Land Management Practices Associated with House Loss in Wildfires
Top Cited Papers
Open Access
- 18 January 2012
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 7 (1) , e29212
- https://doi.org/10.1371/journal.pone.0029212
Abstract
Losses to life and property from unplanned fires (wildfires) are forecast to increase because of population growth in peri-urban areas and climate change. In response, there have been moves to increase fuel reduction—clearing, prescribed burning, biomass removal and grazing—to afford greater protection to peri-urban communities in fire-prone regions. But how effective are these measures? Severe wildfires in southern Australia in 2009 presented a rare opportunity to address this question empirically. We predicted that modifying several fuels could theoretically reduce house loss by 76%–97%, which would translate to considerably fewer wildfire-related deaths. However, maximum levels of fuel reduction are unlikely to be feasible at every house for logistical and environmental reasons. Significant fuel variables in a logistic regression model we selected to predict house loss were (in order of decreasing effect): (1) the cover of trees and shrubs within 40 m of houses, (2) whether trees and shrubs within 40 m of houses was predominantly remnant or planted, (3) the upwind distance from houses to groups of trees or shrubs, (4) the upwind distance from houses to public forested land (irrespective of whether it was managed for nature conservation or logging), (5) the upwind distance from houses to prescribed burning within 5 years, and (6) the number of buildings or structures within 40 m of houses. All fuel treatments were more effective if undertaken closer to houses. For example, 15% fewer houses were destroyed if prescribed burning occurred at the observed minimum distance from houses (0.5 km) rather than the observed mean distance from houses (8.5 km). Our results imply that a shift in emphasis away from broad-scale fuel-reduction to intensive fuel treatments close to property will more effectively mitigate impacts from wildfires on peri-urban communities.Keywords
This publication has 36 references indexed in Scilit:
- A Case Study of a Community Affected by the Witch and Guejito Wildland FiresFire Technology, 2010
- Trends in global wildfire potential in a changing climateForest Ecology and Management, 2010
- Firebrands and spotting ignition in large-scale firesInternational Journal of Wildland Fire, 2010
- Long-term impacts of prescribed burning on regional extent and incidence of wildfires—Evidence from 50 years of active fire management in SW Australian forestsForest Ecology and Management, 2009
- Scientific and social challenges for the management of fire-prone wildland–urban interfacesEnvironmental Research Letters, 2009
- Implementation of National Fire Plan treatments near the wildland–urban interface in the western United StatesProceedings of the National Academy of Sciences, 2009
- Urban–wildland fires: how California and other regions of the US can learn from AustraliaEnvironmental Research Letters, 2009
- Basic principles of forest fuel reduction treatmentsForest Ecology and Management, 2005
- An Autologistic Model for the Spatial Distribution of WildlifeJournal of Applied Ecology, 1996
- The Florida palm coast fire: An analysis of fire incidence and residence characteristicsFire Technology, 1987