Domínguez-Hernández, J; Pérez-Bella, J M; Alonso-Martínez, M; Cano-Suñén, E and del Coz-Díaz, J J (2017) Assessment of water penetration risk in building facades throughout Brazil. Building Research & Information, 45(5), pp. 492-507. ISSN 0961-3218
Abstract
The penetration of atmospheric water (rain) into facades creates problems for building habitability and the durability of construction materials. This study analyses the exposure of Brazilian facades to the two main climate factors responsible for this penetration: wind-driven rain and driving rain wind pressure. Daily weather records (spanning 2005-14, from 171 weather stations) were analysed. Both exposure factors were combined to assess the risk of water penetration at each site. The relationships between the different exposure indices calculated from daily, monthly and annual records were determined and compared with results from other countries. From this analysis, detailed isopleth maps are provided that allow a graphical characterization of the moisture exposure conditions of facades anywhere in Brazil. A comprehensive characterization of the water penetration exposure in Brazilian enclosures is created and can be used to establish normative design requirements for actual climatic conditions in each area of the country. In general, an increased risk of penetration was identified in the flat areas of the South and Northeast regions of the country. The sites located in the Amazon basin present comparatively lower risks, despite a greater amount of rainfall, because the wind intensity is less in these inland areas.;The penetration of atmospheric water (rain) into facades creates problems for building habitability and the durability of construction materials. This study analyses the exposure of Brazilian facades to the two main climate factors responsible for this penetration: wind-driven rain and driving rain wind pressure. Daily weather records (spanning 2005-14, from 171 weather stations) were analysed. Both exposure factors were combined to assess the risk of water penetration at each site. The relationships between the different exposure indices calculated from daily, monthly and annual records were determined and compared with results from other countries. From this analysis, detailed isopleth maps are provided that allow a graphical characterization of the moisture exposure conditions of facades anywhere in Brazil. A comprehensive characterization of the water penetration exposure in Brazilian enclosures is created and can be used to establish normative design requirements for actual climatic conditions in each area of the country. In general, an increased risk of penetration was identified in the flat areas of the South and Northeast regions of the country. The sites located in the Amazon basin present comparatively lower risks, despite a greater amount of rainfall, because the wind intensity is less in these inland areas.;The penetration of atmospheric water (rain) into facades creates problems for building habitability and the durability of construction materials. This study analyses the exposure of Brazilian facades to the two main climate factors responsible for this penetration: wind-driven rain and driving rain wind pressure. Daily weather records (spanning 2005-14, from 171 weather stations) were analysed. Both exposure factors were combined to assess the risk of water penetration at each site. The relationships between the different exposure indices calculated from daily, monthly and annual records were determined and compared with results from other countries. From this analysis, detailed isopleth maps are provided that allow a graphical characterization of the moisture exposure conditions of facades anywhere in Brazil. A comprehensive characterization of the water penetration exposure in Brazilian enclosures is created and can be used to establish normative design requirements for actual climatic conditions in each area of the country. In general, an increased risk of penetration was identified in the flat areas of the South and Northeast regions of the country. The sites located in the Amazon basin present comparatively lower risks, despite a greater amount of rainfall, because the wind intensity is less in these inland areas.;
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | wind-driven rain; rain; buildings; facade design; brazil; risk; climatic conditions; water tightness; wind; performance; field-measurements; pressure; methodology; construction & building technology; time resolution; insulation; test parameters; driving-rain; exposure; climatology; climate; construction materials; weather stations; design analysis; risk factors; design; habitability; mathematical analysis; risk assessment; construction; facades; moisture; rainfall; durability; wind pressure; river basins; atmospheric water; weather; stations; penetration; enclosures |
| Index terms: | climatic condition, building technology, maps, enclosure, rainfall, driving rain, time resolution, durability, Brazil, wind pressure, risk factor, water tightness, methodology, rain, construction material, risk assessment, mathematical analysis, insulation, habitability, atmospheric water, river basins, wind-driven rain, weather, design analysis, climatology, test parameter, penetration, exposure |
| Subjects: | building materials, design analysis, analytical methods, material degradation and durability, environmental science, data analysis and analytics, air quality, climate science, engineering systems, building performance, project controls, market analysis, environmental hazards, environmental engineering, spatial and geospatial analysis, research methods, public and environmental health, architectural elements, structural engineering, financial risk, Geography |
| Topics: | Geographical Context, Research Practice, Construction Materials, Engineering Principles, Cost Management, Health and Safety, Sustainability, Design Practice, Time Control |
| Descriptive scope: | 4 PCTA |
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