-45392015-08-01192909610.7454/mst.v19i2.3039288Thermodynamic Analysis of Irreversible Heat-transformersNiccolo` Giannetti0Arnas Arnas1Andrea Rocchetti2Kiyoshi Saito3Department of Applied Mechanics and Aerospace Engineering, Waseda University, 3-4-1 Okubo, 4 Shinjuku-ku, Tokyo 169-8555, JapanDepartment of Mechanical Engineering, Faculty ofEngineering, Universitas Indonesia, Depok 16424, IndonesiaDepartment of Industrial Engineering of Florence, Via Santa Marta 3, Firenze 50139, ItalyDepartment of Applied Mechanics and Aerospace Engineering, Waseda University, 3-4-1 Okubo, 4 Shinjuku-ku, Tokyo 169-8555, JapanAbsorption heat transformers extend the possibilities for efficient and environment-friendly energy conversion processes. Based on a general thermodynamic model of three-thermal cycles with finite thermal capacity of the heat sources, this paper is intent upon analyzing and optimizing the performance of absorption heat transformers, by including the influence of irreversibility in the analytical expression of the system efficiency. Dimensionless parameters for an overall optimization are defined and a first screening is performed to clarify their influence. Dependence on the main factors is highlighted to suggest how to change them in order to enhance the whole system performance. Under this point of view, the analysis evaluates coefficient of performance (COP) improvements and can be used to perform existing plant diagnostics, besides predicting the system performance. The use of this criterion is exemplified for specific heat transformers data from literature. This approach identifies the limitations imposed to the physical processes by accounting for the inevitable dissipation due to their constrained duration and intensity, and constitutes a general thermodynamic criterion for the optimization of three-thermal irreversible systems.http://journal.ui.ac.id/technology/journal/article/view/3142dimensionless parameters, efficiency improvement, heat transformers, irreversibility, three-thermal systems |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Niccolo` Giannetti Arnas Arnas Andrea Rocchetti Kiyoshi Saito |
spellingShingle |
Niccolo` Giannetti Arnas Arnas Andrea Rocchetti Kiyoshi Saito Thermodynamic Analysis of Irreversible Heat-transformers Makara Journal of Technology dimensionless parameters, efficiency improvement, heat transformers, irreversibility, three-thermal systems |
author_facet |
Niccolo` Giannetti Arnas Arnas Andrea Rocchetti Kiyoshi Saito |
author_sort |
Niccolo` Giannetti |
title |
Thermodynamic Analysis of Irreversible Heat-transformers |
title_short |
Thermodynamic Analysis of Irreversible Heat-transformers |
title_full |
Thermodynamic Analysis of Irreversible Heat-transformers |
title_fullStr |
Thermodynamic Analysis of Irreversible Heat-transformers |
title_full_unstemmed |
Thermodynamic Analysis of Irreversible Heat-transformers |
title_sort |
thermodynamic analysis of irreversible heat-transformers |
publisher |
Universitas Indonesia |
series |
Makara Journal of Technology |
issn |
2355-2786 2356-4539 |
publishDate |
2015-08-01 |
description |
Absorption heat transformers extend the possibilities for efficient and environment-friendly energy conversion processes. Based on a general thermodynamic model of three-thermal cycles with finite thermal capacity of the heat sources, this paper is intent upon analyzing and optimizing the performance of absorption heat transformers, by including the influence of irreversibility in the analytical expression of the system efficiency. Dimensionless parameters for an overall optimization are defined and a first screening is performed to clarify their influence. Dependence on the main factors is highlighted to suggest how to change them in order to enhance the whole system performance. Under this point of view, the analysis evaluates coefficient of performance (COP) improvements and can be used to perform existing plant diagnostics, besides predicting the system performance. The use of this criterion is exemplified for specific heat transformers data from literature. This approach identifies the limitations imposed to the physical processes by accounting for the inevitable dissipation due to their constrained duration and intensity, and constitutes a general thermodynamic criterion for the optimization of three-thermal irreversible systems. |
topic |
dimensionless parameters, efficiency improvement, heat transformers, irreversibility, three-thermal systems |
url |
http://journal.ui.ac.id/technology/journal/article/view/3142 |
work_keys_str_mv |
AT niccologiannetti thermodynamicanalysisofirreversibleheattransformers AT arnasarnas thermodynamicanalysisofirreversibleheattransformers AT andrearocchetti thermodynamicanalysisofirreversibleheattransformers AT kiyoshisaito thermodynamicanalysisofirreversibleheattransformers |
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1724691874803875840 |