The roofs of houses located at middle latitudes receive significant solar radiation useful to supply their own energy demands and to feed back into the urban electricity network. However, solar panels should be properly integrated into roofs. This study analyzed roof geometry and integrated solar performance of Photovoltaic, thermal-photovoltaic, and hybrid solar collection technologies on dwelling cases selected from a sample of recent housing developments in Concepción, Chile. Hour-by-hour energy generation estimates and comparisons with demand levels were calculated for representative days during seasons of maximum, minimum as well as mid-season. These estimates took into account the roof tilt and orientation effects also. Trnsys@ software was used to determine electricity supply and F-Chart tool for thermal energy supply. The results show five times more panels can be placed on the largest and most regular shaped roof sections than on those with the smallest and most irregular shapes. The house model with the largest roof section can provide up to six times more energy than the model with the smallest second roof section in different seasons and systems. This paper thus provides new findings on the performance of solar technologies when related to home energy demands and roof geometry.
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1 December 2016
Research Article|
December 01 2016
Assessment of Integrated Performance and Roof Geometry for Solar Energy
Esteban Zalamea León;
Universidad de Cuenca, Facultad de Arquitectura y Urbanismo
, 12 de Abril y Agustín Cueva, Cuenca, Ecuador
, Tel: +593 983311604*Corresponding author, Esteban Zalamea León
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Rodrigo García Alvarado;
Rodrigo García Alvarado
Universidad del Bío Bio, Dept. de Diseño y Teoría de la Arquitectura
, Collao 1202, Concepión, Chile
, Tel: +56 41 3111409
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Reinaldo Sánchez Arriagada;
Reinaldo Sánchez Arriagada
Universidad del Bío Bio, Dept. de Ingeniería Mecánica
, Collao 1202, Concepión, Chile
, Tel: +56 41 2731440
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Sergio Baeriswy
Sergio Baeriswy
Universidad del Bío Bio, Dept. de Planificación y Diseño Urbano UBB.
, Collao 1202, Concepión, Chile
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*Corresponding author, Esteban Zalamea León
Publisher: Emerald Publishing
Online ISSN: 2633-9838
Print ISSN: 0168-2601
© 2016 Open House International
2016
Licensed re-use rights only.
Open House International (2016) 41 (4): 73–81.
Citation
León EZ, Alvarado RG, Arriagada RS, Baeriswy S (2016), "Assessment of Integrated Performance and Roof Geometry for Solar Energy". Open House International, Vol. 41 No. 4 pp. 73–81, doi: https://doi.org/10.1108/OHI-04-2016-B0010
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