SAFETYLIT WEEKLY UPDATE

We compile citations and summaries of about 400 new articles every week.
RSS Feed

HELP: Tutorials | FAQ
CONTACT US: Contact info

Search Results

Journal Article

Citation

Węgrzyński W, Antosiewicz P, Burdzy T, Tofiło P, Papis BK. Fire Safety J. 2020; 115: e103159.

Copyright

(Copyright © 2020, Elsevier Publishing)

DOI

10.1016/j.firesaf.2020.103159

PMID

unavailable

Abstract

Façade systems play an important role in fire compartmentation of a building and reducing the likelihood of fire spreading through and outside of the building walls. The use of sprinklers in building regulations often allows for smaller building separation. However, no additional benefits are usually given to additional internal sprinkler protection of the external glass façade using standard pendant sprinklers. Four compartment fire experiments were performed with non-fire-rated aluminium façades with two- and three-layered Insulating Glass Units (IGU), protected by pendant-type sprinklers (DN15, K-factor = 80, T = 68 °C). Sprinklers were in row 14-55 cm from the glazing, with 1.514-1.83 m separation distance. In all experiments, façades achieved satisfactory performance in terms of glazing integrity, insulation and reducing the thermal radiation. Under a non-uniform water distribution, parts of the glass were dry (1.7%-15.7% of IGU area), where we have observed soot deposition and local damage to fire exposed glass layer, but no loss of the structural integrity. The temperatures on the unexposed side did not exceed 86 °C, the peak measured temperature of the internal glass surface was 173 °C. The performed experiments confirmed the capability of standard pendant-type sprinklers to enhance the fire protection features of a building façade.


Language: en

Keywords

Compartment fire; Façade; Glazed façade; Office fire; Sprinkler; Water spray

NEW SEARCH


All SafetyLit records are available for automatic download to Zotero & Mendeley
Print