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  • Case Study Technical Report

    Effect of Sites and Provenances on 6th-year Performance of Noble Fir in Coastal British Columbia

    This document investigates the six-year growth and survival of noble fir in coastal British Columbia, a region where the species does not occur naturally. By testing 23 different seed sources across 12 diverse locations, the author examines how vario...
    This document investigates the six-year growth and survival of noble fir in coastal British Columbia, a region where the species does not occur naturally. By testing 23 different seed sources across 12 diverse locations, the author examines how various environmental conditions and genetic origins influence the tree's performance. The findings indicate that while the species is highly productive and resilient in maritime climates, it remains vulnerable to frost in more continental settings. This document aims to identify ideal planting sites and superior seed sources to guide the successful introduction of noble fir for regional reforestation.
  • 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.
  • Webinar

    Effectiveness of Fuel Treatments in Mitigating Wildfire Severity

    This webinar explores strategies for mitigating wildfire severity through proactive fuel treatments, drawing on extensive research from large-scale fire events in the Pacific Northwest. It details how the accumulation of forest fuels due to decades o...
    This webinar explores strategies for mitigating wildfire severity through proactive fuel treatments, drawing on extensive research from large-scale fire events in the Pacific Northwest. It details how the accumulation of forest fuels due to decades of fire exclusion has created vulnerable landscapes prone to high-severity, stand-replacing fires. Findings demonstrate that while thinning alone is often insufficient, the combination of thinning and prescribed burning significantly increases tree survivorship and creates effective barriers to fire spread.
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