One of the main components of a liquid desiccant cooling system is the regenerator. In a liquid desiccant air conditioner, outside air is dehumidified by liquid desiccant and cooled within the absorber. The diluted desiccant solution thus obtained has to be concentrated for reuse, by passing through the regenerator and the cycle is, consequently, repeated. The regenerator used in this application is a forced parallel flow type solar collector/regenerator. The regenerator has been designed and optimized and the prototype of the solar collector/regenerator has been built and tested. Calcium chloride has been used as the absorbent solution. The results of the tests conducted as a parametric analysis indicate that the air and solution mass flow-rates and the climatic conditions affect the regenerator performance. Furthermore, a comparison between the experimental data obtained and a previously developed model for a forced parallel flow solar collector/regenerator reveals that the experiments are in good agreement with the model predictions. Finally, it was concluded that the proposed solar collector/regenerator performs satisfactorily under the summer conditions of Adelaide, Australia.
[1]
Palanichamy Gandhidasan.
Simple analysis of a forced flow solar regeneration system
,
1982
.
[2]
Wasim Y. Saman,et al.
DESIGN AND EVALUATION OF A SOLAR REGENERATOR FOR A LIQUID DESICCANT SYSTEM
,
1988
.
[3]
Pai-Lu Wang,et al.
Experimental Study of a Forced Convection Solar Collector/Regenerator for Open-Cycle Absorption Cooling
,
1994
.
[4]
Palanichamy Gandhidasan,et al.
A simple analysis of an open regeneration system
,
1983
.
[5]
Wasim Saman,et al.
Modeling and performance of a forced flow solar collector/regenerator using liquid desiccant
,
2002
.
[6]
R. K. Collier,et al.
The analysis and simulation of an open cycle absorption refrigeration system
,
1979
.
[7]
D. R. Freitag,et al.
Principles of Heat Transfer
,
1997
.