Development of a standard firebrand accumulation temperature curve for residential wildfire protection system

Climate change and severe heat waves pose a challenge as wildfires spread rapidly in wildland urban interface areas and are difficult for firefighters to control and extinguish. Therefore, one of the main factors for fire spread and the cause of residential fires is firebrands, which according to pr...

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Main Authors: P. Cantor, M.R.T. Arruda, J. Firmo, F. Branco
Format: Article
Language:English
Published: Elsevier 2023-03-01
Series:Results in Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590123023000622
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author P. Cantor
M.R.T. Arruda
J. Firmo
F. Branco
author_facet P. Cantor
M.R.T. Arruda
J. Firmo
F. Branco
author_sort P. Cantor
collection DOAJ
description Climate change and severe heat waves pose a challenge as wildfires spread rapidly in wildland urban interface areas and are difficult for firefighters to control and extinguish. Therefore, one of the main factors for fire spread and the cause of residential fires is firebrands, which according to previous studies can be transported even by wind for kilometres. At this moment, there is no standard fire curve to simulate the thermal effects of firebrand accumulation in the exterior surfaces of dwellings, in order to provide any fireproof design solution.This paper presents a new standard fire curve to simulate the exterior accumulation of firebrands in contact with surfaces of dwellings, due to the indirect action of a wildfire. An experimental campaign was conducted, in which different type and geometries of firebrands were burned in controlled conditions until they reached the thermal pyrolysis state. The tests were also performed with controlled wind (1.3 m/s) to better simulated their behaviour. The temperature of the firebrands and the transfer temperature to the surfaces were measured using a test setup with metal plates and thermocouples. Using the data collected from numerous firebrand tests, it was possible to calculate a maximum characteristic temperature, calculated with a 95% confidence interval. Using this characteristic temperature curve, a design firebrand curve was proposed by using a simple fitting procedure and the minimum least square method. This new proposed fire curve is aimed be used in the design of protection systems of dwellings located in the urban wildland interface against the accumulation of firebrand projection due to a natural wildfire.
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spelling doaj.art-e796d880b4224737bd30721dbe7a395d2023-02-08T04:17:33ZengElsevierResults in Engineering2590-12302023-03-0117100935Development of a standard firebrand accumulation temperature curve for residential wildfire protection systemP. Cantor0M.R.T. Arruda1J. Firmo2F. Branco3CERIS, Instituto Superior Técnico, Universidade de Lisboa, PortugalCorresponding author.; CERIS, Instituto Superior Técnico, Universidade de Lisboa, PortugalCERIS, Instituto Superior Técnico, Universidade de Lisboa, PortugalCERIS, Instituto Superior Técnico, Universidade de Lisboa, PortugalClimate change and severe heat waves pose a challenge as wildfires spread rapidly in wildland urban interface areas and are difficult for firefighters to control and extinguish. Therefore, one of the main factors for fire spread and the cause of residential fires is firebrands, which according to previous studies can be transported even by wind for kilometres. At this moment, there is no standard fire curve to simulate the thermal effects of firebrand accumulation in the exterior surfaces of dwellings, in order to provide any fireproof design solution.This paper presents a new standard fire curve to simulate the exterior accumulation of firebrands in contact with surfaces of dwellings, due to the indirect action of a wildfire. An experimental campaign was conducted, in which different type and geometries of firebrands were burned in controlled conditions until they reached the thermal pyrolysis state. The tests were also performed with controlled wind (1.3 m/s) to better simulated their behaviour. The temperature of the firebrands and the transfer temperature to the surfaces were measured using a test setup with metal plates and thermocouples. Using the data collected from numerous firebrand tests, it was possible to calculate a maximum characteristic temperature, calculated with a 95% confidence interval. Using this characteristic temperature curve, a design firebrand curve was proposed by using a simple fitting procedure and the minimum least square method. This new proposed fire curve is aimed be used in the design of protection systems of dwellings located in the urban wildland interface against the accumulation of firebrand projection due to a natural wildfire.http://www.sciencedirect.com/science/article/pii/S2590123023000622Firebrand curvesFirebrand characterizationTemperature vs time curveFirebrand laboratory temperatureStandard firebrand curve
spellingShingle P. Cantor
M.R.T. Arruda
J. Firmo
F. Branco
Development of a standard firebrand accumulation temperature curve for residential wildfire protection system
Results in Engineering
Firebrand curves
Firebrand characterization
Temperature vs time curve
Firebrand laboratory temperature
Standard firebrand curve
title Development of a standard firebrand accumulation temperature curve for residential wildfire protection system
title_full Development of a standard firebrand accumulation temperature curve for residential wildfire protection system
title_fullStr Development of a standard firebrand accumulation temperature curve for residential wildfire protection system
title_full_unstemmed Development of a standard firebrand accumulation temperature curve for residential wildfire protection system
title_short Development of a standard firebrand accumulation temperature curve for residential wildfire protection system
title_sort development of a standard firebrand accumulation temperature curve for residential wildfire protection system
topic Firebrand curves
Firebrand characterization
Temperature vs time curve
Firebrand laboratory temperature
Standard firebrand curve
url http://www.sciencedirect.com/science/article/pii/S2590123023000622
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AT jfirmo developmentofastandardfirebrandaccumulationtemperaturecurveforresidentialwildfireprotectionsystem
AT fbranco developmentofastandardfirebrandaccumulationtemperaturecurveforresidentialwildfireprotectionsystem