Wayne J Baldwin
Dados Biográficos
| ID | 7994172 |
|---|---|
| NOME | Wayne J Baldwin |
| PRENOMES | Wayne J |
| SOBRENOME | Baldwin |
| ASSINATURA | BALDWIN W J |
| AFILIAÇÕES | University of California, Merced |
| ORCID | 0000-0001-5470-6306 |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 3 |
| TOTAL DE CITAÇÕES | 0 |
| TOTAL COMO AUTOR | 3 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 2022 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2022 |
| ÍNDICE H | 0 |
Wildfire burn severity and emissions inventory
Wildfire severity is a key indicator of both direct ecosystem impacts and indirect emissions impacts that affect air quality, climate, and public health far beyond the spatial footprint of the flames. Comprehensive, accurate inventories of severity and emissions are essential for assessing these impacts and setting appropriate fire management and health care preparedness strategies, as is the ability to project emissions for future wildfires. The…
Spatial and temporal patterns of wildfire burn severity and biomass burning-induced emissions in California
Wildfires are an important disturbance in the Earth system, and their emissions have regional and even global impacts on radiation, clouds, and climate. The increased frequency and magnitude of California wildfires in recent years is altering the terrestrial carbon cycle, undermining the state’s efforts to reduce the Greenhouse Gases (GHGs) to confront climate change. Air quality and public health are also greatly affected by air pollution from w…
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 …
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Wildfire burn severity and emissions inventory
Wildfire severity is a key indicator of both direct ecosystem impacts and indirect emissions impacts that affect air quality, climate, and public health far beyond the spatial footprint of the flames. Comprehensive, accurate inventories of severity and emissions are essential for assessing these impacts and setting appropriate fire management and health care preparedness strategies, as is the ability to project emissions for future wildfires. The…
Spatial and temporal patterns of wildfire burn severity and biomass burning-induced emissions in California
Wildfires are an important disturbance in the Earth system, and their emissions have regional and even global impacts on radiation, clouds, and climate. The increased frequency and magnitude of California wildfires in recent years is altering the terrestrial carbon cycle, undermining the state’s efforts to reduce the Greenhouse Gases (GHGs) to confront climate change. Air quality and public health are also greatly affected by air pollution from w…
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 (3 obras) · Fire effects on ecosystems (3 obras) · Geography (3 obras) · Meteorology (3 obras) · Air quality index (2 obras) · Atmospheric and Environmental Gas Dynamics (2 obras) · Climate change (2 obras) · Climatology (2 obras) · Environmental resource management (2 obras) · Fire dynamics and safety research (2 obras)