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  • Case Study Peer-Reviewed Literature

    Thinning and Prescribed Fire Effects on Overstory Tree and Snag Structure in Dry Coniferous Forests of the Interior Pacific Northwest

    This study investigates how different forest management techniques influence the physical makeup and fire resilience of dry coniferous forests in the Pacific Northwest. By comparing mechanical thinning and prescribed burning, both independently and i...
    This study investigates how different forest management techniques influence the physical makeup and fire resilience of dry coniferous forests in the Pacific Northwest. By comparing mechanical thinning and prescribed burning, both independently and in combination, the authors demonstrate that thinning is the most reliable method for reducing tree density and raising the canopy to prevent crown fires. While fire alone had a minimal impact on living overstory structure in this study, it played a vital role in creating snags, or standing dead trees, which are essential for wildlife habitat. This study concludes that combining both treatments offers the most comprehensive approach to restoring historical forest conditions while simultaneously lowering the risk of catastrophic wildfire.
  • Technical Report

    Development of a Drought Risk Assessment Tool for British Columbia Forests Using a Stand-level Water-balance Approach

    This technical report introduces a drought risk assessment tool designed to help forest managers in British Columbia navigate the challenges of a warming climate. By using a stand-level water-balance approach, the researchers calculated the ratio of ...
    This technical report introduces a drought risk assessment tool designed to help forest managers in British Columbia navigate the challenges of a warming climate. By using a stand-level water-balance approach, the researchers calculated the ratio of water availability to evaporative demand to establish drought tolerance thresholds for ten common tree species. The study concludes that many species face significant threats of stress and mortality on drier sites, whereas moist, water-receiving areas may serve as critical climate refugia for conservation. This document provides a practical framework for applying this data to silvicultural decisions, such as selecting resilient species for reforestation and identifying areas at higher risk for wildfires or invasive species.
  • Case Study

    Forest Fuel Treatment Efficacy in BC Two Case Studies - Thinning and Broadcast Burning

    This document evaluates the efficacy of forest fuel treatments across British Columbia by examining how thinned areas and broadcast burn sites interacted with actual wildfires. By employing a case study approach and paired-plot field measurements, th...
    This document evaluates the efficacy of forest fuel treatments across British Columbia by examining how thinned areas and broadcast burn sites interacted with actual wildfires. By employing a case study approach and paired-plot field measurements, the researchers assessed whether interventions like debris disposal and canopy thinning successfully modified fire behavior, such as reducing crown involvement and tree mortality. The findings suggest that while thinning and ladder fuel removal generally produced positive results, many treatments were strategically undersized or poorly located to provide significant suppression advantages at a landscape level.
  • Webinar

    From Past to Future - Creating Resilience in Degraded Dry Forests

    This webinar examines how the historical suppression of Indigenous cultural burning, combined with aggressive logging and modern fire exclusion, has dangerously altered the composition of dry forests. The research explored in this webinar reveals tha...
    This webinar examines how the historical suppression of Indigenous cultural burning, combined with aggressive logging and modern fire exclusion, has dangerously altered the composition of dry forests. The research explored in this webinar reveals that these landscapes have shifted from fire-resistant environments dominated by Ponderosa Pine and Western Larch to overcrowded, drought-stressed stands of Douglas-fir. This loss of species diversity significantly reduces the forest's ability to survive high-severity fires and capture carbon, especially as climate change accelerates the expansion of hot, arid conditions. This webinar argues that restoring ecological resilience requires integrating diverse knowledge sources with advanced technologies, such as machine learning and spatial data, to better monitor and manage these shifting ecosystems.
  • Webinar

    Fuel Treatment Effectiveness in the Southern Blue Mountains of Oregon

    This webinar explores the landscape-level effectiveness of fuel treatments in the Southern Blue Mountains of Oregon. Using the Landis-II simulation model, the study evaluates how different management strategies such as mechanical thinning and prescri...
    This webinar explores the landscape-level effectiveness of fuel treatments in the Southern Blue Mountains of Oregon. Using the Landis-II simulation model, the study evaluates how different management strategies such as mechanical thinning and prescribed burning impact wildfire spread and severity under both contemporary and extreme weather scenarios. A primary finding is that while treatments work at a local scale, tripling the current levels of prescribed fire is necessary to significantly shift wildfire behavior across the broader landscape. The research suggests that spatially optimizing treatments in high-risk zones can be just as effective as distributing them widely, offering a more efficient way to manage resources while preparing for a future of increased wildfire activity driven by climate change.
  • Guidance Document

    Interior-Dry Fire Weather Zone

    This document outlines best management practices for fuel treatment within British Columbia's interior-dry fire weather zone, a region characterized by dry ecosystems like Interior douglas fir, ponderosa pine, and bunchgrass zones. It emphasizes how ...
    This document outlines best management practices for fuel treatment within British Columbia's interior-dry fire weather zone, a region characterized by dry ecosystems like Interior douglas fir, ponderosa pine, and bunchgrass zones. It emphasizes how wildfires significantly influence these forest ecosystems, historically maintaining biodiversity and grasslands through low-intensity burns. The guide details fuel management strategies for surface, ladder, and crown fuels, including thinning, pruning, and species conversion, all aimed at reducing the risk and intensity of high-severity wildfires. Additionally, it provides recommendations for mitigating impacts on forest health from treatments and includes case studies illustrating effective fuel management practices.
  • Guidance Document

    Interior wet fire weather zone

    This guidance document outlines best management practices for fuel treatment within British Columbia's Interior-Wet Fire Weather Zone, a region characterized by its productive forests and diverse tree species like western cedar and hemlock. While typ...
    This guidance document outlines best management practices for fuel treatment within British Columbia's Interior-Wet Fire Weather Zone, a region characterized by its productive forests and diverse tree species like western cedar and hemlock. While typically experiencing higher precipitation and less frequent stand-replacing wildfires, drier subzones are prone to mixed-severity fire regimes. The guide emphasizes managing surface fuels, ladder fuels that allow fire to climb, and crown fuels to reduce the intensity and spread of wildfires, especially given the increased risk from climate change-induced drought and successful fire suppression efforts near communities. The document aims to provide professional guidance for mitigating wildfire threats through strategic fuel management and maintaining forest health.
  • Technical Report

    Potential of Partial Cutting Silvicultural Systems to Affect Stand Productivity and Wood Flow

    This technical report investigates the potential of variable retention silvicultural systems to manage forests in British Columbia's Nelson Forest Region, aiming to mitigate anticipated reductions in wood supply due to new environmental regulations. ...
    This technical report investigates the potential of variable retention silvicultural systems to manage forests in British Columbia's Nelson Forest Region, aiming to mitigate anticipated reductions in wood supply due to new environmental regulations. The study specifically evaluates how different variable retention methods impact stand productivity and overall wood flow despite the widespread presence of Armillaria root disease. Using the PROGNOSIS growth model, the authors identify low-risk timber types and develop management guidelines to balance timber harvesting with objectives like biodiversity and visual quality and reccomend a more balanced mixture of clearcutting and variable retention approaches to ensure sustainable forest management.
  • Webinar

    Can Landscape Fuel Treatments Enhance Both Protection and Resource Management Objectives

    This webinar presents results from a simulation study of north-central New Mexico that investigated the relative effectiveness of a variety of fuel treatment strategies and the tradeoffs of implementing fuels programs with competing management goals....
    This webinar presents results from a simulation study of north-central New Mexico that investigated the relative effectiveness of a variety of fuel treatment strategies and the tradeoffs of implementing fuels programs with competing management goals.
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