-
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. -
Out on a Limb with Lil?wat Forestry Ventures
Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. This episode of Out on a Limb features Li?l?wat Forestry Ventures and highlights the...Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. This episode of Out on a Limb features Li?l?wat Forestry Ventures and highlights their unique holistic approach to forest management. Join Klay Tindall, General Manager, and Jordon Gabriel, Forestry Technician, as they reflect on how innovation is built into the very core of their approach to forest management, stressing the importance of adaptability and learning from the land. They offer advice to those considering similar innovative practices in forestry management and emphasize the use of local knowledge to manage the forest for a variety of values. -
Out on a Limb with Alkali Resource Management
Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. In this episode of Out on a Limb, the SIP joins Alkali Resource Management, which is ...Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. In this episode of Out on a Limb, the SIP joins Alkali Resource Management, which is 100% owned by Esk'etemc First Nation, and project partners from the Government of BC to learn more about the impacts and benefits of ARM's innovative approaches just south of Williams Lake, BC. Francis Johnson and Julian Paul walk through some ways ARM aims to create resilience in stands that possess dense understories of small trees, increasing wildfire risk, and decreasing suitability as wildlife habitat using partial harvest with clumpy spacing and prescribed burning to restore forest health and revitalize cultural uses and values. This collaborative project evaluates the efficacy of ARM's treatments on understory vegetation and wildlife use, wildfire risk, disturbance agents, and overall forest integrity and resiliency. By blending Indigenous stewardship, applied research, and on-the-ground treatments, the trial is generating valuable insights into how these forests can become more resilient to disturbance while supporting mule deer winter range, biodiversity, and culturally important plants. -
Out on a Limb with Harrop-Procter Community Forest
Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. In this episode of Out on a Limb, the SIP joins Harrop-Procter Community Forest to le...Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. In this episode of Out on a Limb, the SIP joins Harrop-Procter Community Forest to learn about their innovative approach to anticipate and adapt to climate change impacts. Harrop-Procter CF has spent the past 15 years adapting their forest management approach to respond to climate change impacts on their forest and surrounding landscape. Using a risk assessment approach, they are able to identify areas with varying risk to climate change and prioritize management actions. Erik Leslie, Forest Manager at Harrop-Procter, unpacks the three types of Operations Strategies he employs using his climate adaptation framework: Resistance, Resilience, and Transition. the SIP joins him in the field to visit three sites where these strategies have resulted in specific treatments to make the site either resistant, resilient, or completely transitioned on a new trajectory. Erik shows us how managers can integrate climate science and risk assessment into practical forestry decision making. -
Dispersed Retention in the Coast-Interior Transition Stand Structure 15 Years After Harvest
This document evaluates the long-term effectiveness of dispersed tree retention as an alternative to clearcutting in the coast-interior transition zone of British Columbia. By monitoring a Douglas-fir forest near Boston Bar for fifteen years, the stu...This document evaluates the long-term effectiveness of dispersed tree retention as an alternative to clearcutting in the coast-interior transition zone of British Columbia. By monitoring a Douglas-fir forest near Boston Bar for fifteen years, the study examines how various levels of overstorey shading influence natural regeneration success, stand structure, and biological legacies. The data reveals that while residual trees enhance the micro-climate for new growth, they face significant mortality from windthrow, Douglas-fir bark beetle, and wildfire, leading to a substantial decline in living density over time. This document suggests that while dispersed retention provides valuable biodiversity attributes like snags and woody debris, an aggregated retention pattern might offer greater stability and protection against environmental stressors. -
Integrated Fire Management Planning - Mitigating Risk to the Ecological Integrity of Connectivity Corridors
