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Fisher Wildife Habitat Decision Aid
This document provides essential guidance for forestry practitioners in British Columbia on managing timber operations to protect fisher habitat. Fishers are a forest-dependent carnivore considered a Species of Special Concern, relying on specific la...This document provides essential guidance for forestry practitioners in British Columbia on managing timber operations to protect fisher habitat. Fishers are a forest-dependent carnivore considered a Species of Special Concern, relying on specific late-successional forest structures, such as large-diameter trees with cavities for dens and diverse habitats for foraging and resting. The guide outlines habitat requirements, distribution, and critical forest management considerations at landscape, stand, and patch levels, emphasizing the need to retain and recruit vital structural components that are often removed by conventional harvesting. The purpose of this document is to inform sustainable forestry practices that ensure the long-term survival of fisher populations within managed forests. -
Recent Changes in Aboveground Live-Tree Carbon in Spruce and Fir-Dominated Sub-Boreal Forests in the BC Interior
This extension note investigates recent changes in aboveground live-tree carbon within spruce and fir-dominated sub-boreal forests in the interior of British Columbia. The study specifically re-evaluated carbon stocks between 20032004 and 2018 at the...This extension note investigates recent changes in aboveground live-tree carbon within spruce and fir-dominated sub-boreal forests in the interior of British Columbia. The study specifically re-evaluated carbon stocks between 20032004 and 2018 at the Aleza Lake Research Forest to understand how carbon storage is impacted by tree species and size. The authors found that while younger forest stands generally accumulated carbon, older stands with larger trees showed a decline in aboveground live-tree carbon, largely due to increased mortality of these large trees. This highlights a critical concern regarding the role of mature forests in carbon sequestration amidst accelerating climate change and increasing tree mortality rates. -
An Index for Tracking Old Growth Value in Disturbance-Prone Forest Landscapes
This document introduces an innovative old-growth index developed to accurately measure and track the ecological value of forests, especially those prone to disturbances. Moving beyond traditional age-based definitions, the researchers used Aerial La...This document introduces an innovative old-growth index developed to accurately measure and track the ecological value of forests, especially those prone to disturbances. Moving beyond traditional age-based definitions, the researchers used Aerial Laser Scanning (ALS) and field data to create a more comprehensive metric that considers diverse structural attributes like tree size, deadwood, and canopy complexity. The study's application in British Columbia's Chinook Community Forest revealed that "very-high" old-growth value forests are scarce and fragmented, often located outside designated protected areas. This research provides a flexible and robust framework for forest managers to better conserve and monitor these vital ecosystems and their services, aiding in more effective landscape-level planning. -
Aspen Complex Stand Establishment Decision Aid
This extension note serves as a decision aid for forest managers in northeastern British Columbia regarding aspen stands. It is structured to provide guidance on managing aspen either as a primary timber species or as a component within mixedwood for...This extension note serves as a decision aid for forest managers in northeastern British Columbia regarding aspen stands. It is structured to provide guidance on managing aspen either as a primary timber species or as a component within mixedwood forests with conifers. The note details various aspects of aspen ecology, including its regeneration, growth, interactions with other species, and its susceptibility to health issues. Furthermore, it outlines different silvicultural systems and management practices tailored to specific objectives, such as maximizing aspen production, promoting conifer growth, or achieving mixed stands, while also considering non-timber values like wildlife habitat and First Nations uses. The extension note aims to equip managers with the knowledge to make informed decisions about establishing and tending aspen-dominated or mixed forests in the region. -
Adjusting Free Growing Criteria for Broadleaves in the Northern Interior of British Columbia
This documentinvestigates the growth dynamics of mixed broadleaf-conifer stands and a push for improved forest management that better reflects multiple objectives, as outlined in the Forest and Range Practices Act. The report achieves this by reviewi...This documentinvestigates the growth dynamics of mixed broadleaf-conifer stands and a push for improved forest management that better reflects multiple objectives, as outlined in the Forest and Range Practices Act. The report achieves this by reviewing existing literature on the silvicultural traits and competitive interactions of both planted conifers and naturally regenerating broadleaf species in the northern interior, alongside the ecological and silvicultural benefits of retaining broadleaves. The study proposes alternative free-to-grow criteria specifically designed to encourage the retention of broadleaf species in the Prince George, Robson Valley, and Mackenzie Timber Supply Areas, aiming for implementation within BCTS Prince George's Forest Stewardship Plan. -
Establishing and Growing Aspen Stands in the SBS
This presentation focuses on the establishment and growth of aspen stands within the Sub-Boreal Spruce zone of British Columbia. It draws upon existing research to discuss key factors influencing aspen regeneration, including the importance of remov...This presentation focuses on the establishment and growth of aspen stands within the Sub-Boreal Spruce zone of British Columbia. It draws upon existing research to discuss key factors influencing aspen regeneration, including the importance of removing apical dominance through disturbances like logging or fire to promote suckering. The presentation also details harvest considerations, such as the benefits of winter harvesting and the negative impacts of excessive canopy retention and soil compaction. The presentation explores the effects of various silvicultural practices and the interactions between aspen and coniferous species like spruce and pine, providing guidance on site selection and stockingregeneration surveys for successful aspen management. -
