Colette Brown
UC Berkeley
“Wildfire as a Driver of Vegetation Change in the Arctic”
The Arctic is warming four times more than the global average, and this warming is causing an increase in total area burned. In my dissertation I investigate how high-severity wildfires in the Arctic cause shifts in the vegetation composition and abundance. My preliminary results suggest a move toward a more shrub, rather than graminoid-dominated ecosystems.
ABSTRACT
Wildfires in the Arctic are increasing in area, duration, and severity, with uncertain impacts on Arctic ecosystems and their carbon dynamics. Vegetation recovery plays a significant role in both, but large spatial heterogeneity and the remote nature of fire scars make it challenging to predict post-fire vegetation succession trajectories. Robust quantification of vegetation recovery after fire is lacking and a fresh approach is needed. In my work, we have taken the largest recorded tundra fire – the 2007 Anaktuvuk River Fire and adjacent unburned tundra in northern Alaska – as a case study, we use satellite imagery and a random forest model to generate annual maps of plant functional types (PFTs) at a 30 m resolution pre-fire and for 13 years afterwards (2005-2020). Early results indicate high model accuracy and precision for evergreen and deciduous sub-shrub classes, which are hypothesized to have the greatest long-term impacts on the Arctic carbon budget. The documented increases in vegetation cover and changes in vegetation composition post-fire have implications on ecosystem function and carbon budgets with increasing wildfire in the Arctic.
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