Michelle A Day
Biographic Data
| ID | 1574889 |
|---|---|
| NAME | Michelle A Day |
| GIVEN NAMES | Michelle A |
| FAMILY NAME | Day |
| SIGNATURE | DAY M A |
| AFFILIATIONS | Rocky Mountain Research Station |
| ORCID | 0000-0002-0188-4093 |
| VERIFIED | Yes |
| TOTAL WORKS | 8 |
| TOTAL CITATIONS | 1 |
| AUTHOR COUNT | 8 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2017 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 1 |
Risk assessment in the Pyrocene – Rapid changes in models and predictions complicate US policies to prioritize forest and fuel management
Increased wildfire activity in the US motivated the USDA Forest Service to update national wildfire simulation data used for risk assessment and prioritizing wildland fuel reduction programs. The update (FSim-2020 to FSim-2023) included revised data on fuels, ignition frequency, fire weather, and recalibration of the FSim model. We overlayed the new simulated fire perimeters with the most recent building footprint data to examine the change in ma…
Modelling Fire Behavior to Assess Community Exposure in Europe
Predicting where the next large-scale wildfire event will occur can help fire management agencies better prepare for taking preventive actions and improving suppression efficiency. Wildfire simulations can be useful in estimating the spread and behavior of potential future fires by several available algorithms. The uncertainty of ignition location and weather data influencing fire propagation requires a stochastic approach integrated with fire si…
Designing forest restoration projects to optimize the application of broadcast burning
Planning for future fire
Contrasting the role of human- and lightning-caused wildfires on future fire regimes on a Central Oregon landscape
Climate change is expected to increase fire activity in many regions of the globe, but the relative role of human vs. lightning-caused ignitions on future fire regimes is unclear. We developed statistical models that account for the spatiotemporal ignition patterns by cause in the eastern slopes of the Cascades in Oregon, USA. Projected changes in energy release component from a suite of climate models were used with our model to quantify changes…
Economic Opportunities and Trade-Offs in Collaborative Forest Landscape Restoration
Effects of accelerated wildfire on future fire regimes and implications for the United States federal fire policy
Ager, A. A., A. M. G. Barros, H. K. Preisler, M. A. Day, T. A. Spies, J. D. Bailey, and J. P. Bolte. 2017. Effects of accelerated wildfire on future fire regimes and implications for the United States federal fire policy. Ecology and Society 22(4):12. https://doi.org/10.5751/ES-09680-220412
Spatiotemporal dynamics of simulated wildfire, forest management, and forest succession in central Oregon, USA
Barros, A. M. G., A. A. Ager, M. A. Day, H. K. Preisler, T. A. Spies, E. White, R. Pabst, K. A. Olsen, E. Platt, J. D. Bailey, and J. P. Bolte. 2017. Spatiotemporal dynamics of simulated wildfire, forest management, and forest succession in central Oregon, USA. Ecology and Society 22(1):24. https://doi.org/10.5751/ES-08917-220124
Effects of accelerated wildfire on future fire regimes and implications for the United States federal fire policy
Ager, A. A., A. M. G. Barros, H. K. Preisler, M. A. Day, T. A. Spies, J. D. Bailey, and J. P. Bolte. 2017. Effects of accelerated wildfire on future fire regimes and implications for the United States federal fire policy. Ecology and Society 22(4):12. https://doi.org/10.5751/ES-09680-220412
Economic Opportunities and Trade-Offs in Collaborative Forest Landscape Restoration
Effects of accelerated wildfire on future fire regimes and implications for the United States federal fire policy
Ager, A. A., A. M. G. Barros, H. K. Preisler, M. A. Day, T. A. Spies, J. D. Bailey, and J. P. Bolte. 2017. Effects of accelerated wildfire on future fire regimes and implications for the United States federal fire policy. Ecology and Society 22(4):12. https://doi.org/10.5751/ES-09680-220412
Spatiotemporal dynamics of simulated wildfire, forest management, and forest succession in central Oregon, USA
Barros, A. M. G., A. A. Ager, M. A. Day, H. K. Preisler, T. A. Spies, E. White, R. Pabst, K. A. Olsen, E. Platt, J. D. Bailey, and J. P. Bolte. 2017. Spatiotemporal dynamics of simulated wildfire, forest management, and forest succession in central Oregon, USA. Ecology and Society 22(1):24. https://doi.org/10.5751/ES-08917-220124
Planning for future fire
Contrasting the role of human- and lightning-caused wildfires on future fire regimes on a Central Oregon landscape
Climate change is expected to increase fire activity in many regions of the globe, but the relative role of human vs. lightning-caused ignitions on future fire regimes is unclear. We developed statistical models that account for the spatiotemporal ignition patterns by cause in the eastern slopes of the Cascades in Oregon, USA. Projected changes in energy release component from a suite of climate models were used with our model to quantify changes…
Modelling Fire Behavior to Assess Community Exposure in Europe
Predicting where the next large-scale wildfire event will occur can help fire management agencies better prepare for taking preventive actions and improving suppression efficiency. Wildfire simulations can be useful in estimating the spread and behavior of potential future fires by several available algorithms. The uncertainty of ignition location and weather data influencing fire propagation requires a stochastic approach integrated with fire si…
Designing forest restoration projects to optimize the application of broadcast burning
Risk assessment in the Pyrocene – Rapid changes in models and predictions complicate US policies to prioritize forest and fuel management
Increased wildfire activity in the US motivated the USDA Forest Service to update national wildfire simulation data used for risk assessment and prioritizing wildland fuel reduction programs. The update (FSim-2020 to FSim-2023) included revised data on fuels, ignition frequency, fire weather, and recalibration of the FSim model. We overlayed the new simulated fire perimeters with the most recent building footprint data to examine the change in ma…
Fire effects on ecosystems (8 works) · Geography (7 works) · Environmental Science (6 works) · Ecology (5 works) · Environmental resource management (5 works) · Forest management (4 works) · Forest Management and Policy (4 works) · Forestry (4 works) · Engineering (3 works) · Fire dynamics and safety research (3 works)