Aleza Lake Research Forest
The Aleza Lake Research Forest is a 9000 ha university-based outdoor research facility and working forest 60 km east of Prince George, BC. The mandate of the Research Forest is to provide research and education facilities and opportunities to the Uni...The Aleza Lake Research Forest is a 9000 ha university-based outdoor research facility and working forest 60 km east of Prince George, BC. The mandate of the Research Forest is to provide research and education facilities and opportunities to the University of Northern BC and other institutes, universities, government agencies, private sector research, schools and other educational groups with regards to ecosystem and resource management studies within the wet sub-boreal spruce biogeoclimatic zone. The research and education programs are multidisciplinary with an emphasis on: Partial cut harvest systems, Biological Diversity, Climate Change and Environmental Monitoring in Small Forest Tenures. The Aleza Lake Research Forest provides a location for field research and education, and also facilitates the development, implementation and evaluation of research and education programs with the user groups. -
John Prince Research Forest
John Prince Research Forest (JPRF) is a unique institution, envisioned, initiated and managed cooperatively between Tl'azt'en First Nation and the University of Northern British Columbia. Developing innovative approaches to natural resource conservat...John Prince Research Forest (JPRF) is a unique institution, envisioned, initiated and managed cooperatively between Tl'azt'en First Nation and the University of Northern British Columbia. Developing innovative approaches to natural resource conservation and management that combines First Nations' traditional and western scientific approaches to understanding the natural world, is what makes John Prince Research Forest special. Located in the dry sub-boreal spruce biogeoclimatic zone of the Nechako Plateau, the northernmost subdivision of BC' s Central Interior Plateau. The JPRF falls within the moist interior natural disturbance unit, characterized by large wild fire stand replacement events typically on a 100-200 year cycle. The natural forest types are an uneven-aged mix of Douglas-fir, spruce, pine, subalpine and deciduous types. These highly productive northern forests have distinctive understories of rose, spirea, soopallie, cranberry, thimbleberry, red osier dogwood, black twinberry, devil's club and huckleberry varieties. Explore John Prince Research Forest publications at: https://www.jprf.ca/research -
Central Plateau Fire Weather Zone
This document outlines Best Management Practices for fuel treatment within British Columbia's Central Plateau Fire Weather Zone, a region historically shaped by frequent, stand-destroying wildfires. It details the zone's diverse ecosystems and vegeta...This document outlines Best Management Practices for fuel treatment within British Columbia's Central Plateau Fire Weather Zone, a region historically shaped by frequent, stand-destroying wildfires. It details the zone's diverse ecosystems and vegetation, highlighting how species like lodgepole pine thrive in fire-prone areas, while others like Douglas-fir develop fire-resistant bark. The guide also classifies common fuel types using the Canadian Forest Fire Behaviour Prediction system, emphasizing management strategies for surface, ladder, and crown fuels, including techniques like thinning and encouraging deciduous species to reduce wildfire risk. Finally, it provides examples of past fuel management projects and discusses considerations for forest health, such as preventing pest outbreaks and maintaining stand integrity. -
Developing an Uneven-Aged Management System to Maintain Attributes Associated with Old Deciduous Stands The SADO System (Self-sustaining All-aged Deciduous Old-growth)
This document details the SADO management system, a conservation-focused approach specifically designed for sustaining old-growth characteristics in aspen, birch, and cottonwood forests within British Columbia's SBS zone. Recognizing the relatively ...This document details the SADO management system, a conservation-focused approach specifically designed for sustaining old-growth characteristics in aspen, birch, and cottonwood forests within British Columbia's SBS zone. Recognizing the relatively short lifespan and successional vulnerability of these deciduous stands, the system provides a step-by-step guide for forest managers. Its core principles revolve around monitoring regeneration, selectively removing conifers, managing herbivore browsing, ensuring adequate light, and addressing regeneration capacity to promote the development of self-sustaining, all-aged stand structures that continuously exhibit old-growth attributes, with a particular emphasis on maintaining ecological values and biodiversity. -
Mountain Pine Beetle and Salvage Harvesting Small Stream and Riparian Zone Response in the Sub-Boreal Spruce Zone
This extension note presents findings from investigations into how the mountain pine beetle infestation and subsequent salvage harvesting near streams impact small stream and riparian zone health in British Columbia's Sub-Boreal Spruce zone. The res...This extension note presents findings from investigations into how the mountain pine beetle infestation and subsequent salvage harvesting near streams impact small stream and riparian zone health in British Columbia's Sub-Boreal Spruce zone. The research focused on understanding the riparian stand structure in these affected areas and assessing the influence of both the beetle infestation and harvesting on riparian zones, particularly shade levels and overall stream function. Through basal area studies and a stream health evaluation protocol, the authors aimed to provide short-term answers to guide forest management practices in regions heavily affected by the mountain pine beetle.