<b>Energetic analysis of a commercial absorption refrigeration unit using an ammonia-water mixture

Autores

  • Josegil Jorge de Araújo Universidade Federal de Sergipe / Universidade Federal da Paraí­ba / Universidade Federal do Ceará
  • Carlos Antonio Cabral dos Santos Universidade Federal da Paraí­ba / Universidade Federal de Pernambuco
  • Carlos Almir de Holanda Universidade Federal do Ceará
  • João Batista Furlan Duarte Universidade Federal do Ceará
  • Alvaro Antonio Villa Ochoa Instituto Federal de Tecnologia de Pernambuco / Universidade Federal de Pernambuco
  • José Carlos Charamba Dutra Universidade Federal de Pernambuco

DOI:

https://doi.org/10.4025/actascitechnol.v39i4.29904

Palavras-chave:

air conditioning, absorption system, simulation, experimental results, COP.

Resumo

The ROBUR® absorption refrigeration system (ARS), model ACF60, with a capacity of 17.5 kW, is tested, modeled and simulated in the steady state. To simulate the thermal load a heating system with secondary coolant was used, in which a programmable logic controller (PLC) kept the inlet temperature EVA at around 285.15 K. The mathematical model used was based on balancing the mass, energy and ammonia concentrations and completed by closing equations such as, Newton's cooling equation. The mathematical model was implemented using the Engineering Equation Solver - EES®. The results obtained after modeling and a numerical permanent simulation are studied using the Duhring diagram. Potential points of internal heat recovery are visualized, and by using graphs of the binary mixture, it is possible to identify the thermodynamic states of all monitored points. The data obtained in the numerical simulation of the ARS was compared with data acquired in the actual tests of the ARS with the ROBUR® apparatus.

 

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Publicado

2017-09-15

Como Citar

Araújo, J. J. de, Santos, C. A. C. dos, Holanda, C. A. de, Duarte, J. B. F., Ochoa, A. A. V., & Dutra, J. C. C. (2017). <b>Energetic analysis of a commercial absorption refrigeration unit using an ammonia-water mixture. Acta Scientiarum. Technology, 39(4), 439–448. https://doi.org/10.4025/actascitechnol.v39i4.29904

Edição

Seção

Engenharia Mecânica

 

0.8
2019CiteScore
 
 
36th percentile
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0.8
2019CiteScore
 
 
36th percentile
Powered by  Scopus

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