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Wildfires, complexity, and highly optimized tolerance
by
Morais, M.E
, Doyle, J
, Moritz, M.A
, Summerell, L.A
, Carlson, J.M
in
California
/ Climate change
/ Computer Simulation
/ Ecosystem
/ Ecosystem models
/ Ecosystems
/ environmental models
/ Environmental science
/ Fire behavior
/ Fire ecology
/ Fire regimes
/ fire-prone ecosystems
/ Fires
/ Forest & brush fires
/ forest ecosystems
/ Forest fires
/ Hfire model
/ highly optimized tolerance model
/ HOT model
/ mathematical models
/ Modeling
/ Models, Theoretical
/ Physical Sciences
/ plant ecology
/ Plants
/ Power laws
/ probability loss resource model
/ simulation models
/ Terrestrial ecosystems
/ Wildfires
/ wildland fire management
2005
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Wildfires, complexity, and highly optimized tolerance
by
Morais, M.E
, Doyle, J
, Moritz, M.A
, Summerell, L.A
, Carlson, J.M
in
California
/ Climate change
/ Computer Simulation
/ Ecosystem
/ Ecosystem models
/ Ecosystems
/ environmental models
/ Environmental science
/ Fire behavior
/ Fire ecology
/ Fire regimes
/ fire-prone ecosystems
/ Fires
/ Forest & brush fires
/ forest ecosystems
/ Forest fires
/ Hfire model
/ highly optimized tolerance model
/ HOT model
/ mathematical models
/ Modeling
/ Models, Theoretical
/ Physical Sciences
/ plant ecology
/ Plants
/ Power laws
/ probability loss resource model
/ simulation models
/ Terrestrial ecosystems
/ Wildfires
/ wildland fire management
2005
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Do you wish to request the book?
Wildfires, complexity, and highly optimized tolerance
by
Morais, M.E
, Doyle, J
, Moritz, M.A
, Summerell, L.A
, Carlson, J.M
in
California
/ Climate change
/ Computer Simulation
/ Ecosystem
/ Ecosystem models
/ Ecosystems
/ environmental models
/ Environmental science
/ Fire behavior
/ Fire ecology
/ Fire regimes
/ fire-prone ecosystems
/ Fires
/ Forest & brush fires
/ forest ecosystems
/ Forest fires
/ Hfire model
/ highly optimized tolerance model
/ HOT model
/ mathematical models
/ Modeling
/ Models, Theoretical
/ Physical Sciences
/ plant ecology
/ Plants
/ Power laws
/ probability loss resource model
/ simulation models
/ Terrestrial ecosystems
/ Wildfires
/ wildland fire management
2005
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Journal Article
Wildfires, complexity, and highly optimized tolerance
2005
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Overview
Recent, large fires in the western United States have rekindled debates about fire management and the role of natural fire regimes in the resilience of terrestrial ecosystems. This real-world experience parallels debates involving abstract models of forest fires, a central metaphor in complex systems theory. Both real and modeled fire-prone landscapes exhibit roughly power law statistics in fire size versus frequency. Here, we examine historical fire catalogs and a detailed fire simulation model; both are in agreement with a highly optimized tolerance model. Highly optimized tolerance suggests robustness tradeoffs underlie resilience in different fire-prone ecosystems. Understanding these mechanisms may provide new insights into the structure of ecological systems and be key in evaluating fire management strategies and sensitivities to climate change.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
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