Thermal, energy and lighting simulation of facades with shading devices in the tropical climate

The use of daylight in buildings is an important design strategy since it minimizes energy consumption with electric lighting and provides greater visual quality for its users. However, this strategy can result in excessive thermal gains and glare, causing thermal discomfort in work environments. In...

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Detalles Bibliográficos
Autores: Dias, Luma de Souza, Souza, Henor Artur de, Gomes, Adriano Pinto, Caetano, Lucas Fonseca, Camargos, Bruno Henrique Lourenço, Tribess, Arlindo
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2023
País:Brasil
Institución:Universidade Estadual de Campinas (UNICAMP)
Repositorio:PARC (Campinas)
Idioma:portugués
OAI Identifier:oai:ojs.periodicos.sbu.unicamp.br:article/8667538
Acceso en línea:https://periodicos.sbu.unicamp.br/ojs/index.php/parc/article/view/8667538
Access Level:acceso abierto
Palabra clave:Brise-soleil
Vidros
Fachada envidraçada
Iluminação natural
Eficiência energética
Glazing
Glazed façade
Daylight
Energy efficiency
Descripción
Sumario:The use of daylight in buildings is an important design strategy since it minimizes energy consumption with electric lighting and provides greater visual quality for its users. However, this strategy can result in excessive thermal gains and glare, causing thermal discomfort in work environments. In order to seek a combination between visual quality and good thermal, energy and daylight performance, this study analyzes the influence of the type of shading device and type of glazing, applied to a commercial building with a glazed facade, located in regions of tropical climate. The building without the use of shading device is also included in the analysis, as a reference. Computer simulations are performed with Daysim and EnergyPlus softwares considering the building’s west facade. When considering the type of glazing parameter, the models that present the best behavior are those with common glazing. When results between the types of shading devices are compared, it can be seen that models with vertical shading devices have much higher values ​​of solar radiation rate than models with horizontal shading devices, bringing benefits of higher levels of daylight to the environment. The results, considering the number of hours in comfort conditions, indicate that the horizontal shading device model with laminated glazing in green color is the most suitable, since it has the lowest energy consumption and more hours of comfort. It is noteworthy, as contribution of the present work, more suitable models of shading devices are obtained for designing shading devices, applied to glazed facades in tropical climate regions.