Dadpour, Daryoush, Deymi-Dashtebayaz, Mahdi, Poncet, Sébastien, Agelin-Chaab, Martin, Hangan, Horia et Peerhossaini, Hassan.
2025.
« Energy, exergy, and exergoeconomic analyses of solar-powered cooling systems for data centers in Montreal: A comparative study of three phase change materials ».
In Proceedings of the CSME-CFDSC-CSR 2025 International Congress (Montreal, QC, Canada, May 25-28, 2025)
Coll. « Progress in Canadian Mechanical Engineering », vol. 8.
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412 - Energy, exergy, and exergoeconomic.pdf - Version publiée Licence d'utilisation : Tous les droits réservés aux détenteurs du droit d'auteur. Télécharger (602kB) | Prévisualisation |
Résumé
This research explores the creation of a sophisticated solar-powered cooling system designed specifically for data centers, tackling the issue of fluctuating solar energy availability. The system features thermal energy storage (TES) enhanced with phase change materials (PCMs) to maintain a stable thermal output when solar power is not available. The study assesses three PCMs—Adipic acid, Dimethyl terephthalate, and Suberic acid—considering factors like density, latent heat of fusion, melting point, and specific heat capacity. Dimethyl terephthalate emerged as the top performer in terms of exergy efficiency, achieving as high as 80% during the PCM charging phase, which underscores its effectiveness for the intended application.
| Type de document: | Compte rendu de conférence |
|---|---|
| Éditeurs: | Éditeurs ORCID Hof, Lucas A. NON SPÉCIFIÉ Di Labbio, Giuseppe NON SPÉCIFIÉ Tahan, Antoine NON SPÉCIFIÉ Sanjosé, Marlène NON SPÉCIFIÉ Lalonde, Sébastien NON SPÉCIFIÉ Demarquette, Nicole R. NON SPÉCIFIÉ |
| Date de dépôt: | 18 déc. 2025 15:09 |
| Dernière modification: | 18 déc. 2025 15:09 |
| URI: | https://espace2.etsmtl.ca/id/eprint/32383 |
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