Benefits of latent thermal energy storage in the retrofit of Canadian high-rise residential buildings
Author:
Publisher
Springer Science and Business Media LLC
Subject
Energy (miscellaneous),Building and Construction
Link
http://link.springer.com/article/10.1007/s12273-018-0436-x/fulltext.html
Reference45 articles.
1. Ascione F, Bianco N, De Masi RF, de Rossi F, Vanoli GP (2014). Energy refurbishment of existing buildings through the use of phase change materials: Energy savings and indoor comfort in the cooling season. Applied Energy, 113: 990–1007.
2. Baetens R, Jelle BP, Gustavsen A (2010). Phase change materials for building applications: A state-of-the-art review. Energy and Buildings, 42: 1361–1368.
3. Bastani A, Haghighat F, Manzano CJ (2015). Investigating the effect of control strategy on the shift of energy consumption in a building integrated with PCM wallboard. Energy Procedia, 78: 2280–2285.
4. Bennet IE, O’Brien W (2017). Field study of thermal comfort and occupant satisfaction in Canadian condominiums. Architectural Science Review, 60: 27–39.
5. Berardi U, Manca M (2017). The energy saving and indoor comfort improvements with latent thermal energy storage in building retrofits in Canada. Energy Procedia, 111: 462–471.
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