FireBGCv2 - landscape fire model
FireBGCv2 is a computer modeling program and platform that mechanistically simulates fire, vegetation, climate, and fuels dynamics across multiple space and time scales.
The spatially explicit ecosystem process model FireBGCv2 is a landscape fire and vegetation model C++ computer program that incorporates several types of stand dynamics models into a spatially explicit landscape simulation platform. FireBGCv2 is intended as a research tool but it can be employed in various land management applications providing sufficient expertise exists to parameterize and initialize the model. The FireBGCv2 simulation modeling platform is currently used to address six main research areas within the arena of climate-disturbance interactions: 1) exploration of climate-wildfire interactions such as shifting fire regimes and fire severity, disturbance thresholds, and disturbance synergies; 2) effects on ecosystem patterns and processes including vegetation composition, wildlife habitat suitability, forest structure, net primary productivity, and landscape resilience/vulnerability; 3) integration of ecosystem modeling with long-term tree-ring, fire scar, and paleoecological records; 4) effects of climate changes and disturbance processes on landscape carbon dynamics, especially in the context of potential regime shifts; 5) threshold shifts or tipping points, at which relatively small perturbations of forcing variables result in large, abrupt, and long-term changes in ecosystem properties; and 6) potential land management strategies to reduce ecological vulnerability to climate and landscape change.
Download our FireBGCv2 Research Projects document to view the current projects.
Principal Investigator: Robert Keane
Funding Contributor(s): Joint Fire Science Program, National Fire Plan
Additional Funding: USGS CLIMET program
Project Years: 1990-present
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FireBGCv2 simulation

