Haiganoush K Preisler
Biographic Data
| ID | 1574890 |
|---|---|
| NAME | Haiganoush K Preisler |
| GIVEN NAMES | Haiganoush K |
| FAMILY NAME | Preisler |
| SIGNATURE | PREISLER H K |
| AFFILIATIONS | Pacific Southwest Research Station |
| VERIFIED | No |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 1 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2017 |
| LATEST PUBLICATION YEAR | 2022 |
| H-INDEX | 1 |
Simulating burn severity maps at 30 meters in two forested regions in California
Climate change is altering wildfire and vegetation regimes in California’s forested ecosystems. Present day fires are seeing an increase in high burn severity area and high severity patch size. The ability to predict future burn severity patterns could better support policy and land management decisions. Here we demonstrate a methodology to first, statistically estimate individual burn severity classes at 30 meters and second, cluster and smooth …
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…
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
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
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…
Simulating burn severity maps at 30 meters in two forested regions in California
Climate change is altering wildfire and vegetation regimes in California’s forested ecosystems. Present day fires are seeing an increase in high burn severity area and high severity patch size. The ability to predict future burn severity patterns could better support policy and land management decisions. Here we demonstrate a methodology to first, statistically estimate individual burn severity classes at 30 meters and second, cluster and smooth …
Environmental Science (4 works) · Fire effects on ecosystems (4 works) · Geography (4 works) · Ecology (3 works) · Biology (2 works) · Climatology (2 works) · Ecosystem (2 works) · Environmental resource management (2 works) · Fire dynamics and safety research (2 works) · Fire regime (2 works)