Comparative performance evaluation of the mechanical and adsorption hybrid cooling systems for the cascaded and the serial connected evaporators configurations
The goal of this study is to investigate comparatively the performance of an integrated cooling system comprised of an adsorption cooling cycle (ADC) and a vapor cooling cycle (VCC) with two different configurations, namely (cascaded and serial connected evaporators). The ADC chiller relies on the t...
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doaj-d4ef1ef5481047f2b7a72ea8ed81c9082021-09-27T04:26:31ZengElsevierCase Studies in Thermal Engineering2214-157X2021-12-0128101489Comparative performance evaluation of the mechanical and adsorption hybrid cooling systems for the cascaded and the serial connected evaporators configurationsMuhsin Kiliç0Mustafa Anjrini1Corresponding author.; Department of Mechanical Engineering, Engineering Faculty, Bursa Uludağ University, Bursa, TurkeyDepartment of Mechanical Engineering, Engineering Faculty, Bursa Uludağ University, Bursa, TurkeyThe goal of this study is to investigate comparatively the performance of an integrated cooling system comprised of an adsorption cooling cycle (ADC) and a vapor cooling cycle (VCC) with two different configurations, namely (cascaded and serial connected evaporators). The ADC chiller relies on the thermal compressor with two adsorption beds, which use three different adsorbents (RD silica gel, RD silica gel 2060, and silica gel- LiCl) and water (adsorbate) as a working pair separately. The thermal compressor operates by outside waste or solar-based thermal sources that have low-level temperatures below 100 °C. R152A was selected for the VCC chiller. This article pays particular attention to evaluating the ADC adsorbents and (ADC-VCC) connection configurations based on the first and second law of thermodynamics. The investigations have been implemented at different ADC evaporator temperatures. The effect of adsorption cycle time and ambient temperature on the overall coefficient of performance were also investigated and discussed for both configurations. Furthermore, the ADC and VCC coefficient of performances and the performance ratio (PR) were investigated at different ADC evaporator temperatures. The relation between the adsorbent mass and the cooling load was also discussed in this paper.http://www.sciencedirect.com/science/article/pii/S2214157X21006523AdsorbentsCombined cooling systemDifferent configurationsExergyPerformance |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Muhsin Kiliç Mustafa Anjrini |
spellingShingle |
Muhsin Kiliç Mustafa Anjrini Comparative performance evaluation of the mechanical and adsorption hybrid cooling systems for the cascaded and the serial connected evaporators configurations Case Studies in Thermal Engineering Adsorbents Combined cooling system Different configurations Exergy Performance |
author_facet |
Muhsin Kiliç Mustafa Anjrini |
author_sort |
Muhsin Kiliç |
title |
Comparative performance evaluation of the mechanical and adsorption hybrid cooling systems for the cascaded and the serial connected evaporators configurations |
title_short |
Comparative performance evaluation of the mechanical and adsorption hybrid cooling systems for the cascaded and the serial connected evaporators configurations |
title_full |
Comparative performance evaluation of the mechanical and adsorption hybrid cooling systems for the cascaded and the serial connected evaporators configurations |
title_fullStr |
Comparative performance evaluation of the mechanical and adsorption hybrid cooling systems for the cascaded and the serial connected evaporators configurations |
title_full_unstemmed |
Comparative performance evaluation of the mechanical and adsorption hybrid cooling systems for the cascaded and the serial connected evaporators configurations |
title_sort |
comparative performance evaluation of the mechanical and adsorption hybrid cooling systems for the cascaded and the serial connected evaporators configurations |
publisher |
Elsevier |
series |
Case Studies in Thermal Engineering |
issn |
2214-157X |
publishDate |
2021-12-01 |
description |
The goal of this study is to investigate comparatively the performance of an integrated cooling system comprised of an adsorption cooling cycle (ADC) and a vapor cooling cycle (VCC) with two different configurations, namely (cascaded and serial connected evaporators). The ADC chiller relies on the thermal compressor with two adsorption beds, which use three different adsorbents (RD silica gel, RD silica gel 2060, and silica gel- LiCl) and water (adsorbate) as a working pair separately. The thermal compressor operates by outside waste or solar-based thermal sources that have low-level temperatures below 100 °C. R152A was selected for the VCC chiller. This article pays particular attention to evaluating the ADC adsorbents and (ADC-VCC) connection configurations based on the first and second law of thermodynamics. The investigations have been implemented at different ADC evaporator temperatures. The effect of adsorption cycle time and ambient temperature on the overall coefficient of performance were also investigated and discussed for both configurations. Furthermore, the ADC and VCC coefficient of performances and the performance ratio (PR) were investigated at different ADC evaporator temperatures. The relation between the adsorbent mass and the cooling load was also discussed in this paper. |
topic |
Adsorbents Combined cooling system Different configurations Exergy Performance |
url |
http://www.sciencedirect.com/science/article/pii/S2214157X21006523 |
work_keys_str_mv |
AT muhsinkilic comparativeperformanceevaluationofthemechanicalandadsorptionhybridcoolingsystemsforthecascadedandtheserialconnectedevaporatorsconfigurations AT mustafaanjrini comparativeperformanceevaluationofthemechanicalandadsorptionhybridcoolingsystemsforthecascadedandtheserialconnectedevaporatorsconfigurations |
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1716867282756435968 |