The wall-to-wall prediction of fuel structural characteristics conducive to high fire severity is essential to provide integrated insights for implementing pre-fire management strategies designed to mitigate the most harmful ecological effects of fire in fire-prone plant communities. Here, we evaluate the potential of high point cloud density LiDAR data from the Portuguese áGiLTerFoRus project to characterize pre-fire surface and canopy fuel structure and predict wildfire severity. The study area corresponds to a pilot LiDAR flight area of around 21,000 ha in central Portugal intersected by a mixed-severity wildfire that occurred one month after the LiDAR survey. Fire severity was assessed through the differenced Normalized Burn Ratio (dNBR...
Climate change causes more extreme droughts and heat waves in Central Europe, affecting vegetative f...
This study proposes a new method (profile area change, PAC) to quantify fire-induced forest structur...
Climate change causes more extreme droughts and heat waves in Central Europe, affecting vegetative f...
[Background] The characterization of surface and canopy fuel loadings in fire-prone pine ecosystems ...
Tree and plant structures remaining after fires reflect well their degree of consumption, and are th...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
The design and implementation of pre-fire management strategies in heterogeneous landscapes requires...
P. 1-14The design and implementation of pre-fire management strategies in heterogeneous landscapes r...
With an increase in the frequency and severity of wildfires across the globe and resultant changes t...
With an increase in the frequency and severity of wildfires across the globe and resultant changes t...
Climate change causes more extreme droughts and heat waves in Central Europe, affecting vegetative f...
This study proposes a new method (profile area change, PAC) to quantify fire-induced forest structur...
Climate change causes more extreme droughts and heat waves in Central Europe, affecting vegetative f...
[Background] The characterization of surface and canopy fuel loadings in fire-prone pine ecosystems ...
Tree and plant structures remaining after fires reflect well their degree of consumption, and are th...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
Accurate, spatially explicit information about forest canopy fuel properties is essential for ecosys...
The design and implementation of pre-fire management strategies in heterogeneous landscapes requires...
P. 1-14The design and implementation of pre-fire management strategies in heterogeneous landscapes r...
With an increase in the frequency and severity of wildfires across the globe and resultant changes t...
With an increase in the frequency and severity of wildfires across the globe and resultant changes t...
Climate change causes more extreme droughts and heat waves in Central Europe, affecting vegetative f...
This study proposes a new method (profile area change, PAC) to quantify fire-induced forest structur...
Climate change causes more extreme droughts and heat waves in Central Europe, affecting vegetative f...