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Coupling the Biophysical and Social Dimensions of Wildfire Risk to Improve Wildfire Mitigation Planning
Authors:Alan A. Ager  Jeffrey D. Kline  A. Paige Fischer
Affiliation:1. USDA Forest Service, Pacific Northwest Research Station, Western Wildland Environmental Threat Assessment Center, Corvallis, OR, USA;2. USDA Forest Service, Pacific Northwest Research Station, Corvallis, OR, USA;3. University of Michigan, School of Natural Resources and Environment, Ann Arbor, MI, USA
Abstract:We describe recent advances in biophysical and social aspects of risk and their potential combined contribution to improve mitigation planning on fire‐prone landscapes. The methods and tools provide an improved method for defining the spatial extent of wildfire risk to communities compared to current planning processes. They also propose an expanded role for social science to improve understanding of community‐wide risk perceptions and to predict property owners’ capacities and willingness to mitigate risk by treating hazardous fuels and reducing the susceptibility of dwellings. In particular, we identify spatial scale mismatches in wildfire mitigation planning and their potential adverse impact on risk mitigation goals. Studies in other fire‐prone regions suggest that these scale mismatches are widespread and contribute to continued wildfire dwelling losses. We discuss how risk perceptions and behavior contribute to scale mismatches and how they can be minimized through integrated analyses of landscape wildfire transmission and social factors that describe the potential for collaboration among landowners and land management agencies. These concepts are then used to outline an integrated socioecological planning framework to identify optimal strategies for local community risk mitigation and improve landscape‐scale prioritization of fuel management investments by government entities.
Keywords:Community wildfire protection  socioecological planning  wildfire risk mitigation
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