Optimal control of desiccant cooling using solar energy.
Control óptimo de la refrigeración desecante utilizando energía solar.
Author(s) : CHANG Y. S., PI C. H., KANG B. H.
Type of article: Article
Summary
The performance simulation has been conducted based on a numerical model of the heat and mass transfer process in a desiccant wheel, which is a core component of a desiccant cooling system. The simulation model was validated by comparing simulation results with experimental data. The numerical results are in reasonable agreement with experimental results. The effect of the rotation period on the performance of desiccant wheel has been investigated for various operation conditions; temperature (50 to 70°C), humidity ratio (0.01 to 0.02 kg/kg DA), and flow rate of regeneration air. The optimal rotation period was obtained based on maximum moisture removal capacity (MRC) of desiccant wheel, and the optimal rotation period varies with operation conditions. Also it is found that the nominal rotation period is enough to be applied to control desiccant wheel speed in most operation conditions.
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Details
- Original title: Control óptimo de la refrigeración desecante utilizando energía solar.
- Record ID : 30010910
- Languages: Spanish
- Source: Frío Calor Aire acondicionado - vol. 42 - n. 466
- Publication date: 2014/02
Links
- See translations: Optimal control of desiccant cooling using solar energy.
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Optimal control of desiccant cooling using sola...
- Author(s) : CHANG Y. S., PI C. H., KANG B. H.
- Date : 2012/06/25
- Languages : English
- Source: 10th IIR-Gustav Lorentzen Conference on Natural Working Fluids (GL2012). Proceedings. Delft, The Netherlands, June 25-27, 2012.
- Formats : PDF
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- Languages : English
- Source: Proceedings of the 26th IIR International Congress of Refrigeration: Paris , France, August 21-25, 2023.
- Formats : PDF
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- Author(s) : YAMAGUCHI S., SAITO K.
- Date : 2012
- Languages : Japanese
- Source: Transactions of the Japan Society of Refrigerating and Air Conditioning Engineers - vol. 29 - n. 1
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- Date : 2009/01
- Languages : Chinese
- Source: HV & AC - vol. 39 - n. 220
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- Author(s) : HANIF S., MIYAZAKI T., KOYAMA S.
- Date : 2017/08/07
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