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Topography not tenure controls extent of wildfire within Mountain Ash forests

Bibliographic Data

ID15550692
AuthorsMark A Adams (0000-0002-8154-0097, corresponding author), Tina L Bell (0000-0002-1690-2725), Mana Gharun (0000-0003-0337-7367)
Year2021
Volume16
Issue4
Pages044021-044021
Publication date2021-02-11
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/abe57e
OpenAlexW3130731044
LanguageEN
References cited31

Two high intensity wildfire events, 70 years apart, burnt large areas of Mountain Ash forests in the Central Highlands, Victoria, Australia. Both resulted in Royal Commissions (the strongest form of judicial inquiry in Australia) as to their cause(s) owing to large losses of life and property. Here we tested the hypothesis that site ‘wetness’—determined using a Topographic Wetness Index—is a major determinant of the extent of fire (% of sample points that burnt) within high intensity wildfire events and across tenures. We show that wetness dominated the extent of fire in these forests in both the 1939 and 2009 wildfire events. Mountain Ash forests are now strongly skewed in their distribution, with wetter and older forests favored by protected tenures (e.g. National Parks) designed to meet needs for water and conservation. In 2009, the extent of fire at the stand scale in water catchments and conservation tenures was twice that in 1939. In land tenures with multiple uses (e.g. State Forests), the extent of fire was one-third less in 2009 than it was in 1939. Topographic controls on water availability, and major droughts, will likely continue to dominate the extent and likelihood of fire in these forests

Disturbance (geology · Geography · Physical geography · Environmental Science · Fire effects on ecosystems · Forest ecology and management · Rangeland and Wildlife Management · Forestry · Geology

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  • Incorporating Land Tenure Security into Conservation

    Open Access•Brian Robinson, Yuta J Masuda et al.•Conservation Letters•2018

  • A physically based, variable contributing area model of basin hydrology / Un modèle à base physique de zone d'appel variable de l'hydrologie du bassin versant

    Keith Beven, K J BEVEN et al.•Hydrological Sciences Bulletin•1979

Citation velocityhistorical
Highly citedNo

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