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Optimal management of a flammable multi-stand forest for timber production and maintenance of nesting sites for wildlife

dc.contributor.authorSpring, Daniel A.en_AU
dc.contributor.authorKennedy, Johnen_AU
dc.contributor.authorMcCarthy, Michaelen_AU
dc.contributor.authorMac Nally, Ralphen_AU
dc.contributor.authorLindenmayer, David Ben_AU
dc.date.accessioned2015-12-10T21:57:43Z
dc.date.issued2008
dc.date.updated2015-12-09T07:47:55Z
dc.description.abstractDecline of cavity-using wildlife species is a major forest management issue. One of the causes of this problem is the loss in cavity tree abundance, resulting from short rotation silviculture, stand-replacing disturbance events and timber harvesting in disturbed stands. Cavity tree availability cannot be guaranteed due to the stochastic nature of disturbance events. We developed a Markov model to predict future cavity tree availability under alternative tree felling and fire protection strategies using information on cavity tree dynamics and fire history. Stochastic dynamic programming was used to find a strategy that maximizes timber revenues less forest management costs, including the cost of an artificial nest-box program that must be implemented whenever cavity trees become critically scarce. The requirement to implement a nest-box program in such circumstances strongly influenced the optimal tree felling strategy and resulted in a higher probability of having cavity trees in the future. This reflected an increase in the retention of old growth forest and stands with fire-killed cavity trees as well as stands of younger trees to provide a future source of cavities. These results demonstrate the need to consider the costs of artificial habitat enhancement and the risk of future cavity tree scarcity in multiple-use forest management planning.
dc.identifier.issn0378-1127
dc.identifier.urihttp://hdl.handle.net/1885/39904
dc.language.isoen_AUen_AU
dc.publisherElsevier
dc.sourceForest Ecology and Management
dc.subjectKeywords: Cavity trees; Nest-boxes; Salvage logging; Stochastic dynamic programming; Dynamic programming; Risk management; Stochastic programming; Forestry; cost-benefit analysis; fire history; forest management; forestry production; habitat management; Markov chai Cavity trees; Nest-boxes; Salvage logging; Stochastic dynamic programming
dc.titleOptimal management of a flammable multi-stand forest for timber production and maintenance of nesting sites for wildlife
dc.typeJournal article
local.bibliographicCitation.issue11
local.bibliographicCitation.lastpage3865
local.bibliographicCitation.startpage3857
local.contributor.affiliationSpring, Daniel A., Monash University
local.contributor.affiliationKennedy, John, La Trobe University
local.contributor.affiliationLindenmayer, David, College of Medicine, Biology and Environment, ANU
local.contributor.affiliationMcCarthy, Michael, University of Melbourne
local.contributor.affiliationMac Nally, Ralph, Monash University
local.contributor.authoruidLindenmayer, David, u8808483
local.description.embargo2037-12-31
local.description.notesImported from ARIES
local.identifier.absfor070503 - Forestry Fire Management
local.identifier.absfor060208 - Terrestrial Ecology
local.identifier.absfor050104 - Landscape Ecology
local.identifier.ariespublicationU4279067xPUB185
local.identifier.citationvolume255
local.identifier.doi10.1016/j.foreco.2008.03.033
local.identifier.scopusID2-s2.0-43849100770
local.identifier.thomsonID000257019100025
local.type.statusPublished Versionen_AU

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