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Auteur Z. Tamainot-Telto |
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Optimal cycle selection in carbon-ammonia adsorption cycles / S.J. Metcalf in International journal of refrigeration, Vol. 35 N° 3 (Mai 2012)
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Titre : Optimal cycle selection in carbon-ammonia adsorption cycles Titre original : Choix du cycle optimal parmi des cycles à adsorption au charbon actif / ammoniac Type de document : texte imprimé Auteurs : S.J. Metcalf, Auteur ; R.E. Critoph, Auteur ; Z. Tamainot-Telto, Auteur Année de publication : 2012 Article en page(s) : pp. 571–580 Note générale : Génie mécanique Langues : Anglais (eng) Mots-clés : Adsorption Heat pump Ammonia Activated carbon Modelling Résumé : Computational modelling of multiple-bed and thermal wave adsorption cycles is carried out in order to determine which method of heat recovery gives the superior trade off between coefficient of performance (COP) and power density (the power output per unit mass or volume of machine). The modelling is performed for the activated carbon-ammonia pair with a high power density plate heat exchanger type generator. It is discovered that multiple-bed cycles give a superior trade-off between COP and power density and are therefore recommended over thermal wave cycles. The principal application is considered to be a gas fired heat pump and it is found that the technology compares favourably with competing systems. ISSN : 0140-7007 En ligne : http://www.sciencedirect.com/science/article/pii/S014070071100274X
in International journal of refrigeration > Vol. 35 N° 3 (Mai 2012) . - pp. 571–580[article] Optimal cycle selection in carbon-ammonia adsorption cycles = Choix du cycle optimal parmi des cycles à adsorption au charbon actif / ammoniac [texte imprimé] / S.J. Metcalf, Auteur ; R.E. Critoph, Auteur ; Z. Tamainot-Telto, Auteur . - 2012 . - pp. 571–580.
Génie mécanique
Langues : Anglais (eng)
in International journal of refrigeration > Vol. 35 N° 3 (Mai 2012) . - pp. 571–580
Mots-clés : Adsorption Heat pump Ammonia Activated carbon Modelling Résumé : Computational modelling of multiple-bed and thermal wave adsorption cycles is carried out in order to determine which method of heat recovery gives the superior trade off between coefficient of performance (COP) and power density (the power output per unit mass or volume of machine). The modelling is performed for the activated carbon-ammonia pair with a high power density plate heat exchanger type generator. It is discovered that multiple-bed cycles give a superior trade-off between COP and power density and are therefore recommended over thermal wave cycles. The principal application is considered to be a gas fired heat pump and it is found that the technology compares favourably with competing systems. ISSN : 0140-7007 En ligne : http://www.sciencedirect.com/science/article/pii/S014070071100274X Exemplaires
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