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Investigation of the Effectiveness of Current Provisions for Ventilation of Cavities (Wall, Floor, Roof) in Housing. Annex B, Prediction of Building Subfloor Cavity Airflows Using CAFE and BREVENT
The report contains the results of mathematical modelling of subfloor ventilation, carried out to predict what rate and pattern of airflow may be expected for different floor geometries (using CAFE, Computer Aided Flow Evaluation, developed by W S Atkins Engineering Sciences), and overall ventilation rates for one house over a range of wind speeds and directions (using BREVENT, developed by the Building Research Establishment). (Copyright (c) TRADA 1990.)
Investigation of the Effectiveness of Current Provisions for Ventilation of Cavities (Wall, Floor, Roof) in Housing. Annex B, Prediction of Building Subfloor Cavity Airflows Using CAFE and BREVENT
The report contains the results of mathematical modelling of subfloor ventilation, carried out to predict what rate and pattern of airflow may be expected for different floor geometries (using CAFE, Computer Aided Flow Evaluation, developed by W S Atkins Engineering Sciences), and overall ventilation rates for one house over a range of wind speeds and directions (using BREVENT, developed by the Building Research Establishment). (Copyright (c) TRADA 1990.)
Investigation of the Effectiveness of Current Provisions for Ventilation of Cavities (Wall, Floor, Roof) in Housing. Annex B, Prediction of Building Subfloor Cavity Airflows Using CAFE and BREVENT
A. I. Gaze (author)
1990
99 pages
Report
No indication
English
Architectural Design & Environmental Engineering , Ventilation , Houses , Floors , Computerized simulation , Moisture , Thermal insulation , Residential buildings , Air flow , Mathematical models , United Kingdom , Foreign technology , CAFE computer program , CAFE(Computer Aided Flow Evaluation) , BREVENT computer program
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