In this webinar, representatives from the First Nations Emergency Services Society and their conservation partners detail the implementation of Integrated Fire Management Planning to protect both human infrastructure and ecological connectivity cor...In this webinar, representatives from the First Nations Emergency Services Society and their conservation partners detail the implementation of Integrated Fire Management Planning to protect both human infrastructure and ecological connectivity corridors. The project uses a sophisticated integrated spatial database that layers historical wildfire data, old-growth status, and wildlife habitats with modern fire modeling and LiDAR technology to forecast risks. By moving beyond isolated, project-based grants toward landscape-level planning, the initiative seeks to foster collaborative governance between Indigenous communities and government agencies. -
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. -
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. -
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. -
Integrating Fire Behavior Principles when Prescribing Fuel Treatment
This webinar explores how fire-behaviour science should guide the design of fuel-treatment prescriptions in British Columbia, emphasizing that treatments must be tied to measurable changes in predicted fire intensity and spread rather than just stand...This webinar explores how fire-behaviour science should guide the design of fuel-treatment prescriptions in British Columbia, emphasizing that treatments must be tied to measurable changes in predicted fire intensity and spread rather than just stand-structure outcomes. It reviews key elements of the Canadian Forest Fire Danger Rating System, especially the Fire Behaviour Prediction system, to show how fuels, weather, and topography interact to influence wildfire behaviour. The webinar outlines how professionals can set clear treatment targets and demonstrates how modelling tools help evaluate whether a proposed treatment will achieve those outcomes. The webinar also highlights the need for specialized training in fire behaviour and fuel management, noting that effective prescriptions require both technical knowledge and practical experience. fuel-treatment plans. -
Planning and Implementing Fuel Treatment Activities in BC's Diverse Ecosystems
This webinar outlines the strategic framework for wildfire risk reduction in British Columbia, emphasizing the transition from traditional fire suppression to proactive fuel management. It explores how effective mitigation requires a risk-based appro...This webinar outlines the strategic framework for wildfire risk reduction in British Columbia, emphasizing the transition from traditional fire suppression to proactive fuel management. It explores how effective mitigation requires a risk-based approach, where practitioners analyze the likelihood and consequences of fire to prioritize treatments within the wildland-urban interface. Central to the webinar is the use of science-based fire behavior targets, such as maintaining specific critical surface intensities and increasing crown base height to prevent ground fires from climbing into the canopy. The webinar highlights that while mechanical thinning is vital, the integration of prescribed fire and FireSmart principles is essential for maintaining these fuel breaks and ensuring long-term community resiliency. -
Best Management Practices for Mastication as a Fuel Management Method in British Columbia
This guidance document outlines the best management practices for mastication, a wildfire mitigation technique that uses specialized machinery to shred woody vegetation into smaller debris. By converting vertical ladder fuels into a compacted ground ...This guidance document outlines the best management practices for mastication, a wildfire mitigation technique that uses specialized machinery to shred woody vegetation into smaller debris. By converting vertical ladder fuels into a compacted ground mulch, forest managers can effectively alter fire behavior and improve site accessibility for suppression efforts. This document emphasizes that successful implementation requires rigorous project planning, which includes selecting appropriate equipment, managing the resulting chip depth and pattern, and addressing ecological concerns such as soil health and invasive species. This document serves as a strategic framework for British Columbia's forest managers to integrate mastication into broader fuel management programs, particularly in areas where traditional prescribed burning is not feasible. -
Fuels Patterns and a Fire Following Mountain Pine Beetle Mortality in the Climax Lodgepole Pine Forests of Southern Central Oregon
This webinar explores the relationship between mountain pine beetle outbreaks and subsequent wildfire behavior within the lodgepole pine ecosystems of South Central Oregon. Researchers detail a chrono-sequence study and an assessment of the Pole Cree...This webinar explores the relationship between mountain pine beetle outbreaks and subsequent wildfire behavior within the lodgepole pine ecosystems of South Central Oregon. Researchers detail a chrono-sequence study and an assessment of the Pole Creek Fire to challenge the conventional assumption that beetle-killed forests inevitably lead to more catastrophic burns. Findings reveal that while active crown fires can still occur, higher prior beetle mortality often results in lower fire severity under extreme weather conditions due to a reduction in available canopy fuels. The webinar characterizes these disturbances as a natural cycle where native insects and fire interact to create landscape heterogeneity and promote long-term ecosystem resilience. -
