Skip to main content

Long-term efficacy of fuel reduction and restoration treatments in Northern Rockies dry forests

Year of Publication
2024
Publication Type

Fuel and restoration treatments seeking to mitigate the likelihood of uncharacteristic high-severity wildfires in forests with historically frequent, low-severity fire regimes are increasingly common, but long-term treatment effects on fuels, aboveground carbon, plant community structure, ecosystem resilience, and other ecosystem attributes are understudied.

Increasing prevalence of hot drought across western North America since the 16th century

Year of Publication
2024
Publication Type

Across western North America (WNA), 20th-21st century anthropogenic warming has increased the prevalence and severity of concurrent drought and heat events, also termed hot droughts. However, the lack of independent spatial reconstructions of both soil moisture and temperature limits the potential to identify these events in the past and to place them in a long-term context.

Existing Improvements in Simulation of Fire–Wind Interaction and Its Effects on Structures

Year of Publication
2021
Publication Type

This work provides a detailed overview of existing investigations into the fire–wind interaction phenomena. Specifically, it considers: the fanning effect of wind, wind direction and slope angle, and the impact of wind on fire modelling, and the relevant analysis (numerical and experimental) techniques are evaluated. Recently, the impact of fire on buildings has been widely analysed.

How are long-term stand structure, fuel profiles, and potential fire behavior affected by fuel treatment type and intensity in Interior Pacific Northwest forests?

Year of Publication
2024
Publication Type

Fuel treatments are commonly applied to increase resilience to wildfire in dry and historically frequent-fire forests of western North America. The long-term effects of fuel treatments on forest structure, fuel profiles (amount and configuration of fuels), and potential wildfire behavior are not well known relative to short-term effects.

Establishing Directions in Postfire Debris Flow Science Conference

-
The science of post-wildfire debris flows has evolved rapidly over the past few decades as wildfires have become more frequent, larger, and more severe, impacting human health and the developed landscape. Post-wildfire debris flow science encompasses a wide variety of fields, including hydrology, geomorphology, engineering, remote sensing, atmospheric science, ecology, and data science.