The thermal behaviour of a high thermal inertia ventilated wall made of local bricks in Central Italy is investigated. According to laboratory results, a real scale ventilated facade 8.5 m high was built as a perimeter wall of a gym. The behaviour of the southern facade was monitored continuously for 26 months in different seasons, alternating different openings configurations. Nonventilated, partially ventilated, and ventilated configuration were compared; the wall height influence on the temperatures within the ventilation gap, their phase displacement, and air velocity fields were investigated. Experimental results were used to implement and validate a 2D CFD transient model.

Analysis of the energy performance of a new ventilated brick wall: behaviour of real scale prototype under different ventilation configuration and weather conditions

Palladino D.;
2022-01-01

Abstract

The thermal behaviour of a high thermal inertia ventilated wall made of local bricks in Central Italy is investigated. According to laboratory results, a real scale ventilated facade 8.5 m high was built as a perimeter wall of a gym. The behaviour of the southern facade was monitored continuously for 26 months in different seasons, alternating different openings configurations. Nonventilated, partially ventilated, and ventilated configuration were compared; the wall height influence on the temperatures within the ventilation gap, their phase displacement, and air velocity fields were investigated. Experimental results were used to implement and validate a 2D CFD transient model.
2022
978-1-7750520-2-9
ventilated wall, CFD, real scale prototype, experimental performance, ventilation openings configuration
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12079/73713
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