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DOI10.1016/j.foreco.2019.01.010
Strategically placed landscape fuel treatments decrease fire severity and promote recovery in the northern Sierra Nevada
Tubbesing C.L.; Fry D.L.; Roller G.B.; Collins B.M.; Fedorova V.A.; Stephens S.L.; Battles J.J.
发表日期2019
ISSN0378-1127
起始页码45
结束页码55
卷号436
英文摘要Strategically placed landscape area treatments (SPLATs) are landscape fuel reduction treatments designed to reduce fire severity across an entire landscape with only a fraction of the landscape treated. Though SPLATs have gained attention in scientific and policy arenas, they have rarely been empirically tested. This study takes advantage of a strategically placed landscape fuel treatment network that was implemented and monitored before being burned by a wildfire. We evaluated treatment efficacy in terms of resistance, defined here as the capacity to withstand disturbance, and recovery, defined here as regeneration following disturbance. We found that the treated landscape experienced lower fire severity than an adjacent control landscape: in the untreated control landscape, 26% of land area was burned with >90% basal area mortality, according to the remote-sensing-derived relative differenced Normalized Burn Ratio (RdNBR), while in the treated landscape only 11% burned at the same severity. This difference was despite greater pre-treatment fire risk in the treatment landscape, as indicated by FARSITE fire behavior modeling. At a more local scale, monitoring plots within the treatments themselves saw greater regeneration of conifer seedlings two years following the fire than plots outside the treatments. Mean seedling densities for all conifer species were 7.8 seedlings m −2 in treated plots and only 1.4 seedlings m −2 in control plots. These results indicate that SPLATs achieved their objective of increasing forest resistance and recovery. © 2019 Elsevier B.V.
英文关键词Forest resilience; Frequent-fire forests; Landscape treatments; Mixed-conifer forest; Regeneration; Restoration; Sierra Nevada
语种英语
scopus关键词Conservation; Fuels; Image reconstruction; Recovery; Reforestation; Remote sensing; Forest resilience; Frequent-fire forests; Landscape treatments; Mixed-conifer forests; Regeneration; Sierra Nevada; Fires; basal area; coniferous forest; coniferous tree; disturbance; fire behavior; landscape; restoration ecology; seedling; strategic approach; wildfire; Conservation; Fires; Fuels; Recovery; Reforestation; Remote Sensing; California; Sierra Nevada [California]; United States; Coniferophyta
来源期刊Forest Ecology and Management
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/156174
作者单位Ecosystem Sciences Division, Department of Environmental Science, Policy, and Management, 130 Mulford Hall, University of California, Berkeley, CA 94720-3114, United States; Spatial Informatics Group, LLC, 2529 Yolanda Ct., Pleasanton, CA 94566, United States; Center for Fire Research and Outreach, College of Natural Resources, University of California, Berkeley, CA 94720, United States
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GB/T 7714
Tubbesing C.L.,Fry D.L.,Roller G.B.,et al. Strategically placed landscape fuel treatments decrease fire severity and promote recovery in the northern Sierra Nevada[J],2019,436.
APA Tubbesing C.L..,Fry D.L..,Roller G.B..,Collins B.M..,Fedorova V.A..,...&Battles J.J..(2019).Strategically placed landscape fuel treatments decrease fire severity and promote recovery in the northern Sierra Nevada.Forest Ecology and Management,436.
MLA Tubbesing C.L.,et al."Strategically placed landscape fuel treatments decrease fire severity and promote recovery in the northern Sierra Nevada".Forest Ecology and Management 436(2019).
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