Summary
A single solid adsorption refrigeration tube driven by waste heat which has no throttling or moving part comprises a generator and a receiver/condenser/evaporator. A single generator consists of a 16 mm stainless steel tube lined with a layer of zeolites that are fixed on the wall by wire gauze. Water enclosed in the module is the refrigerant. The air-conditioning system with a larger refrigerating power can be constituted based on a number of simple tubular adsorption modules to meet the need. Because of the features of its configuration, the cycle characteristics of the adsorption cooling tube is different from the basic adsorption refrigeration cycle. The analysis and discussion on the cycle were conducted and the performance of the tube was studied by experiments. The authors' results are important for the improvement of tube and the optimization design of air-conditioning systems.
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Details
- Original title: [In Chinese. / En chinois.]
- Record ID : 2006-0744
- Languages: Chinese
- Source: Journal of Refrigeration - vol. 26 - n. 104
- Publication date: 2005/06
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Indexing
- Themes: Absorption and adsorption systems
- Keywords: Tube; Design; Heat recovery; Adsorber; Absorption system; Zeolite; Performance; Water
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AMMONIA-WATER ABSORPTION REFRIGERATING MACHINE.
- Author(s) : KUNUGI Y.
- Date : 1989
- Languages : Japanese
- Source: Refrigeration - vol. 64 - n. 745
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REFRIGERATING MACHINES POWERED BY HEAT.
- Author(s) : TOUBER S.
- Date : 1982/08
- Languages : Dutch
- Source: Koeltech. Klim. - vol. 75 - n. 8
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CUT-OFF TEMPERATURES OF AQUA-AMMONIA ABSORPTION...
- Author(s) : TYAGI K. P.
- Date : 1988
- Languages : English
- Source: Heat Recov. Syst. CHP - vol. 8 - n. 4
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A study on the advanced performance of an absor...
- Author(s) : YOON J. I., CHOI K. H., MOON C. G., et al.
- Date : 2003/04
- Languages : English
- Source: Applied Thermal Engineering - vol. 23 - n. 6
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A STUDY OF ECONOMISER PERFORMANCE IN A WATER-LI...
- Author(s) : EISA M. A. R., DEVOTTA S., HOLLAND F. A.
- Date : 1985
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 28 - n. 12
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