Wildfire burn severity and emissions inventory
An example implementation over California
Datos Bibliográficos
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 frequency of large wildfires and the magnitude of their impacts have increased in recent decades, fueling concerns about decreased air quality. To improve the availability of accurate fire severity and emissions estimates, we developed the wildfire burn severity and emissions inventory (WBSE). WBSE is a retrospective spatial burn severity and emissions inventory at 30 m resolution for event-based assessment and 500 m resolution for daily emissions calculation. We applied the WBSE framework to calculate burn severity and emissions for historically observed large wildfires (>404 hectares (ha)) that burned during 1984–2020 in the state of California, U.S., a substantially more extended period than existing inventories. We assigned the day of burning and daily emissions for each fire during 2002–2020. The framework described here can also be applied to estimate severity for smaller wildfires and can also be used to estimate emissions for fires simulated in California for future climate and land-use scenarios. The WBSE framework implemented in R and Google Earth Engine can provide quick estimates once a desired fire perimeter is available. The framework developed here could also easily be applied to other regions with user-modified vegetation, fuel data, and emission factors
Air quality index · Climate change · Environmental resource management · Geography · Greenhouse gas · Meteorology · Preparedness · Atmospheric and Environmental Gas Dynamics · Environmental Science · Fire dynamics and safety research · Fire effects on ecosystems
Observed Impacts of Anthropogenic Climate Change on Wildfire in California
Human exposure and sensitivity to globally extreme wildfire events
Global fire emissions and the contribution of deforestation, savanna, forest, agricultural, and peat fires (1997–2009)
A Project for Monitoring Trends in Burn Severity
Human-started wildfires expand the fire niche across the United States
Increasing western US forest wildfire activity
Fire in the Earth System
Impact of anthropogenic climate change on wildfire across western US forests
Global fire emissions estimates during 1997–2016
The changing risk and burden of wildfire in the United States
Critical Review of Health Impacts of Wildfire Smoke Exposure
Google Earth Engine
Climate change is increasing the likelihood of extreme autumn wildfire conditions across California
| Obras citantes distintas | 3 |
|---|---|
| Citas por año | 0,75 |
| Intervalo de citas | 2022 - 2025 (4) |
| Velocidad de citación | recent |
| Altamente citado | No |
| Tipos de cita | Neutras: 3 |