Résumé
The underground pipe system (UPS) cools the intake outdoor air through the underground pipe before supplying it to the indoor space, so that the cooling load of the air-conditioning system of the building can be obviously reduced. In this paper, a quasi-three-dimensional heat transfer model was developed, which was made up with a two-dimensional unsteady heat transfer model of earth and a one-dimensional fluid model of air. The total heat transfer process was considered when the condensation happened on the pipe wall during the calculation. Moreover, the model was validated by the comparison between simulated result and measured data of a built project applied UPS. By means of this model, the earth-to-air heat exchanging process was simulated and the effect of the pipe parameters, such as the length, depth of burial and ventilation velocity of underground pipe system, on the cooling/heating capability was analyzed. The simulated result was also used to direct the design, operation and management of the UPS.
Détails
- Titre original : Study on the heat transfer model and the application of the underground pipe system.
- Identifiant de la fiche : 2008-2641
- Langues : Anglais
- Source : Clima 2007. WellBeing Indoors. Proceedings of the 9th REHVA World Congress [CD-ROM + Abstract book].
- Date d'édition : 10/06/2007
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Indexation
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- Auteurs : HUANG X., WANG Y., WU J.
- Date : 21/05/2006
- Langues : Anglais
- Source : ACRA-2006. Proceedings of the 3rd Asian conference on refrigeration and air conditioning.
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- Auteurs : KADOYA T., OHSAWA T., AOKI T.
- Date : 21/05/2006
- Langues : Anglais
- Source : ACRA-2006. Proceedings of the 3rd Asian conference on refrigeration and air conditioning.
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- Auteurs : CHUAH Y. K., CHEN C. T.
- Date : 2004
- Langues : Anglais
- Source : ASHRAE Transactions. 2004 Annual Meeting, Nashville, Tennessee, USA. Volume 110, part 2 + CD-ROM.
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- Auteurs : KUBOTA A., ICHIKAWA A., OGUNI K.
- Date : 05/12/2002
- Langues : Japonais
- Source : The International Symposium on HCFC Alternative Refrigerants and Environmental Technology 2002: Latest technology for Energy Conservation, Refrigerants and Recycling on Air-Conditioning and Refrigeration Equipment for the 21st century. Proceedings.
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- Auteurs : WANG G., LIU M., CLARIDGE D. E.
- Date : 27/01/2007
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- Source : ASHRAE Transactions. 2007 Winter Meeting. Volume 113, part 1 + CD-ROM.
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