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SIMULATION AND ANALYSIS OF THE FIRE OF WINDSOR BUILDING IN MADRID

SEPTEMBER 2007   -  Volume: 82 -  Pages: 283-290

DOI:

[No data]

Authors:

JORGE ARTURO CAPOTE ABREU - DANIEL ALVEAR PORTILLA - MARIANO LÁZARO URRUTIA - PABLO ESPINA SANTOS - JOSE L. TORERO - STEPHEN WELCH - IAN FLETCHER

Disciplines:

  • Construction technology (GRANDES EDIFICIOS Y RASCACIELOS )

Downloads:   471

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Received Date :   20 July 2007


Key words:
Modelado y simulación computacional, Seguridad contra incendios, Solicitaciones térmicas, Edificios de gran altura, Computer Modeling, Fire Safety, Thermal Fields, Tall Building.
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
VARIOUS

ABSTRACT
The Windsor Tower in Madrid was involved in a major fire, on 12-13 February 2005, which caused extensive structural damage to the upper floors
of the building. This fire has provoked intense interest amongst researchers hoping to better understand the performance of concrete structures in fire. A research team integrated for Group GIDAI (University of Cantabria – Spain) and BRE Centre for Fire Safety Engineering (The Edinburgh University) has begun a study with the purpose of properly characterising the fire and the performance of the structure. The objectives of the study are (1) to analyze the fire growth conditions in order to understand the fire propagation mechanisms between floors of the building, using computational fire modelling, and (2) to evaluate the response of the structure to the fire.
The research undertaken on the fire propagation on the 21st floor, the origin of the fire, has allowed assessment of the severity conditions reached
as consequence of the fully-developed fire, due the combustion of the present flammable materials.
Starting from these results, characteristic curves of heat release rate representative of the real fire have been determined, to facilitate study of the
thermal attack (temperatures, heat flux, etc.) on the structural elements.
The tools used for this purpose were the Fire Dynamics Simulator (FDS) LES code, developed at the National Institute of Standards and Technology
(NIST), and the SOFIE RANS code.
These results will allow, in the next stages, to make use of finite element methods to obtain the corresponding thermal and mechanical state
(stress and strain) of each element due to these conditions.
Key Words: Computer Modeling, Fire Safety, Thermal Fields, Tall Building.

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