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Author(s):     
 
Kehl, D.; Weber, H.; Hauswirth, S.
 
Title:     
 

 
Abstract:     
 
Nach Durchführung einer großen Schweizer Forschungsinitiative zum Thema “Brandschutz im Holzbau” sind seit 2005 Außenwandbekleidungen aus Holz unter Zuhilfenahme von bestimmten Brandschutzmaßnahmen bis zur Hochhausgrenze (22 m) möglich [1]. Dazu zählen unter anderem auch Außenwandbekleidungen, deren Hinterlüftungsraum geschossweise unterbrochen und oben verschlossen wird. Solche Fassaden weisen brandschutztechnische Vorteile auf, da sie die Brandweiterleitung hinter der Bekleidung reduzieren bzw. verhindern. In diesem Zusammenhang stellte sich die Frage, ob eine Hinterlüftung von Holzfassaden aus bauphysikalischer Sicht überhaupt notwendig ist. Im Rahmen eines Forschungsvorhabens an der Berner Fachhochschule  -  Architektur, Holz und Bau in Biel/Bienne wurde dieser Frage nachgegangen [2].

Is ventilation of timber façades essential?
Following a major Swiss research initiative, “Fire protection in Timber Structures”, exterior timber wall claddings incorporating specific fire protection measures have been permitted up to the high-rise limit of 22 m since 2005 [1]. This includes exterior wall claddings with a ventilation space that is interrupted and closed off from above at each storey level. Such façades have advantages when it comes to fire protection as they reduce or prevent the spread of fire behind the cladding. This has raised the question of whether the ventilation of timber façades is necessary at all from a building physics perspective. This matter was investigated as part of an Architecture, Timber and Construction research project at Bern University of Applied Sciences [2].
 
Source:     Bauphysik 32 (2010), No. 3
 
Page/s:     144-148
 
Language of Publication:     German



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