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Erschienen in: Fire Technology 6/2016

01.11.2016

Simulation of an Attic Fire in a Wood Frame Residential Structure, Chicago, IL

verfasst von: Craig G. Weinschenk, Kristopher J. Overholt, Daniel Madrzykowski

Erschienen in: Fire Technology | Ausgabe 6/2016

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Abstract

The fire dynamics simulator (FDS) fire model, which is developed and maintained by the National Institute of Standards and Technology (NIST), was used to provide insight into the dynamics of a fire that occurred on November 2, 2012, within a 2 ½ story, single family structure in Chicago, IL, that resulted in the death of the captain of a fire department. The inputs for the FDS simulations are documented in this report and are based on the fire scenario, including the building geometry, interior furnishings, and ventilation conditions. The fire started in the attic and spread down through an opening into the enclosed porch on the rear of the structure. This resulted in ventilation limited (fuel rich) fire conditions in the attic and rear porch areas. Further spread of fire and hot gases from the attic downward into the second floor of the structure was limited by a closed steel-faced, wood-framed door. Note that there was no evidence of fire damage on the first floor of the structure. After exposure to the elevated temperatures and pressure from the fire in the porch area, the wood frame of the door decomposed, the steel faces of the door failed, and the door collapsed inward. The door failure resulted in the establishment of a flow path between the higher pressure and higher temperature conditions in the enclosed porch and the lower pressure and lower temperature conditions in the hallway and kitchen areas of the second floor. The temperature of the gases that flowed into the hallway exceeded 260°C (500°F) at a height of 1.86 m (6 ft). Unfortunately, a captain and firefighter were advancing a hose line in the hallway near the door at the time of the door failure. It appears that the captain was likely overcome by the rapid change in conditions before he could exit to the safety of the kitchen area. After a Mayday call, the captain was rescued from the structure, but later succumbed to his injuries.

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Fußnoten
1
The department defines a “Still” alarm to be two engine companies, two truck companies, and a battalion chief.
 
2
The department defines a rapid intervention team (RIT) response to be one truck company, one battalion chief, one advanced life support (ALS) ambulance, and one emergency medical services (EMS) field officer.
 
3
The department defines a 2-11 alarm as a second alarm upgrade. The response is four engines, two trucks, one tower ladder, two battalion chiefs, one deputy district chief, one air mask service bottle truck, and a media affairs unit.
 
4
Balloon frame construction is a method of framing where a continuous stud runs from the bottom horizontal member to the top plate. Intermediate floors are built directly off of the studs. One potential issue with balloon frame construction is that without fire stops there is void space for fire to potentially travel between the floors within the wall cavity.
 
5
The cone calorimeter is an experimental apparatus used to gather data about ignition time, mass loss, combustion products, and heat release rate among other properties associated with burning small samples of materials [16].
 
6
At the time of this publication, the report detailing the structure fire experiments has not yet been published. Please check www.nist.gov/fire for updates regarding this work.
 
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Metadaten
Titel
Simulation of an Attic Fire in a Wood Frame Residential Structure, Chicago, IL
verfasst von
Craig G. Weinschenk
Kristopher J. Overholt
Daniel Madrzykowski
Publikationsdatum
01.11.2016
Verlag
Springer US
Erschienen in
Fire Technology / Ausgabe 6/2016
Print ISSN: 0015-2684
Elektronische ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-015-0533-7

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