Thermal Assessment of a Ventilated Double Skin Facade Component with a Set of Air Filtering Photocatalytic Slats in the Cavity

被引:4
作者
Roig, Oriol [1 ]
Cuerva, Eva [2 ,3 ]
Pardal, Cristina [1 ]
Guardo, Alfredo [4 ]
Isalgue, Antonio [5 ]
Lopez-Besora, Judit [1 ]
机构
[1] ETSAB UPC Edif Segarra, Tecnol Arquitectura, Ave Diagonal, 649, Barcelona 08028, Spain
[2] ETSEIB UPC, Dept Project & Construct Engn, Ave Diagonal, 647, Barcelona 08028, Spain
[3] Grp Construct Res & Innovat GRIC, C-Colom 11, Edif TR5, Terrassa 08222, Spain
[4] Escola Engn Barcelona Est EEBE, Ctr Diagnost Ind & Fluidodinam UPC CDIF, Fluid Mech Dept, Edif A C-Eduard Maristany, 16, Barcelona 08019, Spain
[5] UPC, Dept Fis, Edif NT1, Pla Palau, 18, Barcelona 08003, Spain
关键词
indoor air quality; integrated facade systems; active filtering facade; facade thermal performance; computational fluid dynamics; TIO2; BUILDINGS; TEMPERATURE; PERFORMANCE; SIMULATION; COMFORT;
D O I
10.3390/buildings13020272
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Indoor air quality is a crucial factor when evaluating habitability, especially in developed countries, where people spend most of their time indoors. This paper presents a novel double skin facade (DSF) system that combines physical and photocatalytic filtering strategies. The air purification system is made up of fixed slats that are both solar protection and air purification system. The objective of this work is to determine the thermal behaviour of the proposed system, so that its suitability for use in various environments may be assessed. This was carried out using a physical 1:1 scale model and a computational fluid dynamics (CFD) model. The maximum temperature inside the scale model cavity was 17-20 degrees C higher than outdoor air. Additionally, it was discovered that the airflow through the DSF would require forced ventilation. To determine the emissivity values of the photocatalytic coating, additional experimental measurements were made. The CFD model was tested for summer and winter conditions in Barcelona, Chicago, and Vancouver. The average increase in the intake air temperature was around 14.5 degrees C in winter and 12 degrees C in summer, finding that the system has its main use potential in temperate or cold areas with many hours of solar radiation.
引用
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页数:23
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