Artículo
Attempt of integration of a small commercial ammonia-water absorption refrigerator with a solar concentrator: experience and results
Título:
Tentative d'intégration d'un réfrigérateur commercial à absorption à ammoniac / eau de petite taille et d'un capteur solaire: expérience acquise et résultats
Fecha de publicación:
12/2011
Editorial:
Elsevier Science
Revista:
International Journal Of Refrigeration
ISSN:
0140-7007
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
The integration of a small commercial ammonia-water absorption refrigerator with a solar concentrator as heat source was analyzed theoretically and experimentally. Operation parameters of the fridge were determined by parametric fitting experimental data using a thermodynamic model of the cycle leading to a working pressure of 25 bar, weak and strong solution concentrations of 15% and 30% respectively and a COP of ∼0.18. As sold, the fridge can operate with a reduction in the electric power supply of up to 40%. Results showed that the Parabolic Concentrator (PC) used can deliver temperatures above 200 °C for almost 6 h with an average useful power delivery and efficiency of 530 W and 26% respectively. During laboratory test runs it was possible to hold the refrigeration cycle running in a very unstable regime despite the inappropriate heat distribution in the generator unit due to the lower temperature heat source used (220 °C). However, outdoor testing with the sun as energy source proved unsuccessful due to the higher heat losses that occur at the pipes connecting the PC with the fridge.
Palabras clave:
Ammonia
,
Absorption System
,
Solar Refrigeration
,
Solar Concentration
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Colecciones
Articulos(INENCO)
Articulos de INST.DE INVEST.EN ENERGIA NO CONVENCIONAL
Articulos de INST.DE INVEST.EN ENERGIA NO CONVENCIONAL
Citación
Busso, A.; Franco, Ada Judith; Sogari, N.; Caceres, M.; Attempt of integration of a small commercial ammonia-water absorption refrigerator with a solar concentrator: experience and results; Elsevier Science; International Journal Of Refrigeration; 34; 8; 12-2011; 1760–1775
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