Influence of Recent Bark Beetle Outbreaks on Wildfire
This webinar examines the complex relationship between mountain pine beetle outbreaks and subsequent wildfire patterns across the western United States. By categorizing infestation into red, gray, and old stages, this research tests whether the prese...This webinar examines the complex relationship between mountain pine beetle outbreaks and subsequent wildfire patterns across the western United States. By categorizing infestation into red, gray, and old stages, this research tests whether the presence of dead or dying trees significantly increases a forest's vulnerability to fire. Findings reveal that despite changes to fuel flammability, beetle activity has a negligible effect on total area burned and does not act as a primary driver of fire severity. Instead, the study suggests that topography and extreme fire weather remain the dominant factors influencing fire behavior, regardless of prior insect disturbance. This webinar argues that management policies should prioritize addressing climate change and drought as the underlying causes of both disturbances rather than focusing on a supposed synergism between beetles and fire. -
Does Wildfire Likelihood or Severity Increase Following Insect Outbreaks in Conifer Forests of the Pacific Northwest
This webinar examines the complex relationship between insect outbreaks and subsequent wildfire dynamics in the Pacific Northwest. By analyzing decades of data on the mountain pine beetle and the western spruce budworm, this webinar challenges the co...This webinar examines the complex relationship between insect outbreaks and subsequent wildfire dynamics in the Pacific Northwest. By analyzing decades of data on the mountain pine beetle and the western spruce budworm, this webinar challenges the common campfire hypothesis that dead trees inevitably lead to more frequent or more intense fires. The findings reveal that insect activity does not consistently increase fire likelihood and often results in lower burn severity because the insects act as a natural thinning agent that reduces available fuel over time. Overall, this study suggests that while these native disturbances significantly alter the landscape, they do not constitute a regional fire hazard or an immediate forest health crisis requiring aggressive management intervention. -
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. -
Landscape Fuel Treatment Effectiveness
This webinar explores landscape fuel treatment effectiveness, shifting the focus from individual forest stands to broad-scale fire behavior. By integrating empirical studies, simulation modeling, and manager-led case studies, the webinar provides a m...This webinar explores landscape fuel treatment effectiveness, shifting the focus from individual forest stands to broad-scale fire behavior. By integrating empirical studies, simulation modeling, and manager-led case studies, the webinar provides a multifaceted view of how strategic vegetation removal can alter a wildfire's trajectory even beyond the treated boundaries. A central theme is the distinction between site-level and landscape-level effects, emphasizing that treatments are most successful when they function as a spatial mosaic designed to facilitate suppression efforts and reduce high-severity fire. The webinar proposes a new iterative monitoring framework that encourages land managers to move past simple metrics like acres burned toward a more nuanced understanding of landscape resilience and treatment longevity in an era of climate change. -
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. -
Fire in the Dry Interior Forests of British Columbia
This extension note explores the critical role of fire in the dry interior forests of British Columbia, which historically experienced frequent, low-intensity surface fires that maintained ecosystem health and biodiversity. The authors explain how hu...This extension note explores the critical role of fire in the dry interior forests of British Columbia, which historically experienced frequent, low-intensity surface fires that maintained ecosystem health and biodiversity. The authors explain how human fire exclusion over the past 60 years has dramatically altered these forests, leading to increased fuel loads, higher tree density, altered species composition, and a greater risk of intense, large-scale crown fires. The documen then outlines four management options for these sites: continued fire suppression, controlled prescribed burns, mechanical fuel reduction, or a combination of these strategies, emphasizing the need to balance ecological, social, and economic considerations. Finally, the document highlights various ongoing research initiatives aimed at understanding fire regimes and developing integrated management solutions for these fire-adapted ecosystems. -
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.