DOI | Trouver le DOI : https://doi.org/10.1016/j.solener.2019.08.034 |
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Auteur | Rechercher : Beausoleil-Morrison, IanIdentifiant ORCID : https://orcid.org/0000-0001-7123-841X; Rechercher : Kemery, Briana; Rechercher : Wills, Adam D.1; Rechercher : Meister, Curtis |
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Affiliation | - Conseil national de recherches du Canada. Construction
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Format | Texte, Article |
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Sujet | seasonal thermal storage; combined space and domestic hot water heating; high solar fraction; dynamic annual simulations |
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Résumé | The majority of the space and domestic hot water heating needs of houses in cold climates can be supplied by solar energy, but only if long-term (seasonal) storage is employed to enable solar energy collected during the summer and autumn to be used during winter. Most seasonal storage applications to date have been for community-scale systems, although there have been a few experimental and simulation studies of building-scale applications, which offer reduced losses from transmission networks due to the proximity between building-mounted solar collectors and the seasonal store. A simulation-based study has been performed to design a building-scale solar thermal system with seasonal storage for a research house with a heated floor area of approximately 150 m². Parametric simulations revealed that a solar fraction exceeding 90% could be achieved for many combinations of solar collector area and seasonal store volume. A solar collector gross area of 41.6 m² and a seasonal store volume of 36 m³ were chosen for this installation, which is expected to achieve a solar fraction in the range of 87–98%. |
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Date de publication | 2019-08-30 |
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Maison d’édition | Elsevier |
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Dans | |
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Langue | anglais |
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Publications évaluées par des pairs | Oui |
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Exporter la notice | Exporter en format RIS |
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Signaler une correction | Signaler une correction (s'ouvre dans un nouvel onglet) |
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Identificateur de l’enregistrement | 9c1c3444-4041-4be6-9c60-74bdf026d365 |
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Enregistrement créé | 2021-02-22 |
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Enregistrement modifié | 2021-02-22 |
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